Margaret Buckingham
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French-British biologist
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Margaret Buckingham's Degrees
- PhD Biology Université Paris Cité
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(Suggest an Edit or Addition)According to Wikipedia, Margaret Buckingham, is a British developmental biologist working in the fields of myogenesis and cardiogenesis. She is an honorary professor at the Pasteur Institute in Paris and emeritus director in the Centre national de la recherche scientifique . She is a member of the European Molecular Biology Organization, the Academia Europaea and the French Academy of Sciences.
Margaret Buckingham's Published Works
Published Works
- Building the mammalian heart from two sources of myocardial cells (2005) (1169)
- A Pax3/Pax7-dependent population of skeletal muscle progenitor cells (2005) (1059)
- Direct Isolation of Satellite Cells for Skeletal Muscle Regeneration (2005) (1025)
- Expression of Cd34 and Myf5 Defines the Majority of Quiescent Adult Skeletal Muscle Satellite Cells (2000) (919)
- Redefining the Genetic Hierarchies Controlling Skeletal Myogenesis: Pax-3 and Myf-5 Act Upstream of MyoD (1997) (854)
- The arterial pole of the mouse heart forms from Fgf10-expressing cells in pharyngeal mesoderm. (2001) (841)
- The formation of skeletal muscle: from somite to limb (2003) (839)
- Pax3 and Pax7 have distinct and overlapping functions in adult muscle progenitor cells (2006) (702)
- Mrf4 determines skeletal muscle identity in Myf5:Myod double-mutant mice (2004) (650)
- Expression of two myogenic regulatory factors myogenin and MyoDl during mouse embryogenesis (1989) (633)
- Early expression of the myogenic regulatory gene, myf-5, in precursor cells of skeletal muscle in the mouse embryo. (1991) (563)
- An Nkx2-5/Bmp2/Smad1 Negative Feedback Loop Controls Heart Progenitor Specification and Proliferation (2007) (512)
- Gene regulatory networks and transcriptional mechanisms that control myogenesis. (2014) (474)
- The role of Pax genes in the development of tissues and organs: Pax3 and Pax7 regulate muscle progenitor cell functions. (2007) (472)
- Skeletal muscle formation in vertebrates. (2001) (448)
- In vivo satellite cell activation via Myf5 and MyoD in regenerating mouse skeletal muscle. (1999) (448)
- Myogenic progenitor cells and skeletal myogenesis in vertebrates. (2006) (416)
- Developmental regulation of myosin gene expression in mouse cardiac muscle (1990) (397)
- How to make a heart: the origin and regulation of cardiac progenitor cells. (2010) (391)
- Hox‐7, a mouse homeobox gene with a novel pattern of expression during embryogenesis. (1989) (386)
- Differential activation of Myf5 and MyoD by different Wnts in explants of mouse paraxial mesoderm and the later activation of myogenesis in the absence of Myf5. (1998) (379)
- Right Ventricular Myocardium Derives From the Anterior Heart Field (2004) (370)
- The clonal origin of myocardial cells in different regions of the embryonic mouse heart. (2004) (364)
- Muscle progenitor cells failing to respond to positional cues adopt non-myogenic fates in myf-5 null mice (1996) (324)
- Mouse actin messenger RNAs. Construction and characterization of a recombinant plasmid molecule containing a complementary DNA transcript of mouse alpha-actin mRNA. (1981) (323)
- Divergent functions of murine Pax3 and Pax7 in limb muscle development. (2004) (310)
- Muscle stem cell behavior is modified by microRNA-27 regulation of Pax3 expression (2009) (308)
- Making muscle in mammals. (1992) (307)
- α‐Skeletal Muscle Actin mRNA's Accumulate in Hypertrophied Adult Rat Hearts (1986) (302)
- Kinetics of myoblast proliferation show that resident satellite cells are competent to fully regenerate skeletal muscle fibers. (2002) (297)
- Muscle satellite cells are primed for myogenesis but maintain quiescence with sequestration of Myf5 mRNA targeted by microRNA-31 in mRNP granules. (2012) (294)
- Sonic hedgehog controls epaxial muscle determination through Myf5 activation. (1999) (283)
- The muscle regulatory gene, Myf-6, has a biphasic pattern of expression during early mouse development (1991) (281)
- Transcripts of alpha-cardiac and alpha-skeletal actins are early markers for myogenesis in the mouse embryo. (1988) (278)
- A novel genetic hierarchy functions during hypaxial myogenesis: Pax3 directly activates Myf5 in muscle progenitor cells in the limb. (2006) (277)
- The anterior heart-forming field: voyage to the arterial pole of the heart. (2002) (275)
- The expression of myosin genes in developing skeletal muscle in the mouse embryo (1990) (268)
- An adult tissue-specific stem cell in its niche: a gene profiling analysis of in vivo quiescent and activated muscle satellite cells. (2010) (264)
- Myosin light chain 3F regulatory sequences confer regionalized cardiac and skeletal muscle expression in transgenic mice (1995) (256)
- The birth of muscle progenitor cells in the mouse: spatiotemporal considerations. (2000) (249)
- How is myogenesis initiated in the embryo? (1996) (244)
- Activation of different myogenic pathways: myf-5 is induced by the neural tube and MyoD by the dorsal ectoderm in mouse paraxial mesoderm. (1996) (238)
- A fetal skeletal muscle actin mRNA in the mouse and its identity with cardiac actin mRNA (1982) (237)
- Type 2X-myosin heavy chain is coded by a muscle fiber type-specific and developmentally regulated gene (1993) (228)
- Simultaneous expression of skeletal muscle and heart actin proteins in various striated muscle tissues and cells. A quantitative determination of the two actin isoforms. (1986) (210)
- Number and organization of actin-related sequences in the mouse genome. (1983) (208)
- Detection of the nicotinic acetylcholine receptor alpha‐subunit mRNA by in situ hybridization at neuromuscular junctions of 15‐day‐old chick striated muscles. (1988) (203)
- Distinct and dynamic myogenic populations in the vertebrate embryo. (2009) (195)
- A single locus in the mouse encodes both myosin light chains 1 and 3, a second locus corresponds to a related pseudogene (1984) (194)
- The Wnt/β-catenin pathway regulates Gli-mediated Myf5 expression during somitogenesis (2006) (194)
- Rotation of the Myocardial Wall of the Outflow Tract Is Implicated in the Normal Positioning of the Great Arteries (2006) (192)
- What does the concept of the stem cell niche really mean today? (2012) (182)
- Heart fields and cardiac morphogenesis. (2014) (181)
- Skeletal muscle progenitor cells and the role of Pax genes. (2007) (180)
- Gene targeting the myf‐5 locus with nlacZ reveals expression of this myogenic factor in mature skeletal muscle fibres as well as early embryonic muscle (1996) (174)
- Lying low but ready for action: the quiescent muscle satellite cell (2013) (174)
- Clonal analysis reveals common lineage relationships between head muscles and second heart field derivatives in the mouse embryo (2010) (172)
- Nonsynchronous Accumulation of α‐Skeletal Actin and β‐Myosin Heavy Chain mRNAs During Early Stages of Pressure‐Overload‐Induced Cardiac Hypertrophy Demonstrated by In Situ Hybridization (1989) (164)
- A retrospective clonal analysis of the myocardium reveals two phases of clonal growth in the developing mouse heart (2003) (163)
- The myosin alkali light chain proteins and their genes. (1985) (161)
- Smooth muscle of the dorsal aorta shares a common clonal origin with skeletal muscle of the myotome (2006) (159)
- The transcriptional activator PAX3-FKHR rescues the defects of Pax3 mutant mice but induces a myogenic gain-of-function phenotype with ligand-independent activation of Met signaling in vivo. (2003) (158)
- The apical ectodermal ridge regulates Hox-7 and Hox-8 gene expression in developing chick limb buds. (1991) (158)
- PAX3 and PAX7 as upstream regulators of myogenesis. (2015) (157)
- Investigation of genetic linkage between myosin and actin genes using an interspecific mouse back-cross (1985) (152)
- Insertional mutation of the mouse Msx1 homeobox gene by an nlacZ reporter gene (1997) (150)
- An FGF autocrine loop initiated in second heart field mesoderm regulates morphogenesis at the arterial pole of the heart (2008) (149)
- Atrial myocardium derives from the posterior region of the second heart field, which acquires left-right identity as Pitx2c is expressed (2008) (146)
- The deployment of cell lineages that form the mammalian heart (2018) (142)
- Pax3 regulation of FGF signaling affects the progression of embryonic progenitor cells into the myogenic program. (2008) (140)
- A population of myogenic cells derived from the mouse neural tube (1994) (137)
- Comparison of substrate specificity of the ubiquitin ligases Nedd4 and Nedd4-2 using proteome arrays (2009) (134)
- Mouse limb muscle is determined in the absence of the earliest myogenic factor myf-5. (1994) (134)
- Developmental regulation of creatine kinase gene expression by myogenic factors in embryonic mouse and chick skeletal muscle. (1991) (129)
- Tracing cells for tracking cell lineage and clonal behavior. (2011) (125)
- Modular long-range regulation of Myf5 reveals unexpected heterogeneity between skeletal muscles in the mouse embryo. (2000) (124)
- The homeobox gene Msx1 is expressed in a subset of somites, and in muscle progenitor cells migrating into the forelimb. (1999) (123)
- The synthesis and stability of cytoplasmic messenger RNA during myoblast differentiation in culture. (1974) (120)
- MyoD, myogenin independent differentiation of primordial myoblasts in mouse somites (1992) (119)
- Developmental pattern of mouse skeletal myosin heavy chain gene transcripts in vivo and in vitro (1987) (119)
- Six proteins regulate the activation of Myf5 expression in embryonic mouse limbs (2007) (114)
- The extracellular domain of Lrp5/6 inhibits noncanonical Wnt signaling in vivo. (2008) (114)
- Molecular biology of muscle development (1994) (113)
- Oriented clonal cell growth in the developing mouse myocardium underlies cardiac morphogenesis (2004) (111)
- Myoblast differentiation during mammalian somitogenesis is dependent upon a community effect. (1995) (111)
- Role of Mesodermal FGF8 and FGF10 Overlaps in the Development of the Arterial Pole of the Heart and Pharyngeal Arch Arteries (2010) (110)
- Transplanted primary neonatal myoblasts can give rise to functional satellite cells as identified using the Myf5nlacZl+ mouse (2001) (106)
- Fibroblast growth factor 10 gene regulation in the second heart field by Tbx1, Nkx2-5, and Islet1 reveals a genetic switch for down-regulation in the myocardium (2012) (104)
- Transcripts of a-cardiac and a-skeletal actins are early markers for myogenesis in the mouse embryo (103)
- Differential activation of Myf 5 and MyoD by different Wnts in explants of mouse paraxial mesoderm and the later activation of myogenesis in the absence of Myf 5 (1998) (102)
- Multiple Transcriptional Domains, With Distinct Left and Right Components, in the Atrial Chambers of the Developing Heart (2000) (102)
- Congenital heart defects in Fgfr2-IIIb and Fgf10 mutant mice. (2006) (101)
- Biphasic Development of the Mammalian Ventricular Conduction System (2010) (100)
- Beta catenin-independent activation of MyoD in presomitic mesoderm requires PKC and depends on Pax3 transcriptional activity. (2007) (99)
- Effects of superoxide radicals on myoblast growth and differentiation. (1974) (99)
- Comparison of three actin-coding sequences in the mouse; Evolutionary relationships between the actin genes of warm-blooded vertebrates (2005) (98)
- A skeletal muscle-specific enhancer regulated by factors binding to E and CArG boxes is present in the promoter of the mouse myosin light-chain 1A gene (1995) (97)
- DAN is a secreted glycoprotein related to Xenopus cerberus (1998) (97)
- Analysis of a key regulatory region upstream of the Myf5 gene reveals multiple phases of myogenesis, orchestrated at each site by a combination of elements dispersed throughout the locus (2003) (96)
- Cytoplasmic distribution of pulse-labelled poly(A)-containing RNA, particularly 26 S RNA, during myoblast growth and differentiation. (1976) (91)
- Transplacental delivery of the Wnt antagonist Frzb1 inhibits development of caudal paraxial mesoderm and skeletal myogenesis in mouse embryos. (1999) (88)
- A Pax3/Dmrt2/Myf5 Regulatory Cascade Functions at the Onset of Myogenesis (2010) (87)
- Pax3:Foxc2 reciprocal repression in the somite modulates muscular versus vascular cell fate choice in multipotent progenitors. (2009) (86)
- Clonal analysis reveals a common origin between nonsomite-derived neck muscles and heart myocardium (2015) (85)
- Sequential accumulation of mRNAs encoding different myosin heavy chain isoforms during skeletal muscle development in vivo detected with a recombinant plasmid identified as coding for an adult fast myosin heavy chain from mouse skeletal muscle. (1983) (85)
- Muscle Differentiation: Which myogenic factors make muscle? (1994) (81)
- Muscle: the regulation of myogenesis. (1994) (80)
- The myosin alkali light chains of mouse ventricular and slow skeletal muscle are indistinguishable and are encoded by the same gene. (1985) (78)
- Left and right ventricular contributions to the formation of the interventricular septum in the mouse heart. (2006) (78)
- Asymmetric Fate of the Posterior Part of the Second Heart Field Results in Unexpected Left/Right Contributions to Both Poles of the Heart (2012) (77)
- Regulation of muscle gene expression. The accumulation of messenger RNAs coding for muscle-specific proteins during myogenesis in a mouse cell line. (1982) (77)
- Molecular aspects of myogenesis. (1977) (75)
- Regionalized transcriptional domains of myosin light chain 3f transgenes in the embryonic mouse heart: morphogenetic implications. (1997) (75)
- Regulation of skeletal muscle stem cell behavior by Pax3 and Pax7. (2008) (75)
- Actin and myosin genes are transcriptionally regulated during mouse skeletal muscle development. (1992) (74)
- The early epaxial enhancer is essential for the initial expression of the skeletal muscle determination gene Myf5 but not for subsequent, multiple phases of somitic myogenesis. (2002) (72)
- Lineage Tree for the Venous Pole of the Heart: Clonal Analysis Clarifies Controversial Genealogy Based on Genetic Tracing (2012) (72)
- Cardiac cell lineages that form the heart. (2014) (68)
- Myocardium at the base of the aorta and pulmonary trunk is prefigured in the outflow tract of the heart and in subdomains of the second heart field. (2008) (67)
- Six Homeoproteins Directly Activate Myod Expression in the Gene Regulatory Networks That Control Early Myogenesis (2013) (66)
- Integrin α6β1-laminin interactions regulate early myotome formation in the mouse embryo (2006) (63)
- There are approximately 20 actin gene in the human genome. (1981) (62)
- Lineage restriction of the myogenic conversion factor myf-5 in the brain. (1995) (61)
- Multiple sites of HOX‐7 expression during mouse embryogenesis: Comparison with retinoic acid receptor mRNA localization (1992) (60)
- Carbonic anhydrase III, an early mesodermal marker, is expressed in embryonic mouse skeletal muscle and notochord. (1991) (60)
- Expression of the dystrophin‐related protein (utrophin) gene during mouse embryogenesis (1993) (59)
- Myf5 is a novel early axonal marker in the mouse brain and is subjected to post-transcriptional regulation in neurons. (2000) (58)
- Gene regulatory networks and cell lineages that underlie the formation of skeletal muscle (2017) (58)
- Developmental and tissue-specific regulation of the murine cardiac actin gene in vivo depends on distinct skeletal and cardiac muscle-specific enhancer elements in addition to the proximal promoter. (1996) (58)
- Structure and sequence of the myosin alkali light chain gene expressed in adult cardiac atria and fetal striated muscle. (1988) (58)
- A skeletal muscle cell line isolated from a mouse teratocarcinoma undergoes apparently normal terminal differentiation in vitro. (1978) (58)
- A 5′ duplication of the alpha‐cardiac actin gene in BALB/c mice is associated with abnormal levels of alpha‐cardiac and alpha‐skeletal actin mRNAs in adult cardiac tissue. (1986) (58)
- Skeletal muscle stem cells. (2008) (58)
- Functional activity of the two promoters of the myosin alkali light chain gene in primary muscle cell cultures: comparison with other muscle gene promoters and other culture systems. (1988) (57)
- Contractile protein gene expression in primary myotubes of embryonic mouse hindlimb muscles. (1993) (56)
- Notch regulation of myogenic versus endothelial fates of cells that migrate from the somite to the limb (2014) (56)
- Myogenic progenitor cells in the mouse embryo are marked by the expression of Pax3/7 genes that regulate their survival and myogenic potential (2006) (56)
- Chronic stimulation-induced changes of myosin light chains at the mRNA and protein levels in rat fast-twitch muscle. (1989) (53)
- Embryonic and fetal myogenic programs act through separate enhancers at the MLC1F/3F locus. (1997) (52)
- Actin and myosin multigene families: their expression during the formation of skeletal muscle. (1985) (51)
- PAX3 Confers Functional Heterogeneity in Skeletal Muscle Stem Cell Responses to Environmental Stress. (2019) (51)
- Localization of dystrophin gene transcripts during mouse embryogenesis (1992) (50)
- Sonic hedgehog acts cell-autonomously on muscle precursor cells to generate limb muscle diversity. (2012) (47)
- How the community effect orchestrates muscle differentiation. (2003) (47)
- Suppression of atrial myosin gene expression occurs independently in the left and right ventricles of the developing mouse heart (2000) (47)
- Transcriptome analyses based on genetic screens for Pax3 myogenic targets in the mouse embryo (2010) (45)
- Analysis of Mlc‐lacZ Met mutants highlights the essential function of Met for migratory precursors of hypaxial muscles and reveals a role for Met in the development of hyoid arch‐derived facial muscles (2004) (44)
- Redox regulation by Pitx2 and Pitx3 is critical for fetal myogenesis. (2014) (43)
- Changes in gene expression during myogenic differentiation. I. Regulation of messenger RNA sequences expressed during myotube formation. (1980) (42)
- Skeletal muscle development and the role of the myogenic regulatory factors. (1996) (41)
- Expression of NCAM isoforms during skeletal myogenesis in the mouse embryo (1992) (40)
- Modulation of contractile protein gene expression in fetal murine crural muscles: Emergence of muscle diversity (1993) (39)
- The role of Pitx2 and Pitx3 in muscle stem cells gives new insights into P38α MAP kinase and redox regulation of muscle regeneration (2018) (39)
- Activation of the gene encoding the glycolytic enzyme β-enolase during early myogenesis precedes an increased expression during fetal muscle development (1992) (38)
- The human homeobox gene HOX7 maps to chromosome 4p16.1 and may be implicated in Wolf-Hirschhorn syndrome (1990) (38)
- Muscle‐specific gene expression during myogensis in the mouse (1995) (37)
- The use of metrizamide to separate cytoplasmic ribonucleoprotein particles in muscle cell cultures: A method for the isolation of messenger RNA, independent of its poly a content (1975) (37)
- The Guanine Nucleotide Exchange Factor CNrasGEF Regulates Melanogenesis and Cell Survival in Melanoma Cells* (2006) (37)
- Transcriptional regulation of actin and myosin genes during differentiation of a mouse muscle cell line. (1990) (36)
- Integrin alpha6beta1-laminin interactions regulate early myotome formation in the mouse embryo. (2006) (36)
- alpha-Actin proteins and gene transcripts are colocalized in embryonic mouse muscle. (1991) (35)
- Skeletal Muscle Differentiation of Embryonic Mesoangioblasts Requires Pax3 Activity (2009) (35)
- Resolving cell lineage contributions to the ventricular conduction system with a Cx40‐GFP allele: A dual contribution of the first and second heart fields (2013) (34)
- A developmental study of the abnormal expression of α-cardiac and α-skeletal actins in the striated muscle of a mutant mouse (1989) (34)
- Dynamic left/right regionalisation of endogenous myosin light chain 3F transcripts in the developing mouse heart. (1998) (34)
- Cardiosensor mice and transcriptional subdomains of the vertebrate heart. (1999) (33)
- A comparison between mammalian and avian fast skeletal muscle alkali myosin light chain genes: regulatory implications (1985) (33)
- Redox Regulation by Pitx2 and Pitx3 Is Critical for Fetal Myogenesis. (2016) (32)
- Genetic analysis of the interaction between cardiac and skeletal actin gene expression in striated muscle of the mouse. (1990) (32)
- Expression of muscle genes in the mouse embryo. (1992) (31)
- Synthesis and formulation of novel phosphorylated flame retardant curatives for thermoset resins (1996) (31)
- Quantitative analysis of polarity in 3D reveals local cell coordination in the embryonic mouse heart (2013) (30)
- Actin and myosin multigene families: their expression during the formation and maturation of striated muscle. (1986) (30)
- A comparison between the synthesis of contractile proteins and the accumulation of their translatable mRNAs during calf myoblast differentiation. (1981) (30)
- A modified assay procedure for revealing the M form of creatine kinase in cultured muscle cells. (1978) (29)
- Direct molecular regulation of the myogenic determination gene Myf5 by Pax3, with modulation by Six1/4 factors, is exemplified by the -111 kb-Myf5 enhancer. (2013) (29)
- Myogenesis in the mouse. (1992) (29)
- The regulatory mechanisms that underlie inappropriate transcription of the myogenic determination gene Myf5 in the central nervous system. (2009) (28)
- An enhancer directs differential expression of the linked Mrf4 and Myf5 myogenic regulatory genes in the mouse. (2004) (28)
- Novel muscle-specific enhancer sequences upstream of the cardiac actin gene (1994) (28)
- Itm2a Is a Pax3 Target Gene, Expressed at Sites of Skeletal Muscle Formation In Vivo (2013) (27)
- Conotruncal defects associated with anomalous pulmonary venous connections. (2009) (27)
- The Wnt/ (cid:2) -catenin pathway regulates Gli-mediated Myf5 expression during somitogenesis (2006) (26)
- Endothelial cell specification in the somite is compromised in Pax3-positive progenitors of Foxc1/2 conditional mutants, with loss of forelimb myogenesis (2016) (26)
- MLC3F transgene expression in iv mutant mice reveals the importance of left‐right signalling pathways for the acquisition of left and right atrial but not ventricular compartment identity (2001) (25)
- Regionalization of Transcriptional Potential in the Myocardium (1999) (25)
- Chromosomal assignment of two myosin alkali light-chain genes encoding the ventricular/slow skeletal muscle isoform and the atrial/fetal muscle isoform (MYL3, MYL4) (1989) (25)
- The formation of the embryonic mouse heart (2010) (24)
- Characterization of a Cardiac-specific Enhancer, Which Directs α-Cardiac Actin Gene Transcription in the Mouse Adult Heart* (2004) (24)
- Three linked myosin heavy chain genes clustered within 370 kb of each other show independent transcriptional and post-transcriptional regulation during differentiation of a mouse muscle cell line. (1991) (24)
- Prdm1 functions in the mesoderm of the second heart field, where it interacts genetically with Tbx1, during outflow tract morphogenesis in the mouse embryo. (2014) (23)
- Non conservation of function for the evolutionarily conserved prdm1 protein in the control of the slow twitch myogenic program in the mouse embryo. (2012) (23)
- Myosin light chain gene expression in developing and denervated fetal muscle in the mouse. (1989) (21)
- The control of muscle gene expression: a review of molecular studies on the production and processing of primary transcripts. (1989) (21)
- Congenital heart defects in Fgfr 2-IIIb and Fgf 10 mutant mice (2006) (19)
- Expression of myogenic factors in the mouse: myf-5, the first member of the MyoD gene family to be transcribed during skeletal myogenesis. (1993) (17)
- Integration of embryonic and fetal skeletal myogenic programs at the myosin light chain 1f/3f locus. (2008) (16)
- cDNA recombinant plasmid complementary to mRNAs for light chains 1 and 3 of mouse skeletal muscle myosin. (1982) (16)
- Modular regulation of the MLC1F/3F gene and striated muscle diversity (2000) (16)
- Development of new materials with improved fire resistance, reduced smoke and toxicity (BREU CT91-0466) (1996) (15)
- The same myosin alkali light chain gene is expressed in adult cardiac atria and in fetal skeletal muscle (1985) (15)
- microRNAs gain magnitude in muscle (2009) (14)
- Pitx2 and Pitx3 transcription factors: two key regulators of the redox state in adult skeletal muscle stem cells and muscle regeneration. (2014) (14)
- Landmarks and lineages in the developing heart. (2009) (14)
- The formation and maturation of skeletal muscle in the mouse: the myosin MLC1F/3F gene as a molecular model. (1998) (13)
- Expression of the myosin gene in a hybrid cell derives from a rat myoblast and a mouse fibroblast. (1975) (13)
- Pax3 GFP , a new reporter for the melanocyte lineage, highlights novel aspects of PAX3 expression in the skin (2012) (12)
- Cell history determines the maintenance of transcriptional differences between left and right ventricular cardiomyocytes in the developing mouse heart (2003) (11)
- Megarole for microRNA in muscle disease. (2010) (11)
- 16 Wnt regulation of limb muscle differentiation (2002) (11)
- Development and differentiation (1981) (11)
- Manipulating myosin light chain 2 isoforms in vivo: a transgenic approach to understanding contractile protein diversity. (1997) (11)
- Characterization of Pax3-expressing cells from adult blood vessels (2011) (11)
- Promoter analysis of myosin alkali light chain genes expressed in mouse striated muscle. (1988) (10)
- Chapter 52 – Skeletal Muscle Development (2012) (10)
- Fine-tuning the onset of myogenesis by homeobox proteins that interact with the Myf5 limb enhancer (2015) (10)
- Activation of myogenic Regulation of Skeletal Muscle Stem Cell Behavior by Pax 3 and Pax 7 (2009) (10)
- Myogenesis in the mouse embryo. (1997) (10)
- THE ORIGIN AND GENETIC REGULATION OF MYOGENIC CELLS: FROM THE EMBRYO TO THE ADULT (2008) (9)
- Progressive developmental restriction, acquisition of left-right identity and cell growth behavior during lobe formation in mouse liver development (2016) (9)
- The actin and myosin multigene families. (1985) (9)
- Fibre type-specific and nerve-dependent regulation of myosin light chain 1 slow promoter in regenerating muscle (1997) (8)
- First and Second Heart Field (2016) (8)
- Lack of in vivo functional compensation between Pax family groups II and III in rodents. (2011) (8)
- A developmental study of the abnormal expression of alpha-cardiac and alpha-skeletal actins in the striated muscle of a mutant mouse. (1989) (8)
- The A17 enhancer directs expression of Myf5 to muscle satellite cells but Mrf4 to myonuclei (2007) (8)
- Open peer review as educational resource for science PhD students (2014) (8)
- Polymorphism of contractile proteins (1987) (7)
- Who Benefits From Science Blogging (2008) (7)
- A fast and automated framework for extraction of nuclei from cluttered 3D images in fluorescence microscopy (2011) (6)
- Assignment of the human fast skeletal muscle myosin alkali light chains gene (MLC1F/MLC3F) to 2q 32.1-2qter (2004) (6)
- Cardiac cell lineages that form the heart. (2015) (6)
- The Behavior of Cells that Form the Myocardial Compartments of the Vertebrate Heart (2010) (6)
- A novel GFPneo vector designed for the isolation and analysis of enhancer elements in transfected mammalian cells. (1998) (5)
- Protein and RNA synthesis in cultured muscle cells. (1976) (5)
- Length of the polyadenylated sequence in cytoplasmic ribonucleic acid isolated from fetal calf myoblasts differentiating in vitro. (1981) (5)
- Tissue Differentiation: A Personal Account of Research on Myogenesis and Cardiogenesis. (2016) (5)
- Characterization of Pax3-expressing cells from adult blood vessels (2012) (5)
- Messenger ribonucleic acid metabolism during myogenesis. (1977) (4)
- Myogenic Cell Specification during Somitogenesis (1999) (4)
- Re-localization of Actsk-1 to mouse Chromosome 8, a new region of homology with human Chromosome 1 (2004) (4)
- [Early stages of myogenesis as seen through the action of the myf-5 gene]. (1997) (4)
- 15 The formation of skeletal muscle: from somite to hand. (2002) (4)
- Leaving the lab: career development for developmental biologists (2011) (4)
- Differentiation and gene regulation. From the regulation of growth, differentiation, and death in vitro to the onset and maintenance of differentiation in vivo. (1997) (3)
- Developmental mechanisms, patterning and evolution. (2010) (3)
- HOX-7: Temporal Patterns of Expression in Normal and Limbless Chick Embryos (1991) (3)
- The transcriptional building blocks of the heart (1997) (3)
- Teaching Chemistry Labs from a Distance (2021) (3)
- Commentary on Distinct, but Previously Confused, Nrf1 Transcription Factors and Their Functions in Redox Regulation. (2020) (3)
- Studies of Proteins that Regulate Melanin Synthesis and Distribution (2009) (2)
- A cellular cornucopia (2000) (2)
- Expression of Myogenic Factors in Somites and Limb Buds During Mouse Embryogenesis (1992) (2)
- The Node: a place to discuss, debate and deliberate developmental biology (2010) (2)
- Muscle coding sequences and their regulation during myogenesis: cloning of muscle actin cDNA probes. (1981) (2)
- Skeletal muscle myogenesis: the expression of actin and myosin mRNAs. (1982) (2)
- [The mouse as a model of heart morphogenesis in mammals: origin and lineage of myocytes]. (2003) (2)
- GENE ORGANIZATION AND EXPRESSION DURING MUSCLE CELL DIFFERENTIATION (1981) (2)
- M-Cadherin Is a PAX3 Target During Myotome Patterning (2021) (1)
- Conserved functions of Pax3/7 during evolution (2010) (1)
- 17-P019 A Pax3/7:Foxc2 negative feedback loop in the somite modulates multipotent stem cell fates (2009) (1)
- Actin and Myosin Genes and Their Expression During Skeletal Muscle Myogenesis (1982) (1)
- [Mouse teratocarcinoma: isolation and characterization of two muscle cell lines (author's transl)]. (1974) (1)
- Science and Culture: Researchers embrace fashion to show off science concepts (2020) (1)
- An interview with Alex Joyner and Liz Robertson: Development editors at the helm of developmental biology societies (2010) (1)
- Broken Horizon: UK medical research struggling with funding and collaborations gap after Brexit (2022) (1)
- and regulation of the gene (1990) (1)
- An interview with Ottoline Leyser (2011) (1)
- Developmental Regulation of Muscle Gene Transcripts in Embryonic Mouse Muscle (1990) (1)
- CHANGES IN GENE EXPRESSION DURING CELLULAR DIFFERENTIATION (1979) (1)
- Accumulation of α-skeletal actin mRNA in experimental cardiac hypertrophy (1985) (1)
- [The mouse as a model for heart morphogenesis in mammals: the origin of myocytes and studies with cardiac explants]. (2003) (1)
- Msx1 is close but not allelic to either Hm or Hx on mouse Chromosome 5 (1994) (1)
- An interview with Irving Weissman at the 2010 ISSCR meeting (2010) (0)
- Analysis of the expression of myosin and actin genes during mouse myoblast differentiation using specific recombinant plasmids. (1982) (0)
- [Induction phenomena during vertebrate limb development and homeo box gene expression]. (1993) (0)
- 09-P042 The transcriptional repressor Prdm1/Blimp1 is required within the second heart field for the morphogenesis of the distal outflow tract (2009) (0)
- What does the concept of the stem cell niche really mean today? (2012) (0)
- Author response: The role of Pitx2 and Pitx3 in muscle stem cells gives new insights into P38α MAP kinase and redox regulation of muscle regeneration (2018) (0)
- Fgf10 and the Embryological Origin of Outflow Tract Myocardium (2007) (0)
- An interview with Kate Storey and Silvia Marino (2010) (0)
- S19-05 Regulation of muscle stem cell fate by Pax genes (2009) (0)
- Cytoplasmic ribonucleoprotein particles in muscle cells. (1977) (0)
- development Divergent functions of murine Pax 3 and Pax 7 in limb muscle Material Supplemental (2004) (0)
- Phosphorylation and alternative splicing of MEF2C, a dual switch function in muscle regeneration (2015) (0)
- Myocardial cell lineages in the mammalian embryo: The second heart field (2006) (0)
- Abstracts of the XVIII European Conference on Muscle and Motility (1990) (0)
- Genetic and developmental aspects of contractile and cytoskeletal protein (2005) (0)
- Biochemical aspects of muscle differentiation as analyzed by in vitro cultivation techniques. (1979) (0)
- embryonic progenitor cells into the myogenic program Pax3 regulation of FGF signaling affects the progression of (2008) (0)
- Correction 172, p. 91 (2007) (0)
- New Results - Tissue growth, regeneration and cell movment (2008) (0)
- Not science fiction (2014) (0)
- A Blog of Her Own: Scholarly Women on the Web (2009) (0)
- Regionalization of transcriptional potential in the myocardium: 'cardiosensor' trangenic mice (1998) (0)
- The role of science in international politics: A tour ofmodern history in scientific journals (2008) (0)
- An interview with Angela Nieto (2012) (0)
- An interview with José Xavier Neto (2012) (0)
- laminin (red) and β-gal (green). (H-J') Coimmunodetection of β-gal-positive cells in the diaphragm muscle of 3-wk-old Pax3 (2006) (0)
- Interactions with John Gurdon--muscle as a mesodermal read-out and the community effect. (2014) (0)
- Actin and myosin multigene families: Their expression during skeletal muscle differentiation (1984) (0)
- Technical Note: The Use of RNA-interference as a Tool to Find Proteins Involved in Melanosome Formation or Transport (2009) (0)
- COLD SPRING HARBOR SYMPOSIA ON QUANTITATIVE BIOLOGY VOLUME LXXIII (2009) (0)
- An interview with Gordon Keller (2011) (0)
- An interview with Haruhiko Koseki (2012) (0)
- Results Early Transgene Markers of Right and Left Ventricular Myocardium (2004) (0)
- MYOGENIC DETERMINATION IN MAMMALS (1996) (0)
- Publishing negative results and underlying research data (2015) (0)
- An interview with Margaret Buckingham: President of the French Society of Developmental Biology. [Interviewed by Eva Amsen]. (2011) (0)
- ACTIN AND MYOSIN GENE EXPRESSION IN MOUSE STRIATED MUSCLE (1987) (0)
- An interview with Elisabeth Knust: President of the German Society for Developmental Biology (2011) (0)
- There is increasing evidence for a positive role of Wnt signaling molecules in the activation of myogenesis in amniote (1999) (0)
- Polynucleotides directing the activation of expression of a gene in the heart and its applications to the gene therapy (1999) (0)
- North Carolina Science Blogging Conference (2008) (0)
- In remembrance of David Yaffe (2020) (0)
- ALICIA paper (2016) (0)
- An interview with Magdalena Götz (2011) (0)
- Communicating science at a music festival — with 135,000 attendees (2019) (0)
- H019 Clonal analysis of the origin of the ventricular conduction system (2009) (0)
- An interview with Margaret Buckingham: President of the French Society of Developmental Biology (2011) (0)
- Margaret Buckingham: studying the choreography of cardiogenesis. Interviewed by Ruth Williams. (2012) (0)
- An interview with Shinichi Aizawa: President of the Japanese Society of Developmental Biologists (2010) (0)
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