Aristidis Moustakas
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Computer Science
Why Is Aristidis Moustakas Influential?
(Suggest an Edit or Addition)Aristidis Moustakas's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Non-Smad TGF-β signals (2005) (954)
- Smad regulation in TGF-beta signal transduction. (2001) (926)
- Signaling networks guiding epithelial–mesenchymal transitions during embryogenesis and cancer progression (2007) (793)
- The regulation of TGFβ signal transduction (2009) (621)
- Mechanism of TGF-beta signaling to growth arrest, apoptosis, and epithelial-mesenchymal transition. (2009) (619)
- A SNAIL1–SMAD3/4 transcriptional repressor complex promotes TGF-β mediated epithelial–mesenchymal transition (2009) (612)
- TGF-beta and the Smad signaling pathway support transcriptomic reprogramming during epithelial-mesenchymal cell transition. (2005) (593)
- Non-Smad TGF-beta signals. (2005) (541)
- Mechanisms of TGF-beta signaling in regulation of cell growth and differentiation. (2002) (530)
- MEG3 long noncoding RNA regulates the TGF-β pathway genes through formation of RNA–DNA triplex structures (2015) (506)
- Actions of TGF-β as tumor suppressor and pro-metastatic factor in human cancer (2007) (474)
- TGF-(beta) type I receptor/ALK-5 and Smad proteins mediate epithelial to mesenchymal transdifferentiation in NMuMG breast epithelial cells. (1999) (441)
- Transforming growth factor-β employs HMGA2 to elicit epithelial–mesenchymal transition (2006) (437)
- Role of Smad Proteins and Transcription Factor Sp1 in p21Waf1/Cip1 Regulation by Transforming Growth Factor-β* (2000) (426)
- Regulation of EMT by TGFβ in cancer (2012) (408)
- Signaling Receptors for TGF-β Family Members. (2016) (384)
- Regulation of the human p21/WAF1/Cip1 promoter in hepatic cells by functional interactions between Sp1 and Smad family members. (1998) (379)
- HMGA2 and Smads Co-regulate SNAIL1 Expression during Induction of Epithelial-to-Mesenchymal Transition* (2008) (348)
- Id2 and Id3 Define the Potency of Cell Proliferation and Differentiation Responses to Transforming Growth Factor β and Bone Morphogenetic Protein (2004) (338)
- Actions of TGF-beta as tumor suppressor and pro-metastatic factor in human cancer. (2007) (323)
- Role of Smads in TGFβ signaling (2011) (290)
- Elucidation of Smad Requirement in Transforming Growth Factor-β Type I Receptor-induced Responses* (2003) (230)
- Smad regulation in TGF-β signal transduction (223)
- c-Jun Transactivates the Promoter of the Human p21 WAF1/Cip1 Gene by Acting as a Superactivator of the Ubiquitous Transcription Factor Sp1* (1999) (213)
- Degradation of the Tumor Suppressor Smad4 by WW and HECT Domain Ubiquitin Ligases* (2005) (200)
- LIM-kinase 2 and Cofilin Phosphorylation Mediate Actin Cytoskeleton Reorganization Induced by Transforming Growth Factor-β* (2005) (188)
- Regulating the stability of TGFβ receptors and Smads (2009) (184)
- TGF-β and the Tissue Microenvironment: Relevance in Fibrosis and Cancer (2018) (183)
- The transforming growth factor beta receptors types I, II, and III form hetero-oligomeric complexes in the presence of ligand. (1993) (182)
- The types II and III transforming growth factor-beta receptors form homo-oligomers (1994) (180)
- Mechanisms of TGFβ-Induced Epithelial–Mesenchymal Transition (2016) (180)
- Transforming growth factor-beta induces nuclear import of Smad3 in an importin-beta1 and Ran-dependent manner. (2001) (175)
- Growth inhibition by transforming growth factor beta (TGF-beta) type I is restored in TGF-beta-resistant hepatoma cells after expression of TGF-beta receptor type II cDNA. (1993) (168)
- Sp1 Plays a Critical Role in the Transcriptional Activation of the Human Cyclin-dependent Kinase Inhibitor p21 WAF1/Cip1 Gene by the p53 Tumor Suppressor Protein* (2001) (161)
- TGF-β Signaling (2020) (161)
- Transforming growth factor β as regulator of cancer stemness and metastasis (2016) (159)
- Induction of epithelial-mesenchymal transition by transforming growth factor β. (2012) (153)
- Epithelial–mesenchymal transition in cancer (2017) (151)
- Nuclear Factor YY1 Inhibits Transforming Growth Factor β- and Bone Morphogenetic Protein-Induced Cell Differentiation (2003) (150)
- Emergence, development and diversification of the TGF-β signalling pathway within the animal kingdom (2009) (145)
- Functions of Transforming Growth Factor-β Family Type I Receptors and Smad Proteins in the Hypertrophic Maturation and Osteoblastic Differentiation of Chondrocytes* (2002) (142)
- Functional Roles for the Cytoplasmic Domain of the Type III Transforming Growth Factor β Receptor in Regulating Transforming Growth Factor β Signaling* (2001) (132)
- Sustained TGFβ exposure suppresses Smad and non-Smad signalling in mammary epithelial cells, leading to EMT and inhibition of growth arrest and apoptosis (2007) (132)
- PARP-1 attenuates Smad-mediated transcription. (2010) (128)
- Growth differentiation factor-9 induces Smad2 activation and inhibin B production in cultured human granulosa-luteal cells. (2003) (128)
- Hyaluronan Fragments Induce Endothelial Cell Differentiation in a CD44- and CXCL1/GRO1-dependent Manner*boxs (2005) (125)
- Estrogen receptor alpha mediates epithelial to mesenchymal transition, expression of specific matrix effectors and functional properties of breast cancer cells. (2015) (123)
- Sustained TGF beta exposure suppresses Smad and non-Smad signalling in mammary epithelial cells, leading to EMT and inhibition of growth arrest and apoptosis. (2008) (122)
- The soluble exoplasmic domain of the type II transforming growth factor (TGF)-beta receptor. A heterogeneously glycosylated protein with high affinity and selectivity for TGF-beta ligands. (1995) (121)
- Smad pathway‐specific transcriptional regulation of the cell cycle inhibitor p21WAF1/Cip1 (2005) (119)
- TGFβ and matrix-regulated epithelial to mesenchymal transition. (2014) (117)
- Notch signaling is necessary for epithelial growth arrest by TGF-β (2007) (114)
- Doxorubicin requires the sequential activation of caspase-2, protein kinase Cdelta, and c-Jun NH2-terminal kinase to induce apoptosis. (2005) (110)
- Dynamic control of TGF‐β signaling and its links to the cytoskeleton (2008) (110)
- Control of transforming growth factor β signal transduction by small GTPases (2009) (108)
- Regulation of Transcription Factor Twist Expression by the DNA Architectural Protein High Mobility Group A2 during Epithelial-to-Mesenchymal Transition* (2012) (108)
- Differential Ubiquitination Defines the Functional Status of the Tumor Suppressor Smad4* (2003) (107)
- Differential regulation of the two RhoA-specific GEF isoforms Net1/Net1A by TGF-β and miR-24: role in epithelial-to-mesenchymal transition (2012) (106)
- Quantitative analysis of transient and sustained transforming growth factor-β signaling dynamics (2011) (104)
- The Mechanism of Nuclear Export of Smad3 Involves Exportin 4 and Ran (2006) (102)
- Regulation of actin organisation by TGF-beta in H-ras-transformed fibroblasts. (1999) (100)
- Functional consequences of tumorigenic missense mutations in the amino-terminal domain of Smad4 (2000) (93)
- From mono- to oligo-Smads: the heart of the matter in TGF-beta signal transduction. (2002) (91)
- Cdc6 expression represses E-cadherin transcription and activates adjacent replication origins (2011) (91)
- TGFβ induces SIK to negatively regulate type I receptor kinase signaling (2008) (90)
- Epithelial-Mesenchymal Transition and Metastasis under the Control of Transforming Growth Factor β (2018) (90)
- The role of Sp1 family members, the proximal GC-rich motifs, and the upstream enhancer region in the regulation of the human cell cycle inhibitor p21WAF-1/Cip1 gene promoter. (2002) (88)
- Tgf-β3-induced palatal fusion is mediated by Alk-5/Smad pathway (2004) (83)
- TGF-β type I receptor / ALK-5 and Smad proteins mediate epithelial to mesenchymal transdifferentiation in NMuMG breast epithelial cells (1999) (83)
- Smad signalling network. (2002) (77)
- Reprogramming during epithelial to mesenchymal transition under the control of TGFβ (2015) (73)
- TGF-β Family Signaling in Epithelial Differentiation and Epithelial-Mesenchymal Transition. (2018) (72)
- TGF-beta receptors: structure and function. (1994) (72)
- PPARalpha inhibits TGF-beta-induced beta5 integrin transcription in vascular smooth muscle cells by interacting with Smad4. (2002) (70)
- Snail depletes the tumorigenic potential of glioblastoma (2013) (65)
- Serglycin Is Implicated in the Promotion of Aggressive Phenotype of Breast Cancer Cells (2013) (65)
- Functional roles for the cytoplasmic domain of the type III transforming growth factor beta receptor in regulating transforming growth factor beta signaling. (2001) (64)
- Mechanisms of action of bone morphogenetic proteins in cancer. (2016) (64)
- The rationale for targeting TGF‐β in chronic liver diseases (2016) (63)
- Tamoxifen Inhibits TGF‐β‐Mediated Activation of Myofibroblasts by Blocking Non‐Smad Signaling Through ERK1/2 (2015) (63)
- The Notch and TGF-β Signaling Pathways Contribute to the Aggressiveness of Clear Cell Renal Cell Carcinoma (2011) (63)
- Cloning and developmental expression of the chick type II and type III TGFβ receptors (1994) (63)
- GH3 Pituitary Tumor Cells Contain Heteromeric Type I and Type II Receptor Complexes for Transforming Growth Factor and Activin-A (*) (1995) (62)
- Negative Regulation of TGFβ Signaling by the Kinase LKB1 and the Scaffolding Protein LIP1* (2010) (57)
- The high mobility group A2 protein epigenetically silences the Cdh1 gene during epithelial-to-mesenchymal transition (2014) (57)
- Mechanism of a transcriptional cross talk between transforming growth factor-beta-regulated Smad3 and Smad4 proteins and orphan nuclear receptor hepatocyte nuclear factor-4. (2003) (50)
- Tgf-beta3-induced palatal fusion is mediated by Alk-5/Smad pathway. (2004) (49)
- Serglycin promotes breast cancer cell aggressiveness: Induction of epithelial to mesenchymal transition, proteolytic activity and IL-8 signaling. (2018) (46)
- Cloning of a novel signaling molecule, AMSH-2, that potentiates transforming growth factor β signaling (2004) (44)
- p53 regulates epithelial–mesenchymal transition induced by transforming growth factor β (2013) (43)
- cDNA cloning, expression studies and chromosome mapping of human type I serine/threonine kinase receptor ALK7 (ACVR1C) (2001) (42)
- Ecsit-ement on the crossroads of Toll and BMP signal transduction. (2003) (41)
- Mechanistic Insights into Autoinhibition of the Oncogenic Chromatin Remodeler ALC1 (2017) (40)
- TGFβ and EGF signaling orchestrates the AP-1- and p63 transcriptional regulation of breast cancer invasiveness (2020) (39)
- Functional role of Meox2 during the epithelial cytostatic response to TGF‐β (2007) (39)
- Regulation of Myosin Light Chain Function by BMP Signaling Controls Actin Cytoskeleton Remodeling (2011) (38)
- The Epstein–Barr virus nuclear antigen-1 reprograms transcription by mimicry of high mobility group A proteins (2013) (37)
- Snail regulates BMP and TGFβ pathways to control the differentiation status of glioma-initiating cells (2018) (36)
- Characterization of immortalized human epidermolysis bullosa simplex (KRT5) cell lines: trimethylamine N-oxide protects the keratin cytoskeleton against disruptive stress condition. (2009) (36)
- The cytoskeleton in cell volume regulation. (1998) (35)
- Transcriptional Induction of Salt-inducible Kinase 1 by Transforming Growth Factor β Leads to Negative Regulation of Type I Receptor Signaling in Cooperation with the Smurf2 Ubiquitin Ligase* (2012) (35)
- Has2 natural antisense RNA and Hmga2 promote Has2 expression during TGFβ-induced EMT in breast cancer. (2019) (34)
- Intercellular Variation in Signaling through the TGF-β Pathway and Its Relation to Cell Density and Cell Cycle Phase* (2012) (34)
- Transforming growth factor β and bone morphogenetic protein actions in brain tumors (2015) (34)
- TGF-beta signaling from a three-dimensional perspective: insight into selection of partners. (2002) (32)
- Genome–wide binding of transcription factor ZEB1 in triple‐negative breast cancer cells (2018) (30)
- Ras and TGF-β signaling enhance cancer progression by promoting the ΔNp63 transcriptional program (2016) (30)
- Immortalized keratinocytes derived from patients with epidermolytic ichthyosis reproduce the disease phenotype: a useful in vitro model for testing new treatments (2011) (29)
- Transforming Growth Factor β Promotes Complexes between Smad Proteins and the CCCTC-binding Factor on the H19 Imprinting Control Region Chromatin* (2010) (29)
- In vitro and ex vivo vanadium antitumor activity in (TGF-β)-induced EMT. Synergistic activity with carboplatin and correlation with tumor metastasis in cancer patients. (2016) (28)
- Systemic and specific effects of antihypertensive and lipid-lowering medication on plasma protein biomarkers for cardiovascular diseases (2018) (28)
- TGFβ Activates Mitogen- and Stress-activated Protein Kinase-1 (MSK1) to Attenuate Cell Death* (2010) (27)
- Snail mediates crosstalk between TGFβ and LXRα in hepatocellular carcinoma (2017) (27)
- LXRα limits TGFβ-dependent hepatocellular carcinoma associated fibroblast differentiation (2019) (27)
- Context-dependent action of transforming growth factor β family members on normal and cancer stem cells. (2012) (26)
- Engagement of activin and bone morphogenetic protein signaling pathway Smad proteins in the induction of inhibin B production in ovarian granulosa cells (2002) (26)
- TGFβ-induced Early Activation of the Small GTPase RhoA is Smad2/3-independent and Involves Src and the Guanine Nucleotide Exchange Factor Vav2 (2011) (25)
- Molecular characterization of a type I serine-threonine kinase receptor for TGF-beta and activin in the rat pituitary tumor cell line GH3. (1995) (25)
- Long non‐coding RNAs and TGF‐β signaling in cancer (2020) (25)
- Sp 1 Plays a Critical Role in the Transcriptional Activation of the Human Cyclin-dependent Kinase Inhibitor p 21 WAF 1 / Cip 1 Gene by the p 53 Tumor Suppressor Protein * (2001) (24)
- Analysis of Epithelial-Mesenchymal Transition Induced by Transforming Growth Factor β. (2016) (23)
- A new twist in Smad signaling. (2006) (23)
- The Soluble Exoplasmic Domain of the Type II Transforming Growth Factor (TGF)-β Receptor (1995) (23)
- Genomewide binding of transcription factor Snail1 in triple‐negative breast cancer cells (2018) (22)
- The Types II and III Transforming Growth Factor-Receptors Form Homo-Oligomers (2002) (22)
- HRG regulates tumor progression, epithelial to mesenchymal transition and metastasis via platelet-induced signaling in the pre-tumorigenic microenvironment (2013) (21)
- Fine-Tuning of Smad Protein Function by Poly(ADP-Ribose) Polymerases and Poly(ADP-Ribose) Glycohydrolase during Transforming Growth Factor β Signaling (2014) (21)
- Dual inhibition of TGF‐β and PD‐L1: a novel approach to cancer treatment (2021) (21)
- TGF-β Family Signaling in Ductal Differentiation and Branching Morphogenesis. (2018) (20)
- TGF-beta targets PAX3 to control melanocyte differentiation. (2008) (20)
- BMP Signaling in Osteogenesis, Bone Remodeling and Repair (2005) (19)
- TANK‐binding kinase 1 is a mediator of platelet‐induced EMT in mammary carcinoma cells (2019) (18)
- Expression and characterization of Cys374 mutated human β‐actin in two different mammalian cell lines: impaired microfilament organization and stability (1999) (18)
- Somatic Ephrin Receptor Mutations Are Associated with Metastasis in Primary Colorectal Cancer. (2017) (17)
- The TGFB2-AS1 lncRNA Regulates TGF-β Signaling by Modulating Corepressor Activity (2019) (17)
- Overexpression of heparanase attenuated TGF‐β‐stimulated signaling in tumor cells (2017) (12)
- Transforming growth factor β (TGFβ) induces NUAK kinase expression to fine-tune its signaling output (2019) (12)
- The protein kinase LKB1 negatively regulates bone morphogenetic protein receptor signaling (2015) (11)
- The nuts and bolts of IRF structure (2003) (11)
- Endothelial-Tumor Cell Interaction in Brain and CNS Malignancies (2020) (11)
- The protein kinase SIK downregulates the polarity protein Par3 (2015) (11)
- BMP signaling is a therapeutic target in ovarian cancer (2020) (11)
- Serglycin activates pro-tumorigenic signaling and controls glioblastoma cell stemness, differentiation and invasive potential (2020) (11)
- Commercially Available Preparations of Recombinant Wnt3a Contain Non‐Wnt Related Activities Which May Activate TGF‐β Signaling (2016) (11)
- 37th International Symposium on Intensive Care and Emergency Medicine (part 1 of 3) (2017) (11)
- Chemical regulators of epithelial plasticity reveal a nuclear receptor pathway controlling myofibroblast differentiation (2016) (10)
- Coordination of TGF-β signaling by ubiquitylation. (2013) (10)
- Transforming growth factor-β employs HMGA 2 to elicit epithelial – mesenchymal transition (2006) (10)
- Glucose and Amino Acid Metabolic Dependencies Linked to Stemness and Metastasis in Different Aggressive Cancer Types (2021) (9)
- JNK-Dependent cJun Phosphorylation Mitigates TGFβ- and EGF-Induced Pre-Malignant Breast Cancer Cell Invasion by Suppressing AP-1-Mediated Transcriptional Responses (2019) (9)
- Extracellular Vesicles and Transforming Growth Factor β Signaling in Cancer (2022) (9)
- Single Chain Antibodies as Tools to Study transforming growth factor-β-Regulated SMAD Proteins in Proximity Ligation-Based Pharmacological Screens* (2016) (8)
- TGF-β in Human Disease (2013) (8)
- PPAR (cid:1) Inhibits TGF- (cid:2) –Induced (cid:2) 5 Integrin Transcription in Vascular Smooth Muscle Cells by Interacting With Smad4 (2002) (7)
- Author Correction: MEG3 long noncoding RNA regulates the TGF-β pathway genes through formation of RNA–DNA triplex structures (2019) (7)
- Regulation of actin organisation by TGF-β in Hras-transformed fibroblasts (1999) (7)
- DR.11.1: State of the art of research on opportunistic networks, and definition of a common framework for reference models and performance metrics (2008) (6)
- Regulation of Bone Morphogenetic Protein Signaling by ADP-ribosylation* (2016) (6)
- NUAK1 and NUAK2 Fine-Tune TGF-β Signaling (2021) (6)
- Nucleosome regulatory dynamics in response to TGFβ (2014) (6)
- Role of TGF-β signaling in EMT, cancer progression and metastasis (2011) (6)
- The protein kinase LKB1 promotes self‐renewal and blocks invasiveness in glioblastoma (2021) (5)
- TGF-β and Smad Signaling in Transcriptome Reprogramming During EMT (2008) (5)
- The noncoding MIR100HG RNA enhances the autocrine function of transforming growth factor β signaling (2021) (5)
- PPAR Inhibits TGF TGF TGF – Induced 5 Integrin Transcription in Vascular Smooth Muscle Cells by Interacting With Smad 4 (2002) (5)
- BMP2-induction of FN14 promotes protumorigenic signaling in gynecologic cancer cells. (2021) (5)
- TGF- b Family Signaling in Epithelial Differentiation and Epithelial – Mesenchymal Transition (2017) (4)
- TGF- (cid:1) and the Smad Signaling Pathway Support Transcriptomic Reprogramming during Epithelial-Mesenchymal Cell Transition □ D (2005) (4)
- Invasive cells follow Snail’s slow and persistent pace (2014) (3)
- Upregulated BMP-Smad signaling activity in the glucuronyl C5-epimerase knock out MEF cells. (2019) (3)
- Signal transduction mechanisms for members of the TGF-β family (2001) (3)
- TGF-β/SMAD Signaling in Epithelial to Mesenchymal Transition (2006) (3)
- The mitotic checkpoint protein kinase BUB1 is an engine in the TGF-β signaling apparatus (2015) (3)
- Long non-coding RNAs and TGF-beta signaling in cancer (2020) (3)
- TGFβ selects for pro‐stemness over pro‐invasive phenotypes during cancer cell epithelial–mesenchymal transition (2022) (2)
- TGF-beta in Human Disease (2013) (2)
- The high mobility group A 2 protein epigenetically silences the Cdh 1 gene during epithelial-to-mesenchymal transition (2015) (2)
- Mast Cell Chymase Has a Negative Impact on Human Osteoblasts. (2022) (1)
- Epithelial–Mesenchymal Transition as a Mechanism of Metastasis (2009) (1)
- P0320 : Targeting TGF-beta I with the transforming growth factor receptor type I kinase inhibitor, LY2157299, modulates stemness-related biomarkers in hepatocellular carcinoma (2015) (1)
- The polarity protein Par3 coordinates positively self-renewal and negatively invasiveness in glioblastoma (2021) (1)
- Transforming growth factor beta and bone morphogenetic protein actions in cancer progression (2015) (1)
- Systemic and specific effects of antihypertensive and lipid-lowering medication on plasma protein biomarkers for cardiovascular diseases (2018) (1)
- From mono- to oligo-Smads: The heart of the matter in TGF- (cid:1) signal transduction (2002) (1)
- Integrins open the way to epithelial-mesenchymal transitions. (2010) (1)
- Signal transduction of multifunctional TGF-ß family members (2008) (0)
- 5th International meeting on angiogenesis (2014) (0)
- TGFβ-mediated transcription is regulated by PARP-1/PARG-balanced ADP-ribosylation (2010) (0)
- Abstract 1982: TGF-beta induced SIK cooperates with Smurf2 to negatively regulate type I receptor kinase signaling (2011) (0)
- BMP signaling is a therapeutic target in ovarian cancer (2020) (0)
- The non-coding MIR100HG RNA mediates cytostatic responses of epithelial cells to transforming growth factor β (2018) (0)
- Signaling by BMP (2007) (0)
- The protein kinase LKB1 takes oncogenic actions in glioblastoma promoting self-renewal and invasiveness (2017) (0)
- TGFβ signaling down-regulates LINC00707 to inhibit inflammatory responses (2018) (0)
- SIK and Smurf2 cooperate to downregulate the TGF-β type I receptor (2010) (0)
- Inhibition of TGF-β/Smad signaling pathway during epithelial to mesenchymal transition by vanadium. (2015) (0)
- Role of Smads in TGFβ signaling (2011) (0)
- I-SMAD recruits type I receptor phosphatase and ubiquitin ligases to mediate receptor downregulation (2006) (0)
- CTCF and Smad Proteins of the TGF-β Pathway interact during regulation of gene expression from the H19 imprinted control region (2008) (0)
- State–of–the–art report on nonlinear representation of sources and channels (2013) (0)
- PPAR&agr; Inhibits TGF-&bgr;–Induced &bgr;5 Integrin Transcription in Vascular Smooth Muscle Cells by Interacting With Smad4 (2002) (0)
- Par3 promotes glioblastoma stem cell self-renewal while inhibiting cell invasion (2017) (0)
- SIK phosphorylates and degrades Par3 to mediate tight junction disassembly during epithelial-mesenchymal transition (2011) (0)
- Regulation of TGF-b/Smad signaling pathway by vanadium species (2015) (0)
- Cellular heterogeneity in pancreatic cancer: the different faces of gremlin action (2022) (0)
- Subject Index Vol. 95, 2001 (2001) (0)
- PARP-2 activation and association with Smads during regulation of TGFβ signaling (2012) (0)
- Signal transduction mechanisms for members of the TGF-beta superfamily (2001) (0)
- Loss of SNAI1 induces cellular plasticity in invasive triple-negative breast cancer cells (2022) (0)
- HRG regulates tumor progression, epithelial to mesenchymal transition and metastasis via platelet-induced signaling in the pre-tumorigenic microenvironment (2013) (0)
- Immortalized keratinocytes from Epidermolytic Ichthyosis-patients reproduce the disease phenotype in vitro (2010) (0)
- LXRα limits the pro-fibrotic action of TGFβ in liver cancer-associated fibroblasts (2017) (0)
- Regulation of novel gene targets of TGFβ signaling by PARP-1 (2012) (0)
- TBK1, an NF-κB activating kinase, is required for platelet-induced EMT (2016) (0)
- Cancer-Associated Fibroblasts and the Role ofTGF-Ji (0)
- The liver kinase B1 supports mammary epithelial morphogenesis by inhibiting critical factors that mediate epithelial‐mesenchymal transition (2023) (0)
- Systematic Review of the Cost Effectiveness of Dapagliflozin Used to Treat Patients with Type 2 Diabetes Mellitus (2018) (0)
- Cancer-Associated Fibroblasts and the Role of TGF-β (2008) (0)
- Aporphine and isoquinoline derivatives block glioblastoma cell stemness and enhance temozolomide cytotoxicity (2022) (0)
- Epithelial-to-Mesenchymal Transition Expression during Induction of HMGA 2 and Smads Co-regulate SNAIL 1 Developmental (2008) (0)
- Receptor Serine/Threonine Kinases (2006) (0)
- UvA-DARE (Digital Academic NUAK1 and NUAK2 Fine-Tune TGF-β Signaling (2021) (0)
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