Anita Corbett
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Professor in the Department of Biology at Emory University
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Biology
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(Suggest an Edit or Addition)According to Wikipedia, Anita Hargrave Corbett is an American biochemist who is the Samuel C. Dobbs Professor in the Department of Biology at Emory University. Her research investigates the molecular basis for disease, the regulation of protein import and mRNA export. She is a Fellow of the American Association for the Advancement of Science and the American Society for Biochemistry and Molecular Biology.
Anita Corbett's Published Works
Published Works
- A compendium of RNA-binding motifs for decoding gene regulation (2013) (1214)
- Classical Nuclear Localization Signals: Definition, Function, and Interaction with Importin α* (2007) (1094)
- Importin α: A multipurpose nuclear-transport receptor (2004) (562)
- Importin alpha: a multipurpose nuclear-transport receptor. (2004) (332)
- Dissection of a Nuclear Localization Signal* (2001) (313)
- The DEAD-box protein Dbp5 controls mRNA export by triggering specific RNA:protein remodeling events. (2007) (227)
- When good enzymes go bad: conversion of topoisomerase II to a cellular toxin by antineoplastic drugs. (1993) (211)
- Nucleocytoplasmic transport of macromolecules (1997) (205)
- Nab2p Is Required for Poly(A) RNA Export in Saccharomyces cerevisiae and Is Regulated by Arginine Methylation via Hmt1p* (2002) (188)
- A yeast RNA-binding protein shuttles between the nucleus and the cytoplasm. (1994) (182)
- The current state of eukaryotic DNA base damage and repair (2015) (171)
- Structural basis for the interaction between NTF2 and nucleoporin FxFG repeats (2002) (167)
- Rna1p, a Ran/TC4 GTPase activating protein, is required for nuclear import (1995) (165)
- Regulation of Nuclear Import by Phosphorylation Adjacent to Nuclear Localization Signals* (2004) (156)
- The C-terminal domain of myosin-like protein 1 (Mlp1p) is a docking site for heterogeneous nuclear ribonucleoproteins that are required for mRNA export (2003) (149)
- Ubiquitin-mediated mRNP dynamics and surveillance prior to budding yeast mRNA export. (2010) (141)
- Actively Transcribed GAL Genes Can Be Physically Linked to the Nuclear Pore by the SAGA Chromatin Modifying Complex* (2007) (140)
- Process or perish: quality control in mRNA biogenesis (2005) (138)
- Carboxymethylation of the PP2A Catalytic Subunit inSaccharomyces cerevisiae Is Required for Efficient Interaction with the B-type Subunits Cdc55p and Rts1p* (2001) (130)
- Dynamic localization of the nuclear import receptor and its interactions with transport factors (1996) (128)
- Expanding the Definition of the Classical Bipartite Nuclear Localization Signal (2010) (118)
- Loss of nuclear poly(A)-binding protein 1 causes defects in myogenesis and mRNA biogenesis. (2010) (113)
- Mechanisms Regulating Protein Localization (2015) (112)
- Saccharomyces cerevisiae Ntg1p and Ntg2p: broad specificity N-glycosylases for the repair of oxidative DNA damage in the nucleus and mitochondria. (1999) (110)
- Nuclear localization signals and human disease (2009) (106)
- Nuclear Localization Signal Receptor Affinity Correlates with in Vivo Localization in Saccharomyces cerevisiae* (2006) (106)
- The NTF2 Gene Encodes an Essential, Highly Conserved Protein That Functions in Nuclear Transport in Vivo* (1996) (103)
- Structural basis for Nup2p function in cargo release and karyopherin recycling in nuclear import (2003) (102)
- Interaction between the small GTPase Ran/Gsp1p and Ntf2p is required for nuclear transport (1997) (98)
- Mechanisms of nuclear mRNA quality control (2009) (97)
- Quantitative analysis of nuclear localization signal (NLS)-importin alpha interaction through fluorescence depolarization. Evidence for auto-inhibitory regulation of NLS binding. (2000) (94)
- Importin α can migrate into the nucleus in an importin β‐ and Ran‐independent manner (2002) (93)
- Abasic Sites Stimulate Double-stranded DNA Cleavage Mediated by Topoisomerase II (1995) (92)
- Phosphorylation of topoisomerase II by casein kinase II and protein kinase C: effects on enzyme-mediated DNA cleavage/religation and sensitivity to the antineoplastic drugs etoposide and 4'-(9-acridinylamino)methane-sulfon-m-anisidide. (1992) (92)
- Messenger RNA Export from the Nucleus: A Series of Molecular Wardrobe Changes (2009) (90)
- The RNA exosome and RNA exosome-linked disease (2018) (89)
- Recognition of polyadenosine RNA by zinc finger proteins (2007) (88)
- PABPN1: molecular function and muscle disease (2013) (87)
- Effects of topoisomerase II-targeted drugs on enzyme-mediated DNA cleavage and ATP hydrolysis: evidence for distinct drug interaction domains on topoisomerase II. (1993) (86)
- Post-transcriptional regulation of gene expression and human disease. (2018) (82)
- Functional Significance of the Interaction between the mRNA-binding Protein, Nab2, and the Nuclear Pore-associated Protein, Mlp1, in mRNA Export*S⃞ (2008) (81)
- The Molecular Mechanism of Transport of Macromolecules Through Nuclear Pore Complexes (2000) (81)
- Macromolecular transport between the nucleus and the cytoplasm: Advances in mechanism and emerging links to disease. (2014) (80)
- Mutation of the conserved polyadenosine RNA binding protein, ZC3H14/dNab2, impairs neural function in Drosophila and humans (2011) (77)
- Domain analysis of the Saccharomyces cerevisiae heterogeneous nuclear ribonucleoprotein, Nab2p. Dissecting the requirements for Nab2p-facilitated poly(A) RNA export. (2003) (75)
- Nuclear protein import is decreased by engineered mutants of nuclear transport factor 2 (NTF2) that do not bind GDP-Ran. (1997) (74)
- Mechanism of action of topoisomerase II-targeted antineoplastic drugs. (1994) (73)
- RNA-binding proteins and gene regulation in myogenesis. (2011) (70)
- Enteropathogenic Escherichia coli Tir is an SH2/3 ligand that recruits and activates tyrosine kinases required for pedestal formation (2007) (69)
- The Auto-inhibitory Function of Importin α Is Essentialin Vivo * (2003) (68)
- Nuclear transport mechanisms (2001) (68)
- Air1 Zinc Knuckles 4 and 5 and a Conserved IWRXY Motif Are Critical for the Function and Integrity of the Trf4/5-Air1/2-Mtr4 Polyadenylation (TRAMP) RNA Quality Control Complex* (2011) (68)
- Conditional mutations in gamma-tubulin reveal its involvement in chromosome segregation and cytokinesis. (2001) (64)
- Dissection of the karyopherin alpha nuclear localization signal (NLS)-binding groove: functional requirements for NLS binding. (2003) (62)
- Poly(A) RNA‐binding proteins and polyadenosine RNA: new members and novel functions (2014) (60)
- The Ccr4-Not Complex Interacts with the mRNA Export Machinery (2011) (60)
- Gleaning Insights from Fecal Microbiota Transplantation and Probiotic Studies for the Rational Design of Combination Microbial Therapies (2016) (59)
- A role for the passage helix in the DNA cleavage reaction of eukaryotic topoisomerase II. A two-site model for enzyme-mediated DNA cleavage. (1992) (59)
- A PY-NLS Nuclear Targeting Signal Is Required for Nuclear Localization and Function of the Saccharomyces cerevisiae mRNA-binding Protein Hrp1* (2008) (59)
- Protein kinase C modulates the catalytic activity of topoisomerase II by enhancing the rate of ATP hydrolysis: evidence for a common mechanism of regulation by phosphorylation. (1993) (58)
- Characterization of the Auto-inhibitory Sequence within the N-terminal Domain of Importin α* (2003) (57)
- Characterization of the Probiotic Yeast Saccharomyces boulardii in the Healthy Mucosal Immune System (2016) (54)
- H2B ubiquitylation controls the formation of export-competent mRNP. (2012) (53)
- Nuclear poly(A) binding protein 1 (PABPN1) and Matrin3 interact in muscle cells and regulate RNA processing (2017) (53)
- A conserved role for the zinc finger polyadenosine RNA binding protein, ZC3H14, in control of poly(A) tail length (2014) (51)
- The Mitogen-Activated Protein Kinase Slt2 Regulates Nuclear Retention of Non-Heat Shock mRNAs during Heat Shock-Induced Stress (2010) (51)
- Dynamic Compartmentalization of Base Excision Repair Proteins in Response to Nuclear and Mitochondrial Oxidative Stress (2008) (49)
- A Yeast Model System for Functional Analysis of the Niemann–Pick Type C Protein 1 Homolog, Ncr1p (2005) (48)
- Recognition of Polyadenosine RNA by the Zinc Finger Domain of Nuclear Poly(A) RNA-binding Protein 2 (Nab2) Is Required for Correct mRNA 3′-End Formation* (2010) (47)
- Effect of casein kinase II-mediated phosphorylation on the catalytic cycle of topoisomerase II. Regulation of enzyme activity by enhancement of ATP hydrolysis. (1992) (47)
- The Mechanism of Ran Import into the Nucleus by Nuclear Transport Factor 2* (2000) (46)
- Saccharomyces cerevisiae Npc2p Is a Functionally Conserved Homologue of the Human Niemann-Pick Disease Type C 2 Protein, hNPC2 (2005) (45)
- Exploiting mechanistic differences between drug classes to define functional drug interaction domains on topoisomerase II. Evidence that several diverse DNA cleavage-enhancing agents share a common site of action on the enzyme. (1993) (44)
- Structure of the N-Terminal Mlp1-Binding Domain of the Saccharomyces cerevisiae mRNA-Binding Protein, Nab2 (2008) (44)
- Activation and inhibition of bovine carbonic anhydrase III by dianions. (1991) (42)
- The long and the short of it: the role of the zinc finger polyadenosine RNA binding protein, Nab2, in control of poly(A) tail length. (2012) (42)
- BERing the burden of damage: Pathway crosstalk and posttranslational modification of base excision repair proteins regulate DNA damage management. (2017) (42)
- Importin alpha can migrate into the nucleus in an importin beta- and Ran-independent manner. (2002) (41)
- Splice variants of the human ZC3H14 gene generate multiple isoforms of a zinc finger polyadenosine RNA binding protein. (2009) (40)
- Post-transcriptional Regulation of Programmed Cell Death 4 (PDCD4) mRNA by the RNA-binding Proteins Human Antigen R (HuR) and T-cell Intracellular Antigen 1 (TIA1)* (2014) (40)
- Crystallization and initial X-ray diffraction characterization of complexes of FxFG nucleoporin repeats with nuclear transport factors. (2000) (38)
- Mms22p protects Saccharomyces cerevisiae from DNA damage induced by topoisomerase II (2005) (38)
- The Ty1 integrase protein can exploit the classical nuclear protein import machinery for entry into the nucleus (2008) (38)
- The intracellular mobility of nuclear import receptors and NLS cargoes. (2009) (38)
- The interaction between Ran and NTF2 is required for cell cycle progression. (2000) (37)
- Nab3 Facilitates the Function of the TRAMP Complex in RNA Processing via Recruitment of Rrp6 Independent of Nrd1 (2015) (36)
- The subcellular localization of the Niemann-Pick Type C proteins depends on the adaptor complex AP-3 (2007) (36)
- Evolutionarily Conserved Polyadenosine RNA Binding Protein Nab2 Cooperates with Splicing Machinery To Regulate the Fate of Pre-mRNA (2016) (36)
- Functional Heterologous Protein Expression by Genetically Engineered Probiotic Yeast Saccharomyces boulardii (2014) (34)
- Structural Basis for Polyadenosine-RNA Binding by Nab2 Zn Fingers and Its Function in mRNA Nuclear Export (2012) (34)
- Inhibition of eukaryotic topoisomerase II by ultraviolet-induced cyclobutane pyrimidine dimers. (1991) (32)
- Regulation of base excision repair: Ntg1 nuclear and mitochondrial dynamic localization in response to genotoxic stress (2010) (32)
- Novel mouse models of oculopharyngeal muscular dystrophy (OPMD) reveal early onset mitochondrial defects and suggest loss of PABPN1 may contribute to pathology (2017) (31)
- Distinct roles for classical nuclear import receptors in the growth of multinucleated muscle cells. (2011) (30)
- Interaction between Ran and Mog1 Is Required for Efficient Nuclear Protein Import* (2001) (30)
- Control of mRNA stability contributes to low levels of nuclear poly(A) binding protein 1 (PABPN1) in skeletal muscle (2013) (30)
- Overexpression of the base excision repair NTHL1 glycosylase causes genomic instability and early cellular hallmarks of cancer (2018) (28)
- Functional Analysis of the Hydrophobic Patch on Nuclear Transport Factor 2 Involved in Interactions with the Nuclear Porein Vivo * (2001) (28)
- Identification and characterization of the human MOG1 gene. (2001) (28)
- An Interaction between Two RNA Binding Proteins, Nab2 and Pub1, Links mRNA Processing/Export and mRNA Stability (2007) (28)
- The Chromatin Remodeler ISW1 Is a Quality Control Factor that Surveys Nuclear mRNP Biogenesis (2016) (27)
- The Drosophila ortholog of the Zc3h14 RNA binding protein acts within neurons to pattern axon projection in the developing brain (2016) (27)
- The RNA-binding protein, ZC3H14, is required for proper poly(A) tail length control, expression of synaptic proteins, and brain function in mice (2017) (26)
- Poly(A) Tail-Mediated Gene Regulation by Opposing Roles of Nab2 and Pab2 Nuclear Poly(A)-Binding Proteins in Pre-mRNA Decay (2013) (26)
- SAC3 may link nuclear protein export to cell cycle progression. (2000) (26)
- SGD1 encodes an essential nuclear protein of Saccharomyces cerevisiae that affects expression of the GPD1 gene for glycerol 3‐phosphate dehydrogenase (2000) (25)
- Identification and Characterization of the Arabidopsis Orthologs of Nuclear Transport Factor 2, the Nuclear Import Factor of Ran1 (2006) (25)
- The Conserved, Disease-Associated RNA Binding Protein dNab2 Interacts with the Fragile X Protein Ortholog in Drosophila Neurons. (2017) (24)
- Non-equivalence of nuclear import among nuclei in multinucleated skeletal muscle cells (2018) (23)
- Identification and Characterization of the Arabidopsis Orthologs of Nuclear Transport Factor 2, the Nuclear Import Factor of Ran 1 (2006) (23)
- A pyrimido[1,6-a]benzimidazole that enhances DNA cleavage mediated by eukaryotic topoisomerase II: a novel class of topoisomerase II-targeted drugs with cytotoxic potential (1993) (23)
- The RNA Exosome and Human Disease. (2020) (23)
- Insight into the RNA Exosome Complex Through Modeling Pontocerebellar Hypoplasia Type 1b Disease Mutations in Yeast (2016) (21)
- Both KH and non-KH domain sequences are required for polyribosome association of Scp160p in yeast. (2004) (21)
- Biochemical isolation of myonuclei employed to define changes to the myonuclear proteome that occur with aging (2017) (20)
- Nuclear RanGTP is not required for targeting small nucleolar RNAs to the nucleolus (2003) (20)
- Engineered mutants in the switch II loop of Ran define the contribution made by key residues to the interaction with nuclear transport factor 2 (NTF2) and the role of this interaction in nuclear protein import. (1999) (19)
- Depletion of HuR in murine skeletal muscle enhances exercise endurance and prevents cancer-induced muscle atrophy (2019) (19)
- New kid on the ID block (2012) (18)
- The Polyadenosine RNA-binding Protein, Zinc Finger Cys3His Protein 14 (ZC3H14), Regulates the Pre-mRNA Processing of a Key ATP Synthase Subunit mRNA* (2016) (17)
- Identification of Genes That Function in the Biogenesis and Localization of Small Nucleolar RNAs in Saccharomyces cerevisiae (2008) (17)
- A Hierarchy of Nuclear Localization Signals Governs the Import of the Regulatory Factor X Complex Subunits and MHC Class II Expression 1 (2004) (17)
- The Classical Nuclear Localization Signal Receptor, Importin-α, Is Required for Efficient Transition Through the G1/S Stage of the Cell Cycle in Saccharomyces cerevisiae (2009) (16)
- Structural Basis for the Function of the Saccharomyces cerevisiae Gfd1 Protein in mRNA Nuclear Export*♦ (2010) (16)
- Functional overlap between conserved and diverged KH domains in Saccharomyces cerevisiae SCP160 (2007) (16)
- The polyadenosine RNA-binding protein ZC3H14 interacts with the THO complex and coordinately regulates the processing of neuronal transcripts (2018) (16)
- Quantitative Analysis of Nuclear Localization Signal (NLS)-Importin α Interaction through Fluorescence Depolarization (2000) (15)
- Functional analysis of the yeast Ran exchange factor Prp20p: in vivo evidence for the RanGTP gradient model (2001) (14)
- SAC3 may link nuclear protein export to cell cycle progression (2000) (14)
- Domain Analysis of the Saccharomyces cerevisiaeHeterogeneous Nuclear Ribonucleoprotein, Nab2p (2003) (13)
- Structure–function relationships in the Nab2 polyadenosine‐RNA binding Zn finger protein family (2019) (13)
- Nab 2 p Is Required for Poly ( A ) RNA Export in Saccharomyces cerevisiae and Is Regulated by Arginine Methylation via Hmt 1 p * (2002) (13)
- Biallelic variants in the RNA exosome gene EXOSC5 are associated with developmental delays, short stature, cerebellar hypoplasia and motor weakness (2020) (12)
- Links between mRNA splicing, mRNA quality control, and intellectual disability. (2016) (12)
- Post-transcriptional regulation of Pabpn1 by the RNA binding protein HuR (2018) (11)
- Carboxymethylation of the PP 2 A Catalytic Subunit in Saccharomyces cerevisiae Is Required for Efficient Interaction with the B-type Subunits Cdc 55 p and Rts 1 p * (10)
- Nuclear protein transport. (2002) (10)
- A Drosophila model of Pontocerebellar Hypoplasia reveals a critical role for the RNA exosome in neurons (2019) (9)
- Genetic analysis of macromolecular transport across the nuclear envelope. (1996) (9)
- Regulation of nucleocytoplasmic transport in skeletal muscle. (2011) (8)
- Dissection of the Karyopherin α Nuclear Localization Signal (NLS)-binding Groove (2003) (8)
- Identification of SUMO modification sites in the base excision repair protein, Ntg1. (2016) (7)
- Modeling Pathogenic Variants in the RNA Exosome. (2020) (7)
- Biochemical Isolation of Myonuclei from Mouse Skeletal Muscle Tissue. (2017) (7)
- Defining functional drug-interaction domains on topoisomerase II by exploiting mechanistic differences between drug classes (2004) (7)
- Regulation of base excision repair in eukaryotes by dynamic localization strategies. (2012) (7)
- The Schizosaccharomyces pombe Hikeshi/Opi10 protein has similar biochemical functions to its human homolog but acts in different physiological contexts (2014) (6)
- Analysis of a predicted nuclear localization signal: implications for the intracellular localization and function of the Saccharomyces cerevisiae RNA-binding protein Scp160 (2007) (6)
- Dissecting the roles of Cse1 and Nup2 in classical NLS‐cargo release in vivo (2019) (5)
- Saccharomyces cerevisiae Npc 2 p Is a Functionally Conserved Homologue of the Human Niemann-Pick Disease Type C 2 Protein , hNPC 2 † (2005) (5)
- Nab 3 Facilitates the Function of the TRAMP Complex in RNA Processing via Recruitment of Rrp 6 Independent of Nrd 1 (5)
- Proteomic analysis reveals that wildtype and alanine-expanded nuclear poly(A)-binding protein exhibit differential interactions in skeletal muscle (2019) (5)
- Should INO stay or should INO Go: a DNA "zip code" mediates gene retention at the nuclear pore. (2010) (5)
- Hot trends erupting in the nuclear transport field (2004) (4)
- A Genetic Screen Links the Disease-Associated Nab2 RNA-Binding Protein to the Planar Cell Polarity Pathway in Drosophila melanogaster (2019) (4)
- Automated Quantification of the Subcellular Localization of Multicompartment Proteins via Q‐SCAn (2013) (4)
- On board. (2003) (3)
- The Disease-Associated Proteins Drosophila Nab2 and Ataxin-2 Interact with Shared RNAs and Coregulate Neuronal Morphology (2021) (3)
- The Polyadenosine RNA Binding Protein ZC3H14 is Required in Mice for Proper Dendritic Spine Density (2020) (3)
- An Antibody to Detect Alanine-Expanded PABPN1: A New Tool to Study Oculopharyngeal Muscular Dystrophy (2015) (2)
- Yeast as a Tool in Cancer Research: Nuclear Trafficking (2007) (2)
- SURVEY AND SUMMARY The current state of eukaryotic DNA base damage and repair (2015) (2)
- Transformation of Probiotic Yeast and Their Recovery from Gastrointestinal Immune Tissues Following Oral Gavage in Mice. (2016) (2)
- The Nab2 RNA binding protein promotes sex-specific splicing of Sex lethal in Drosophila neuronal tissue (2020) (2)
- The mating response cascade does not modulate changes in the steady‐state level of target mRNAs through control of mRNA stability (1990) (2)
- The RNA-binding protein Nab2 regulates the proteome of the developing Drosophila brain (2020) (2)
- The Disease-Associated Proteins Drosophila Nab2 and Ataxin-2 Interact with Shared RNAs and Coregulate Neuronal Morphology. (2021) (1)
- Nuclear‐Cytoplasmic Transport (2009) (1)
- The Nab2 RNA-binding protein patterns dendritic and axonal projections through a planar cell polarity-sensitive mechanism (2022) (1)
- An endogenous PI3K interactome promoting astrocyte-mediated neuroprotection identifies a novel association with RNA-binding protein ZC3H14 (2020) (1)
- A budding yeast model for human disease mutations in the EXOSC2 cap subunit of the RNA exosome complex (2020) (1)
- Yeast Smy2 and its human homologs GIGYF1 and -2 regulate Cdc48/VCP function during transcription stress (2022) (1)
- Control of mRNA stability contributes to low levels of nuclear poly(A) binding protein 1 (PABPN1) in skeletal muscle (2013) (1)
- Practical advice for mentoring and supporting faculty colleagues in STEM fields: Views from mentor and mentee perspectives (2021) (1)
- Creative strategies to perform an inclusive faculty search (2022) (0)
- Abstract 1931: Innovating Life Sciences Laboratory Training: Molecular Biology Laboratory Education Modules (MBLEMs) as a Model for Advanced Training at Diverse Institutions (2023) (0)
- Expression X Complex Subunits and MHC Class II Governs the Import of the Regulatory Factor A Hierarchy of Nuclear Localization Signals (2004) (0)
- CANINE GDP-RAN F72Y MUTANT (1999) (0)
- In vivo Characterization of the Critical Interaction between the RNA Exosome and the Essential RNA Helicase Mtr4 in Saccharomyces cerevisiae (2022) (0)
- A Functional Interaction between the Evolutionarily Conserved Zinc Finger Poly(A) RNA‐binding Protein, Nab2, and the Exosome Links mRNA 3′‐End Processing/Export with mRNA Quality Control (2009) (0)
- Evaluating use of the probiotic yeast Saccharomyces boulardii for the synthesis and delivery of oral therapeutics (VAC8P.1061) (2015) (0)
- A YeastRNA-Binding Protein Shuttles between theNucleus andtheCytoplasm (1994) (0)
- The RNA binding protein Nab2 genetically interacts with multiple RNA exosome cofactors to regulate target RNAs (2022) (0)
- Abstract 1808: A Budding Yeast Model to Study Oncohistones Defines Roles for H3K36 Acetylation that May be Linked to R-loop Resolution (2023) (0)
- An endogenous PI3K interactome promoting astrocyte mediated neuroprotection identifies a novel association with RNA binding protein ZC3H14. (2020) (0)
- Structural basis for the interaction between Fg-nucleoporins and NTF2 (2002) (0)
- The Drosophila RNA binding protein Nab2 patterns dendritic arbors and axons via the planar cell polarity pathway (2021) (0)
- Nuclear Pores and Nuclear Import/Export (2004) (0)
- A-Tail of Telomerase RNA Maturation. (2019) (0)
- meeting report Hot trends erupting in the nuclear transport field Wo r kshop on Mechanisms of Nuclear Transport (2004) (0)
- Crystal Structure of Yeast Karyopherin (Importin) alpha in complex with a Nup2p N-terminal fragment (2003) (0)
- A yeast RNA-binding protein shuttles between the nucleus and the cytoplasm (1994) (0)
- The Mitogen-Activated Protein Kinase Slt2 Regulates Nuclear Retention of Non-Heat Shock mRNAs during Heat Shock-Induced Stress (cid:1) † (2010) (0)
- Protein-mRNA interactome capture: cartography of the mRNP (2018) (0)
- A Budding Yeast Model and Screen to Define the Functional Consequences of Oncogenic Histone Missense Mutations (2021) (0)
- Quality control of mRNA export: An evolutionarily conserved zinc finger protein mediates preferential export of properly processed mRNA to the cytoplasm (2008) (0)
- A Saccharomyces cerevisiae Model for Overexpression of Ntg1 a Base Excision DNA Repair Protein Reveals Novel Genetic Interactions (2022) (0)
- Nuclear moguls meet. (1997) (0)
- The Evolutionarily-conserved Polyadenosine RNA Binding Protein , Nab 2 , 1 Cooperates with Splicing Machinery to Regulate the Fate of pre-mRNA 2 3 4 (2016) (0)
- A Budding Yeast Model System to Define Biological Pathways Altered by Pathogenic Missense Mutations in Histone Genes Identifies a Link between Histone H3K36 and the TOS4 Gene (2022) (0)
- Post‐Transcriptional Regulation of Gene Expression and Human Genetic Disease (2019) (0)
- Nuclear–Cytoplasmic Transport (2015) (0)
- NAB2 N-terminal domain (2008) (0)
- N77Y point mutant of S.Cerevisiae NTF2 (2002) (0)
- Activation and Inhibition of Bovine Carbonic Anhydrase I11 by Dianions" (2001) (0)
- CANINE GDP-RAN R76E MUTANT (1999) (0)
- Protein Mog1 E65A mutant (2003) (0)
- The RNA helicase DDX1 associates with the nuclear RNA exosome and modulates R-loops (2023) (0)
- Etoposide and 4 Cleavage / Religation and Sensitivity to the Antineoplastic Drugs Protein Kinase C : Effects on Enzyme-mediated DNA Phosphorylation of Topoisomerase II by Casein Kinase II and Updated Version (2006) (0)
- A Saccharomyces cerevisiae model and screen to define the functional consequences of oncogenic histone missense mutations (2022) (0)
- Rotation Report Sample Version 3 Due Date : August 9 , 1998 Analysis of the Guanine Nucleotide Exchange Activity of the S . cerevisiae Ats 1 Protein (1999) (0)
- Identification of RNA Exosome Cofactors in Neuronal Cells to Probe Disease Mechanism (2020) (0)
- Nucleus | Nuclear Pores and Nuclear Import/Export (2021) (0)
- The leading edge (1992) (0)
- Processing/Export and mRNA Stability Proteins, Nab2 and Pub1, Links mRNA An Interaction between Two RNA Binding (2014) (0)
- A long and winding road to the RNA world (2015) (0)
- How to Select a Graduate School Program for a PhD in Biomedical Science (2022) (0)
- The RNA Exosome and Genetic Disease (2020) (0)
- Identification of Tissue‐Specific RNA Exosome Cofactors as an Approach to Define Disease Mechanism (2019) (0)
- ASBMB Student Chapter and Emory Science Advocacy Network (EScAN) Collaborations to Promote Diversity of Scientists in Advocacy and Policy (2019) (0)
- Canberra's engineering heritage; second edition (1990) (0)
- DNADamage (2020) (0)
- Advances in Biotechnology and Bioscience (2019) (0)
- Saccharomyces cerevisiae GPCR‐modulated mating pathway gene expression response does not involve immediate early‐like regulated mRNA stability (2006) (0)
- Proactive strategies for an inclusive faculty search process (2022) (0)
- Functional Analysis of RNA Exosome Mutants Linked to Disease Using a Saccharomyces cerevisiae Model System (2019) (0)
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