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GATA-dependent recruitment of MEF2 proteins to target promoters
scientific article
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scholarly article
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title
GATA-dependent recruitment of MEF2 proteins to target promoters
(English)
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author
Mona Nemer
series ordinal
4
object named as
M Nemer
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author name string
S Morin
series ordinal
1
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F Charron
series ordinal
2
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L Robitaille
series ordinal
3
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language of work or name
English
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publication date
2 May 2000
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published in
The EMBO Journal
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volume
19
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page(s)
2046-55
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issue
9
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cites work
HDAC4 deacetylase associates with and represses the MEF2 transcription factor
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Molecular mechanisms of myogenic coactivation by p300: direct interaction with the activation domain of MyoD and with the MADS box of MEF2C
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Mutational analysis of the DNA binding, dimerization, and transcriptional activation domains of MEF2C
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Human myocyte-specific enhancer factor 2 comprises a group of tissue-restricted MADS box transcription factors
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Neuronal activity-dependent cell survival mediated by transcription factor MEF2
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MEF2 is upregulated during cardiac hypertrophy and is required for normal post-natal growth of the myocardium
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The transcription factor MEF2C-null mouse exhibits complex vascular malformations and reduced cardiac expression of angiopoietin 1 and VEGF
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Reciprocal interactions of Pit1 and GATA2 mediate signaling gradient-induced determination of pituitary cell types
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p38 mitogen-activated protein kinase pathway promotes skeletal muscle differentiation. Participation of the Mef2c transcription factor
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Transcriptional control of muscle development by myocyte enhancer factor-2 (MEF2) proteins
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GATA6 regulates HNF4 and is required for differentiation of visceral endoderm in the mouse embryo
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Combinatorial cis-acting elements control tissue-specific activation of the cardiac troponin I gene in vitro and in vivo
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A calcineurin-dependent transcriptional pathway for cardiac hypertrophy
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FOG, a multitype zinc finger protein, acts as a cofactor for transcription factor GATA-1 in erythroid and megakaryocytic differentiation
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Control of mouse cardiac morphogenesis and myogenesis by transcription factor MEF2C
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Requirement of the transcription factor GATA4 for heart tube formation and ventral morphogenesis
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MEF2B is a potent transactivator expressed in early myogenic lineages
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The transcription factor GATA-3 is necessary and sufficient for Th2 cytokine gene expression in CD4 T cells
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Ca(2+)-dependent gene expression mediated by MEF2 transcription factors.
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p300 protein as a coactivator of GATA-5 in the transcription of cardiac-restricted atrial natriuretic factor gene
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IGF-1 induces skeletal myocyte hypertrophy through calcineurin in association with GATA-2 and NF-ATc1.
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27 September 2017
GATA transcription factors and cardiac development
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FOG-2, a heart- and brain-enriched cofactor for GATA transcription factors
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Transcription factor GATA-4 is expressed in a sexually dimorphic pattern during mouse gonadal development and is a potent activator of the Müllerian inhibiting substance promoter.
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DNA binding of the glucocorticoid receptor is not essential for survival
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27 September 2017
GATA-4 and Nkx-2.5 coactivate Nkx-2 DNA binding targets: role for regulating early cardiac gene expression
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CREB-binding protein cooperates with transcription factor GATA-1 and is required for erythroid differentiation
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27 September 2017
Myocyte-specific enhancer factor 2 and thyroid hormone receptor associate and synergistically activate the alpha-cardiac myosin heavy-chain gene
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Activation of the transcription factor MEF2C by the MAP kinase p38 in inflammation
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27 September 2017
The atrial natriuretic factor promoter is a downstream target for Nkx-2.5 in the myocardium
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27 September 2017
Myocyte-specific enhancer-binding factor (MEF-2) regulates alpha-cardiac myosin heavy chain gene expression in vitro and in vivo.
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27 September 2017
Developmental stage-specific regulation of atrial natriuretic factor gene transcription in cardiac cells
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27 September 2017
A hormone-encoding gene identifies a pathway for cardiac but not skeletal muscle gene transcription
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27 September 2017
Regulation of Gax homeobox gene transcription by a combination of positive factors including myocyte-specific enhancer factor 2
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27 September 2017
Inhibition of transcription factor GATA-4 expression blocks in vitro cardiac muscle differentiation
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27 September 2017
A series of mutations in the D-MEF2 transcription factor reveal multiple functions in larval and adult myogenesis in Drosophila.
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27 September 2017
A single MEF2 site governs desmin transcription in both heart and skeletal muscle during mouse embryogenesis
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27 September 2017
p21 Ras as a governor of global gene expression
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27 September 2017
Activation of the myogenic lineage by MEF2A, a factor that induces and cooperates with MyoD.
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27 September 2017
Regulation of gene expression in the endocrine heart
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30 May 2018
Distinct behavior of cardiac myosin heavy chain gene constructs in vivo. Discordance with in vitro results.
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30 May 2018
The RSRF/MEF2 protein SL1 regulates cardiac muscle-specific transcription of a myosin light-chain gene in Xenopus embryos.
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A conserved 28-base-pair element (HF-1) in the rat cardiac myosin light-chain-2 gene confers cardiac-specific and alpha-adrenergic-inducible expression in cultured neonatal rat myocardial cells
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30 May 2018
The gene for transcription factor GATA-6 resides on mouse chromosome 18 and is expressed in myocardium and vascular smooth muscle.
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Requirement of MADS domain transcription factor D-MEF2 for muscle formation in Drosophila.
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28 November 2018
Drosophila MEF2, a transcription factor that is essential for myogenesis.
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Characterization of a promoter element required for transcription in myocardial cells.
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Cardiac myogenesis: overexpression of XCsx2 or XMEF2A in whole Xenopus embryos induces the precocious expression of XMHCα gene.
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12 December 2020
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inferred from PubMed ID database lookup
Identifiers
DOI
10.1093/EMBOJ/19.9.2046
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2963575
OpenCitations bibliographic resource ID
2963575
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2963575
PMCID
305697
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2963575
PubMed ID
10790371
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2963575
ResearchGate publication ID
12527739
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