ホーム > CHERASSE Yoan/ CHERASSE, Yoan
CHERASSE Yoan
CHERASSE, Yoan
国際統合睡眠医科学研究機構 International Institute for Integrative Sleep Medicine , Researcher
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81.
Identification of a novel amino acid response pathway triggering ATF2 phosphorylation in mammals.
Chaveroux C; Jousse C; Cherasse Y; Maurin AC (+4 著者) Fafournoux P
MOLECULAR AND CELLULAR BIOLOGY 29: 6515 (2009) Semantic Scholar
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82.
Amino acid limitation regulates the expression of genes involved in several specific biological processes through GCN2-dependent and GCN2-independent pathways.
Deval C; Chaveroux C; Maurin AC; Cherasse Y (+6 著者) Fafournoux P
FEBS JOURNAL 276: 707 (2009) Semantic Scholar
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83.
Identification of a novel amino acid response pathway triggering ATF2 phosphorylation in mammals
Chaveroux, C.; Jousse, C.; Cherasse, Y.; Maurin, A.-C. (+4 著者) Fafournoux, P.
Molecular and Cellular Biology 29: 6515 (2009) Semantic Scholar
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84.
Amino acids as regulators of gene expression in mammals: molecular mechanisms.
Bruhat A; Chérasse Y; Chaveroux C; Maurin AC (+1 著者) Fafournoux P
BIOFACTORS 35: 249 (2009) Semantic Scholar
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85.
Amino acids as regulators of gene expression in mammals: Molecular mechanisms
Bruhat, A.; Chérasse, Y.; Chaveroux, C.; Maurin, A.-C. (+1 著者) Fafournoux, P.
BioFactors 35: 249 (2009) Semantic Scholar
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86.
Amino acid limitation regulates the expression of genes involved in several specific biological processes through GCN2-dependent and GCN2-independent pathways
Deval, C.; Chaveroux, C.; Maurin, A.-C.; Cherasse, Y. (+6 著者) Fafournoux, P.
FEBS Journal 276: 707 (2009) Semantic Scholar
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87.
Role of the repressor JDP2 in the amino acid-regulated transcription of CHOP.
Chérasse Y; Chaveroux C; Jousse C; Maurin AC (+3 著者) Bruhat A
FEBS LETTERS 582: 1537 (2008) Semantic Scholar
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88.
Amino-acid limitation induces the GCN2 signaling pathway in myoblasts but not in myotubes.
Deval C; Talvas J; Chaveroux C; Maurin AC (+6 著者) Fafournoux P
BIOCHIMIE 90: 1716 (2008) Semantic Scholar
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89.
Amino-acid limitation induces the GCN2 signaling pathway in myoblasts but not in myotubes
Deval, C.; Talvas, J.; Chaveroux, C.; Maurin, A.-C. (+6 著者) Fafournoux, P.
Biochimie 90: 1716 (2008) Semantic Scholar
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90.
Role of the repressor JDP2 in the amino acid-regulated transcription of CHOP
Chérasse, Y.; Chaveroux, C.; Jousse, C.; Maurin, A.-C. (+3 著者) Bruhat, A.
FEBS Letters 582: 1537 (2008) Semantic Scholar
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91.
TRB3 inhibits the transcriptional activation of stress-regulated genes by a negative feedback on the ATF4 pathway.
Jousse C; Deval C; Maurin AC; Parry L (+5 著者) Fafournoux P
JOURNAL OF BIOLOGICAL CHEMISTRY 282: 15851 (2007) Semantic Scholar
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92.
TRB3 Inhibits the Transcriptional Activation of Stress-regulated Genes by a Negative Feedback on the ATF4 Pathway
Céline Jousse; Christiane Deval; Anne-Catherine Maurin; Laurent Parry (+5 著者) Pierre Fafournoux
Journal of Biological Chemistry 282: 15851 (2007) Semantic Scholar
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93.
The p300/CBP-associated factor (PCAF) is a cofactor of ATF4 for amino acid-regulated transcription of CHOP.
Chérasse Y; Maurin AC; Chaveroux C; Jousse C (+5 著者) Bruhat A
NUCLEIC ACIDS RESEARCH 35: 5954 (2007) Semantic Scholar
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94.
ATF2 is required for amino acid-regulated transcription by orchestrating specific histone acetylation.
Bruhat A; Chérasse Y; Maurin AC; Breitwieser W (+4 著者) Fafournoux P
NUCLEIC ACIDS RESEARCH 35: 1312 (2007) Semantic Scholar
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95.
The p300/CBP-associated factor (PCAF) is a cofactor of ATF4 for amino acid-regulated transcription of CHOP
Chérasse, Y.; Maurin, A.-C.; Chaveroux, C.; Jousse, C. (+5 著者) Bruhat, A.
Nucleic Acids Research 35: 5954 (2007) Semantic Scholar
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96.
ATF2 is required for amino acid-regulated transcription by orchestrating specific histone acetylation
Bruhat, A.; Chrérasse, Y.; Maurin, A.-C.; Breitwieser, W. (+4 著者) Fafournoux, P.
Nucleic Acids Research 35: 1312 (2007) Semantic Scholar
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97.
Cellular Adaptation to Amino Acid Availability: Mechanisms Involved in the Regulation of Gene Expression
Bruhat, A.; Maurin, A.-C.; Jousse, C.; Cherasse, Y.Fafournoux, P.
Nutritional Genomics: Impact on Health and Disease 92 (2006)
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98.
[GCN2 regulates feeding behavior to maintain amino acid homeostasis in omnivores].
Maurin AC; Jousse C; Balage M; Averous J (+7 著者) Fafournoux P
M S-MEDECINE SCIENCES 21: 799 (2005) Semantic Scholar
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99.
The GCN2 kinase biases feeding behavior to maintain amino acid homeostasis in omnivores.
Maurin AC; Jousse C; Averous J; Parry L (+6 著者) Fafournoux P
CELL METABOLISM 1: 273 (2005) Semantic Scholar
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100.
GCN2 regulates feeding behavior to maintain amino acid homeostasis in omnivores | La kinase GCN2 régule le comportement alimentaire des omnivores afin de maintenir l'homéostasie des acides aminés
Maurin A.-C; Jousse C; Balage M; Averous J (+7 著者) Fafournoux P
Medecine/Sciences 21: 799 (2005)
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