The copper-sensing transcription factor Mac1, the histone deacetylase Hst1, and nicotinic acid regulate de novo NAD biosynthesis in budding yeast
第一作者:
Raj
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关键词
BiochemistryBiosynthesisCopperMetabolismTranscription factorsYeastBiochemical processChip experimentsCopper transportGene expression profilesGenetic systemsHistone deacetylasesMolecular basisNAD biosynthesisTranscriptioncopperfungal proteinHst1 proteinMac1 proteinnicotinamide adenine dinucleotidequinolinic acidunclassified drugHST1 proteinS cerevisiaeMAC1 proteinnicotinic acidnuclear proteinSaccharomyces cerevisiae proteinsirtuin 2transcription factorArticlebiosynthesisbudding yeastcontrolled studyfungal straingene expression profilinggene repressionnonhumanphenotypepriority journalprotein conformationprotein expressionprotein functionprotein stabilitySaccharomyces cerevisiaeanimalgeneticsmetabolismmouseAnimalsMiceNADNiacinNuclear Protei
发布时间
2020-03-21
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The Journal of biological chemistry
5562-5575页
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