Nicotinamide Mononucleotide Adenylyltransferase Is a Stress Response Protein Regulated by the Heat Shock Factor/Hypoxia-inducible Factor 1α Pathway

被引:29
作者
Ali, Yousuf O. [1 ]
McCormack, Ryan [1 ]
Darr, Andrew [2 ,3 ]
Zhai, R. Grace [1 ,3 ]
机构
[1] Univ Miami, Miller Sch Med, Dept Mol & Cellular Pharmacol, Miami, FL 33136 USA
[2] Univ Miami, Miller Sch Med, Miami Project Cure Paralysis, Miami, FL 33136 USA
[3] Univ Miami, Miller Sch Med, Grad Program Neurosci, Miami, FL 33136 USA
关键词
GENE-EXPRESSION; TRANSCRIPTION FACTOR; LIFE-SPAN; OXIDATIVE STRESS; IN-VIVO; DROSOPHILA-MELANOGASTER; CHAPERONE SUPPRESSION; HYPOXIA REQUIRES; HSP70; GENE; NEURODEGENERATION;
D O I
10.1074/jbc.M111.219295
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Stress responses are cellular processes essential for maintenance of cellular integrity and defense against environmental and intracellular insults. Neurodegenerative conditions are linked with inadequate stress responses. Several stress-responsive genes encoding neuroprotective proteins have been identified, and among them, the heat shock proteins comprise an important group of molecular chaperones that have neuroprotective functions. However, evidence for other critical stress-responsive genes is lacking. Recent studies on the NAD synthesis enzyme nicotinamide mononucleotide adenylyltransferase (NMNAT) have uncovered a novel neuronal maintenance and protective function against activity-, injury-, or misfolded protein-induced degeneration in Drosophila and in mammalian neurons. Here, we show that NMNAT is also a novel stress response protein required for thermotolerance and mitigation of oxidative stress-induced shortened lifespan. NMNATis transcriptionally regulated during various stress conditions including heat shock and hypoxia through heat shock factor (HSF) and hypoxia-inducible factor 1 alpha in vivo. HSF binds to nmnat promoter and induces NMNAT expression under heat shock. In contrast, under hypoxia, HIF1 alpha up-regulates NMNAT indirectly through the induction of HSF. Our studies provide an in vivo mechanism for transcriptional regulation of NMNAT under stress and establish an essential role for this neuroprotective factor in cellular stress response.
引用
收藏
页码:19089 / 19099
页数:11
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