Hypoxia increases persulfide and polysulfide formation by AMP kinase dependent cystathionine gamma lyase phosphorylation

缺氧通过 AMP 激酶依赖的胱硫醚γ 裂解酶磷酸化增加过硫化物和多硫化物的形成

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作者:Shafiul Alam, Sibile Pardue, Xinggui Shen, John D Glawe, Takashi Yagi, Mohammad Alfrad Nobel Bhuiyan, Rakesh P Patel, Paari S Dominic, Chiranjiv S Virk, Md Shenuarin Bhuiyan, A Wayne Orr, Chad Petit, Gopi K Kolluru, Christopher G Kevil

Abstract

Hydropersulfide and hydropolysulfide metabolites are increasingly important reactive sulfur species (RSS) regulating numerous cellular redox dependent functions. Intracellular production of these species is known to occur through RSS interactions or through translational mechanisms involving cysteinyl t-RNA synthetases. However, regulation of these species under cell stress conditions, such as hypoxia, that are known to modulate RSS remain poorly understood. Here we define an important mechanism of increased persulfide and polysulfide production involving cystathionine gamma lyase (CSE) phosphorylation at serine 346 and threonine 355 in a substrate specific manner, under acute hypoxic conditions. Hypoxic phosphorylation of CSE occurs in an AMP kinase dependent manner increasing enzyme activity involving unique inter- and intramolecular interactions within the tetramer. Importantly, both cellular hypoxia and tissue ischemia result in AMP Kinase dependent CSE phosphorylation that regulates blood flow in ischemic tissues. Our findings reveal hypoxia molecular signaling pathways regulating CSE dependent persulfide and polysulfide production impacting tissue and cellular response to stress.

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