Qvit Nir, Joshi Amit U, Cunningham Anna D, Ferreira Julio C B, Mochly-Rosen Daria
From the Department of Chemical and Systems Biology, Stanford University School of Medicine, Stanford, California 94305-5174 and
From the Department of Chemical and Systems Biology, Stanford University School of Medicine, Stanford, California 94305-5174 and.
J Biol Chem. 2016 Jun 24;291(26):13608-21. doi: 10.1074/jbc.M115.711630. Epub 2016 Apr 27.
Glyceraldehyde-3-phosphate dehydrogenase (GAPDH), an important glycolytic enzyme, has a non-catalytic (thus a non-canonical) role in inducing mitochondrial elimination under oxidative stress. We recently demonstrated that phosphorylation of GAPDH by δ protein kinase C (δPKC) inhibits this GAPDH-dependent mitochondrial elimination. δPKC phosphorylation of GAPDH correlates with increased cell injury following oxidative stress, suggesting that inhibiting GAPDH phosphorylation should decrease cell injury. Using rational design, we identified pseudo-GAPDH (ψGAPDH) peptide, an inhibitor of δPKC-mediated GAPDH phosphorylation that does not inhibit the phosphorylation of other δPKC substrates. Unexpectedly, ψGAPDH decreased mitochondrial elimination and increased cardiac damage in an animal model of heart attack. Either treatment with ψGAPDH or direct phosphorylation of GAPDH by δPKC decreased GAPDH tetramerization, which corresponded to reduced GAPDH glycolytic activity in vitro and ex vivo Taken together, our study identified the potential mechanism by which oxidative stress inhibits the protective GAPDH-mediated elimination of damaged mitochondria. Our study also identified a pharmacological tool, ψGAPDH peptide, with interesting properties. ψGAPDH peptide is an inhibitor of the interaction between δPKC and GAPDH and of the resulting phosphorylation of GAPDH by δPKC. ψGAPDH peptide is also an inhibitor of GAPDH oligomerization and thus an inhibitor of GAPDH glycolytic activity. Finally, we found that ψGAPDH peptide is an inhibitor of the elimination of damaged mitochondria. We discuss how this unique property of increasing cell damage following oxidative stress suggests a potential use for ψGAPDH peptide-based therapy.
3-磷酸甘油醛脱氢酶(GAPDH)是一种重要的糖酵解酶,在氧化应激下诱导线粒体清除过程中发挥非催化(即非经典)作用。我们最近证明,δ蛋白激酶C(δPKC)对GAPDH的磷酸化作用会抑制这种依赖GAPDH的线粒体清除。GAPDH的δPKC磷酸化与氧化应激后细胞损伤增加相关,这表明抑制GAPDH磷酸化应可减轻细胞损伤。通过合理设计,我们鉴定出了假GAPDH(ψGAPDH)肽,它是δPKC介导的GAPDH磷酸化的抑制剂,不会抑制其他δPKC底物的磷酸化。出乎意料的是,在心脏病发作的动物模型中,ψGAPDH减少了线粒体清除并增加了心脏损伤。用ψGAPDH处理或通过δPKC直接使GAPDH磷酸化,均可降低GAPDH的四聚化,这对应于体外和体内GAPDH糖酵解活性的降低。综上所述,我们的研究确定了氧化应激抑制具有保护作用的GAPDH介导的受损线粒体清除的潜在机制。我们的研究还鉴定出了一种具有有趣特性的药理学工具——ψGAPDH肽。ψGAPDH肽是δPKC与GAPDH之间相互作用以及δPKC对GAPDH磷酸化作用的抑制剂。ψGAPDH肽也是GAPDH寡聚化的抑制剂,因此是GAPDH糖酵解活性的抑制剂。最后,我们发现ψGAPDH肽是受损线粒体清除的抑制剂。我们讨论了这种在氧化应激后增加细胞损伤的独特特性如何提示基于ψGAPDH肽的疗法的潜在用途。