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Knock-in reconstitution studies reveal an unexpected role of Cys-65 in regulating APE1/Ref-1 subcellular trafficking and function

机译:敲入重建研究揭示了Cys-65在调节APE1 / Ref-1亚细胞运输和功能中的意外作用

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摘要

Apurinic/apyrimidinic endonuclease 1/redox factor-1 (APE1) protects cells from oxidative stress via the base excision repair pathway and as a redox transcriptional coactivator. It is required for tumor progression/metastasis, and its up-regulation is associated with cancer resistance. Loss of APE1 expression causes cell growth arrest, mitochondrial impairment, apoptosis, and alterations of the intracellular redox state and cytoskeletal structure. A detailed knowledge of the molecular mechanisms regulating its different activities is required to understand the APE1 function associated with cancer development and for targeting this protein in cancer therapy. To dissect these activities, we performed reconstitution experiments by using wild-type and various APE1 mutants. Our results suggest that the redox function is responsible for cell proliferation through the involvement of Cys-65 in mediating APE1 localization within mitochondria. C65S behaves as a loss-of-function mutation by affecting the in vivo folding of the protein and by causing a reduced accumulation in the intermembrane space of mitochondria, where the import protein Mia40 specifically interacts with APE1. Treatment of cells with (E)-3-(2-[5,6-dimethoxy-3-methyl-1,4-benzoquinonyl])-2-nonyl propenoic acid, a specific inhibitor of APE1 redox function through increased Cys-65 oxidation, confirm that Cys-65 controls APE1 subcellular trafficking and provides the basis for a new role for this residue.
机译:apurinic / apyrimidinic内切核酸酶1 /氧化还原因子1(APE1)通过碱基切除修复途径和氧化还原转录共激活因子保护细胞免受氧化应激。它是肿瘤进展/转移所必需的,其上调与癌症抵抗力有关。 APE1表达的丧失会导致细胞生长停滞,线粒体损伤,细胞凋亡以及细胞内氧化还原状态和细胞骨架结构的改变。需要了解调节其不同活性的分子机制的详细知识,以了解与癌症发展相关的APE1功能以及在癌症治疗中靶向该蛋白的作用。为了剖析这些活动,我们通过使用野生型和各种APE1突变体进行了重组实验。我们的结果表明,氧化还原功能是通过参与Cys-65介导线粒体内APE1定位来引起细胞增殖的。 C65S通过影响蛋白质的体内折叠并通过减少线粒体的膜间空间中的积累而在功能上丧失其功能,其中进口蛋白Mia40与APE1特异性相互作用。用(E)-3-(2- [5,6-二甲氧基-3-甲基-1,4-苯并醌基])-2-壬基丙酸处理细胞,APE1氧化还原功能的特异性抑制剂通过增加Cys-65氧化,确认Cys-65控制APE1亚细胞运输,并为该残基的新作用提供基础。

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