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首页> 外文期刊>Science Advances >DUSP6 SUMOylation protects cells from oxidative damage via direct regulation of Drp1 dephosphorylation
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DUSP6 SUMOylation protects cells from oxidative damage via direct regulation of Drp1 dephosphorylation

机译:Dusp6 Sumoylation通过DRP1去磷酸化的直接调节保护细胞免受氧化损伤

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摘要

Imbalanced mitochondrial fission/fusion, a major cause of apoptotic cell death, often results from dysregulation of Drp1 phosphorylation of two serines, S616 and S637. Whereas kinases for Drp1-S616 phosphorylation are well-described, phosphatase(s) for its dephosphorylation remains unclear. Here, we show that dual-specificity phosphatase 6 (DUSP6) dephosphorylates Drp1-S616 independently of its known substrates ERK1/2. DUSP6 keeps Drp1-S616 phosphorylation levels low under normal conditions. The stability and catalytic function of DUSP6 are maintained through conjugation of small ubiquitin-like modifier-1 (SUMO1) and SUMO2/3 at lysine-234 (K234), which is disrupted during oxidation through transcriptional up-regulation of SUMO-deconjugating enzyme, SENP1, causing DUSP6 degradation by ubiquitin-proteasome. deSUMOylation underlies DUSP6 degradation, Drp1-S616 hyperphosphorylation, mitochondrial fragmentation, and apoptosis induced by Hsub2/subOsub2/sub in cultured cells or brain ischemia/reperfusion in mice. Overexpression of DUSP6, but not the SUMOylation-deficient DUSP6supK234R/sup mutant, protected cells from apoptosis. Thus, DUSP6 exerts a cytoprotective role by directly dephosphorylating Drp1-S616, which is disrupted by deSUMOylation under oxidation.
机译:不平衡的线粒体裂变/融合,凋亡细胞死亡的主要原因,通常由DRP1磷酸化的失调,S616和S637的DRP1磷酸化。然而,对于DRP1-S616磷酸化的激酶是良好描述的,其去磷酸化的磷酸酶仍不清楚。这里,我们表明双特异性磷酸酶6(DUSP6)可独立于其已知的基板ERK1 / 2去磷酸化DRP1-S616。 Dusp6在正常条件下保持DRP1-S616磷酸化水平低。 Dusp6的稳定性和催化功能通过在赖氨酸-334(K234)的小泛素样改性剂-1(SuMO1)和Sumo2 / 3中的共轭,通过转录的抑制酶的转录上调在氧化过程中被破坏, SENP1,泛素蛋白酶体导致DUSP6降解。 Desumoylation在培养细胞或脑缺血/再灌注中,DUSP6降解,DRP1-S616高磷酸化,线粒体分段和由H 2 / Sup> O 2-2 /亚>诱导的细胞凋亡。 DUSP6的过度表达,但不是Sublation缺陷的DUSP6 K234r 突变体,受细胞凋亡的保护细胞。因此,Dusp6通过直接去磷酸化DRP1-S616施加细胞保护作用,DRP1-S616通过氧化下的除去而被破坏。

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