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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Acute ethanol induces apoptosis by stimulating TRPC6 via elevation of superoxide in oxygenated podocytes
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Acute ethanol induces apoptosis by stimulating TRPC6 via elevation of superoxide in oxygenated podocytes

机译:急性乙醇通过刺激氧化足细胞中的超氧化物来刺激TRPC6诱导凋亡

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摘要

Our recent studies indicate that hydrogen peroxide (H2O2) only at high concentrations can cause oxidative stress in renal epithelial cells and induce apoptosis of podocytes. Consistently, the present study shows that H2O2, even at 1 mM, failed to induce intracellular oxidative stress and apoptosis of the podocytes due to efficient activity of catalase, an enzyme which degrades H2O2 to produce water and oxygen (O-2). However, H2O2 acted as a source of O-2 to allow acute ethanol to induce superoxide production and cause apoptosis of the podocytes. In contrast, acute ethanol alone did not elevate intracellular superoxide, even though it stimulates expression and translocation of p47phox to the plasma membrane. Inhibition of catalase abolished not only O-2 production from H2O2 degradation, but also NOX2-dependent superoxide production in the podocytes challenged by both H2O2 and acute ethanol. In parallel, acute ethanol in the presence of H2O2, but neither ethanol nor H2O2 alone, stimulated transient receptor potential canonical 6 (TRPC6) channels and caused TRPC6-dependent elevation of intracellular Ca2+. These data suggest that exogenous H2O2 does not induce oxidative stress due to rapid degradation to produce O-2 in the podocytes, but the oxygenated podocytes become sensitive to acute ethanol challenge and undergo apoptosis via a TRPC6-dependent elevation of intracellular Ca2+. Since cultured podocytes are considered in hypoxic conditions, H2O2 may be used as a source of O-2 to establish an ischemia-reperfusion model in some type of cultured cells in which H2O2 does not directly induce intracellular oxidative stress. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们最近的研究表明,只有高浓度的过氧化氢(H2O2)才能在肾上皮细胞中引起氧化应激并诱导足细胞的凋亡。一致地,本研究表明,即使过氧化氢,过氧化氢酶也能有效地激活过氧化氢酶,该酶降解过氧化氢以产生水和氧气(O-2),即使在1 mM下,过氧化氢也无法诱导足细胞的细胞内氧化应激和细胞凋亡。但是,H2O2充当O-2的来源,允许急性乙醇诱导超氧化物的产生并引起足细胞的凋亡。相反,单独使用急性乙醇并不能提高细胞内超氧化物,即使它刺激p47phox的表达和向质膜的转运。过氧化氢酶的抑制不仅消除了H2O2降解产生的O-2,而且消除了H2O2和急性乙醇攻击的足细胞中NOX2依赖性超氧化物的产生。同时,存在H2O2的急性乙醇,但既没有乙醇也没有H2O2,会刺激瞬时受体电位规范6(TRPC6)通道,并引起细胞内Ca2 +依赖TRPC6的升高。这些数据表明,外源的H2O2不会由于足细胞的快速降解而产生氧化应激,从而在足细胞中产生O-2,但是充氧的足细胞对急性乙醇攻击变得敏感,并通过依赖TRPC6的细胞内Ca2 +升高而凋亡。由于培养的足细胞被认为处于低氧条件下,因此H2O2可以用作O-2的来源,以在其中H2O2不会直接诱导细胞内氧化应激的某些类型的培养细胞中建立缺血再灌注模型。 (C)2015 Elsevier B.V.保留所有权利。

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