首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >Succinate Ameliorates Energy Deficits and Prevents Dysfunction of Complex I in Injured Renal Proximal Tubular Cells
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Succinate Ameliorates Energy Deficits and Prevents Dysfunction of Complex I in Injured Renal Proximal Tubular Cells

机译:琥珀酸盐改善能量缺乏症并预防肾近端肾小管细胞复合物I的功能障碍

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摘要

We previously reported that mitochondrial function, intracellular ATP levels, and complex I activity are decreased in renal proximal tubular cells (RPTC) after oxidant (tert-butyl hydroperoxide; TBHP)-induced injury. This study examined the hypothesis that succinate supplementation decreases mitochondrial dysfunction, ameliorates energy deficits, and increases viability in TBHP-injured RPTC. Basal and uncoupled respirations in injured RPTC decreased 33 and 35%, respectively, but remained unchanged in injured RPTC supplemented with 10 mM succinate (electron donor to respiratory complex II). State 3 respiration supported by electron donors to complex I decreased 40% in injured RPTC but improved significantly by succinate supplements. The activity of mitochondrial complex I in TBHP-injured RPTC decreased 48%, whereas complex II activity remained unchanged. Succinate supplementation prevented decreases in complex I activity. ATP levels decreased 43% in injured RPTC but were maintained in injured cells supplemented with succinate. Lipid peroxidation increased 19-fold in injured RPTC but only 9-fold in injured cells supplemented with succinate. Exposure of primary cultures of RPTC to TBHP produced 24% cell injury and lysis but no apoptosis. In contrast, no cell lysis was found in RPTC supplemented with succinate. We conclude that mitochondrial dysfunction and energy deficits in oxidant-injured RPTC are ameliorated by succinate, and we propose that succinate supplementation may prove therapeutically valuable. Succinate 1) uses an alternate pathway of mitochondrial energy metabolism, 2) improves activity of complex I and oxidation of substrates through complex I, and 3) decreases oxidative stress and cell lysis in oxidant-injured RPTC.
机译:我们以前曾报道过,氧化剂(叔丁基氢过氧化物; TBHP)诱导的损伤后,肾近端小管细胞(RPTC)的线粒体功能,细胞内ATP水平和复合物I活性降低。这项研究检验了以下假设:补充琥珀酸盐可减少线粒体功能障碍,改善能量不足并增加TBHP损伤的RPTC的生存能力。受伤的RPTC的基础呼吸和非耦合呼吸分别下降了33%和35%,但在补充有10 mM琥珀酸盐(呼吸复合体II的电子供体)的受伤的RPTC中,呼吸保持不变。电子给体对复合物I的状态3呼吸在受伤的RPTC中降低了40%,但通过琥珀酸盐补充剂显着改善。 TBHP损伤的RPTC中线粒体复合物I的活性降低了48%,而复合物II的活性保持不变。补充琥珀酸盐可防止复合物I活性降低。在受损的RPTC中,ATP含量降低了43%,但在补充有琥珀酸盐的受损细胞中却保持了该水平。在受损的RPTC中,脂质过氧化作用增加了19倍,而在补充有琥珀酸盐的受损细胞中,脂质过氧化作用仅增加了9倍。将RPTC的原代培养物暴露于TBHP会产生24%的细胞损伤和裂解,但没有凋亡。相反,在补充有琥珀酸酯的RPTC中未发现细胞裂解。我们得出的结论是,琥珀酸酯可减轻氧化剂损伤的RPTC中的线粒体功能障碍和能量不足,并且我们建议补充琥珀酸酯可能具有治疗价值。琥珀酸酯1)使用线粒体能量代谢的替代途径,2)提高复合物I的活性并通过复合物I氧化底物,3)降低氧化应激和RPTC中的细胞裂解。

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