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在假手术和高血压大鼠心脏中,复合物 I 和复合物 II 与 nNOS 之间的功能相互作用调节心脏线粒体活性。

Functional interactions between complex I and complex II with nNOS in regulating cardiac mitochondrial activity in sham and hypertensive rat hearts.

机构信息

Yanbian University Hospital, Yanji, 133000, Jilin Province, China.

Department of Physiology & Biomedical Sciences, Ischemic/Hypoxic Disease Institutes, Seoul National University, College of Medicine, Jongno-Gu, Seoul, Republic of Korea.

出版信息

Pflugers Arch. 2020 Dec;472(12):1743-1755. doi: 10.1007/s00424-020-02458-2. Epub 2020 Sep 17.

Abstract

Nitric oxide (NO) affects mitochondrial activity through its interactions with complexes. Here, we investigated regulations of complex I (C-I) and complex II (C-II) by neuronal NO synthase (nNOS) in the presence of fatty acid supplementation and the impact on left ventricular (LV) mitochondrial activity from sham and angiotensin II (Ang-II)-induced hypertensive (HTN) rats. Our results showed that nNOS protein was expressed in sham and HTN LV mitochondrial enriched fraction. In sham, oxygen consumption rate (OCR) and intracellular ATP were increased by palmitic acid (PA) or palmitoyl-carnitine (PC). nNOS inhibitor, S-methyl-l-thiocitrulline (SMTC), did not affect OCR or cellular ATP increment by PA or PC. However, SMTC increased OCR with PA + malonate (a C-II inhibitor), but not with PA + rotenone (a C-I inhibitor), indicating that nNOS attenuates C-I with fatty acid supplementation. Indeed, SMTC increased C-I activity but not that of C-II. Conversely, nNOS-derived NO was increased by rotenone + PA in LV myocytes. In HTN, PC increased the activity of C-I but reduced that of C-II, consequently OCR was reduced. SMTC increased both C-I and C-II activities with PC, resulted in OCR enhancement in the mitochondria. Notably, SMTC increased OCR only with rotenone, suggesting that nNOS modulates C-II-mediated OCR in HTN. nNOS-derived NO was partially reduced by malonate + PA. Taken together, nNOS attenuates C-I-mediated mitochondrial OCR in the presence of fatty acid in sham and C-I modulates nNOS activity. In HTN, nNOS attenuates C-I and C-II activities whereas interactions between nNOS and C-II maintain mitochondrial activity.

摘要

一氧化氮(NO)通过与复合物的相互作用影响线粒体活性。在这里,我们研究了在脂肪酸补充存在的情况下神经元型一氧化氮合酶(nNOS)对复合物 I(C-I)和复合物 II(C-II)的调节作用,以及对假手术和血管紧张素 II(Ang-II)诱导的高血压(HTN)大鼠左心室(LV)线粒体活性的影响。我们的结果表明,nNOS 蛋白在假手术和 HTN LV 线粒体富集部分表达。在假手术组,棕榈酸(PA)或棕榈酰肉碱(PC)增加了耗氧量(OCR)和细胞内 ATP。nNOS 抑制剂 S-甲基-L-硫代瓜氨酸(SMTC)不影响 PA 或 PC 引起的 OCR 或细胞内 ATP 增加。然而,SMTC 增加了 OCR 与 PA+丙二酸(C-II 抑制剂),但不与 PA+鱼藤酮(C-I 抑制剂),表明 nNOS 减弱了脂肪酸补充的 C-I。事实上,SMTC 增加了 C-I 的活性,但没有增加 C-II 的活性。相反,在 LV 心肌细胞中,鱼藤酮+PA 增加了 nNOS 衍生的 NO。在 HTN 中,PC 增加了 C-I 的活性,但降低了 C-II 的活性,因此 OCR 降低。SMTC 增加了 PC 时 C-I 和 C-II 的活性,导致线粒体 OCR 增强。值得注意的是,SMTC 仅在用鱼藤酮时增加 OCR,表明 nNOS 调节 HTN 中 C-II 介导的 OCR。nNOS 衍生的 NO 部分被丙二酸+PA 减少。总之,在假手术中,nNOS 减弱了脂肪酸存在时 C-I 介导的线粒体 OCR,而 C-I 调节 nNOS 活性。在 HTN 中,nNOS 减弱了 C-I 和 C-II 的活性,而 nNOS 和 C-II 之间的相互作用维持了线粒体的活性。

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