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一氧化碳通过抑制细胞色素c氧化酶并产生活性氧来发出信号。

Carbon monoxide signals via inhibition of cytochrome c oxidase and generation of mitochondrial reactive oxygen species.

作者信息

Zuckerbraun Brian S, Chin Beek Yoke, Bilban Martin, d'Avila Joana de Costa, Rao Jayashree, Billiar Timothy R, Otterbein Leo E

机构信息

Department of Surgery, University of Pittsburgh School of Medicine, NW653 MUH, 3459 Fifth Ave., Pittsburgh, PA 15213, USA.

出版信息

FASEB J. 2007 Apr;21(4):1099-106. doi: 10.1096/fj.06-6644com. Epub 2007 Jan 30.

DOI:10.1096/fj.06-6644com
PMID:17264172
Abstract

Carbon monoxide (CO), which is produced endogenously in the breakdown of heme, has been recognized as an important physiological second messenger similar to NO. Additionally, pharmacological delivery of CO is protective in numerous models of injury, including ischemia/reperfusion, transplantation, hemorrhagic shock, and endotoxemia. However, the mechanism of action of CO is only partially elucidated focused primarily on how it modulates the cellular response to stress. The purpose of these investigations is to test the hypothesis that CO acts via inhibition of cytochrome c oxidase leading to the generation of low levels of reactive oxygen species (ROS) that in turn mediate subsequent adaptive signaling. We show here that CO increases ROS generation in RAW 264.7 cells, which is inhibited by antimycin A and is absent in respiration-deficient rho0 cells. CO inhibits cytochrome c oxidase, while maintaining cellular ATP levels and increasing mitochondrial membrane potential. The addition of antioxidants or inhibition of complex III of the electron transport chain by antimycin A attenuates the inhibitory effects of CO on lipopolysaccharide (LPS)-induced TNF-alpha and blocked CO-induced p38 MAPK phosphorylation, which we previously have shown to be important in the anti-inflammatory effects of CO.

摘要

一氧化碳(CO)是血红素分解的内源性产物,已被公认为是一种类似于一氧化氮(NO)的重要生理第二信使。此外,在包括缺血/再灌注、移植、失血性休克和内毒素血症在内的多种损伤模型中,通过药理学方式输送CO具有保护作用。然而,CO的作用机制仅得到部分阐明,主要集中在它如何调节细胞对应激的反应上。这些研究的目的是检验这样一个假设:CO通过抑制细胞色素c氧化酶起作用,导致产生低水平的活性氧(ROS),进而介导随后的适应性信号传导。我们在此表明,CO可增加RAW 264.7细胞中的ROS生成,这一过程被抗霉素A抑制,且在呼吸缺陷型rho0细胞中不存在。CO抑制细胞色素c氧化酶,同时维持细胞ATP水平并增加线粒体膜电位。添加抗氧化剂或用抗霉素A抑制电子传递链的复合物III可减弱CO对脂多糖(LPS)诱导的肿瘤坏死因子-α(TNF-α)的抑制作用,并阻断CO诱导的p38丝裂原活化蛋白激酶(p38 MAPK)磷酸化,我们之前已表明这在CO的抗炎作用中很重要。

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