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Tl(+) 诱导大鼠心肌线粒体内膜的阳离子和过渡孔通透性。

Tl(+) induces both cationic and transition pore permeability in the inner membrane of rat heart mitochondria.

机构信息

Sechenov Institute of Evolutionary Physiology and Biochemistry, the Russian Academy of Sciences, Thorez pr. 44, 194223, St. Petersburg, Russia,

出版信息

J Bioenerg Biomembr. 2013 Dec;45(6):531-9. doi: 10.1007/s10863-013-9526-8. Epub 2013 Sep 22.

Abstract

Effects of Tl(+) were studied in experiments with isolated rat heart mitochondria (RHM) injected into 400 mOsm medium containing TlNO3 and a nitrate salt (KNO3 or NH4NO3) or TlNO3 and sucrose. Tl(+) increased permeability of the inner membrane of the RHM to K(+) and H(+). This manifested as an increase of the non-energized RHM swelling, in the order of sucrose < K(+) < NH4 (+), respectively. After succinate administration, the swollen RHM contracted. The Tl(+)-induced opening of the mitochondrial permeability pore (MPTP) in Ca(2+)-loaded rat heart mitochondria increased both the swelling and the inner membrane potential dissipation, as well as decreased basal state and 2,4-dinitrophenol-stimulated respiration. These effects of Tl(+) were suppressed by the MPTP inhibitors (cyclosporine A, ADP, bongkrekic acid, and n-ethylmaleimide), activated in the presence of the MPTP inducer (carboxyatractyloside) or mitoKATP inhibitor (5-hydroxydecanoate), but were not altered in the presence of mitoKATP agonists (diazoxide or pinacidil). We suggest that the greater sensitivity of heart and striated muscles, versus liver, to thallium salts in vivo can result in more vigorous Tl(+) effects on muscle cell mitochondria.

摘要

研究了 Tl(+)对注射到含有 TlNO3 和硝酸盐盐(KNO3 或 NH4NO3)或 TlNO3 和蔗糖的 400 mOsm 介质中的分离大鼠心肌线粒体(RHM)的影响。Tl(+)增加了 RHM 内膜对 K(+)和 H(+)的通透性。这表现为非能量化的 RHM 肿胀程度依次为蔗糖< K(+)< NH4 (+)。琥珀酸给药后,肿胀的 RHM 收缩。在 Ca(2+)负载的大鼠心肌线粒体中,Tl(+)诱导的线粒体通透性孔(MPTP)开放增加了肿胀和内膜电位耗散,同时降低了基础状态和 2,4-二硝基苯酚刺激的呼吸。MPTP 抑制剂(环孢菌素 A、ADP、棒曲霉素和 N-乙基马来酰亚胺)抑制了这些 Tl(+)的作用,在 MPTP 诱导剂(羧基三甲川)或 mitoKATP 抑制剂(5-羟基癸酸)存在下激活,但在 mitoKATP 激动剂(地佐辛或匹那地尔)存在下没有改变。我们认为,体内心脏和横纹肌对铊盐的敏感性高于肝脏,这可能导致 Tl(+)对肌肉细胞线粒体的作用更加强烈。

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