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心力衰竭时骨骼肌线粒体中腺嘌呤核苷酸转位酶同工型的表达改变及ATP合酶活性降低。

Altered expression of the adenine nucleotide translocase isoforms and decreased ATP synthase activity in skeletal muscle mitochondria in heart failure.

作者信息

Rosca Mariana G, Okere Isidore A, Sharma Naveen, Stanley William C, Recchia Fabio A, Hoppel Charles L

机构信息

Department of Medicine, Case Western Reserve University, Cleveland, Ohio 44106-4981, USA.

出版信息

J Mol Cell Cardiol. 2009 Jun;46(6):927-35. doi: 10.1016/j.yjmcc.2009.02.009. Epub 2009 Feb 20.

Abstract

Exercise intolerance is a component of heart failure (HF) syndrome. We aimed to identify the defects in skeletal muscle mitochondria which may contribute to the development of peripheral myopathy. Subsarcolemmal (SSM) and interfibrillar (IFM) mitochondria were isolated from gastrocnemius muscle of control dogs (N=5) and dogs with pacing-induced HF (N=5). The measurement of integrated mitochondrial function (oxidative phosphorylation) and of individual activities of mitochondrial electron transport chain (ETC) complexes was complemented with the assessment of the amount and activity of the components of the phosphorylation apparatus. Both populations of skeletal muscle mitochondria isolated from HF have significantly decreased ADP-stimulated (state 3) respiratory rates with complex I, II and III substrates. The decrease in respiratory rates of skeletal muscle SSM are neither relieved upon collapsing the mitochondrial potential with an uncoupler nor increased in the presence of maximal ADP concentrations showing a defect in the ETC, which needs further investigation. In contrast, respiratory rates of skeletal muscle IFM from HF were relieved with the uncoupler and partially improved in the presence of maximal ADP concentrations. In these IFM, alterations in the phosphorylation apparatus were detected with a decreased amount of ANT isoform 2 and increased amount of isoform 1. The IFM dysfunction may be explained by this shift in ANT isoforms. In conclusion, pacing-induced HF causes a decrease in the oxidative phosphorylation of skeletal muscle mitochondria due to defects in the ETC and phosphorylation apparatus.

摘要

运动不耐受是心力衰竭(HF)综合征的一个组成部分。我们旨在确定骨骼肌线粒体中的缺陷,这些缺陷可能导致周围性肌病的发展。从对照犬(N = 5)和起搏诱导的HF犬(N = 5)的腓肠肌中分离出肌膜下(SSM)和肌原纤维间(IFM)线粒体。通过评估磷酸化装置各组分的数量和活性,补充了线粒体综合功能(氧化磷酸化)和线粒体电子传递链(ETC)复合物个体活性的测量。从HF犬分离出的两种骨骼肌线粒体群体,在使用复合物I、II和III底物时,ADP刺激(状态3)的呼吸速率均显著降低。骨骼肌SSM的呼吸速率降低,在用解偶联剂破坏线粒体电位时既未得到缓解,在存在最大ADP浓度时也未增加,表明ETC存在缺陷,这需要进一步研究。相比之下,HF犬骨骼肌IFM的呼吸速率在用解偶联剂处理后得到缓解,在存在最大ADP浓度时部分改善。在这些IFM中,检测到磷酸化装置的改变,ANT同工型2的量减少,同工型1的量增加。IFM功能障碍可能由ANT同工型的这种转变来解释。总之,起搏诱导的HF由于ETC和磷酸化装置的缺陷,导致骨骼肌线粒体氧化磷酸化降低。

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