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耦合膜作为能量传输电缆。I. 成纤维细胞中的丝状线粒体和心肌细胞中的线粒体簇。

Coupling membranes as energy-transmitting cables. I. Filamentous mitochondria in fibroblasts and mitochondrial clusters in cardiomyocytes.

作者信息

Amchenkova A A, Bakeeva L E, Chentsov Y S, Skulachev V P, Zorov D B

机构信息

A. N. Belozersky Laboratory of Molecular Biology and Bioorganic Chemistry, Moscow State University Union of Soviet Socialist Republics.

出版信息

J Cell Biol. 1988 Aug;107(2):481-95. doi: 10.1083/jcb.107.2.481.

Abstract

An hypothesis considering mitochondria as intracellular power-transmitting protonic cables was tested in human fibroblasts where mitochondria are thin and long and in rat cardiomyocytes where they show cluster organization. Mitochondria in the cell were specifically stained with fluorescent-penetrating cation ethylrhodamine, which electrophoretically accumulates in the mitochondrial matrix. A 40-micron-long mitochondrial filament of fibroblast was illuminated by a very narrow (less than or equal to 0.5 micron) laser beam to induce local damage of the mitochondrial membranes. Such a treatment was found to induce quenching of the ethylrhodamine fluorescence in the entire filament. According to the electron microscope examination, the laser-treated filament retained its continuity after the laser illumination. Other mitochondrial filaments (some of which were localized at a distance less than 10 micron from the laser-treated one) remained fluorescent. In a cell where mitochondrial filaments seemed to be united in a network, laser illumination of one filament resulted in fluorescence quenching in the whole network, whereas fluorescence of small mitochondria not connected with the network was unaffected. The illumination of cardiomyocyte was found to result in the fluorescence quenching not only in a laser-illuminated mitochondrion but also in a large cluster of organelles composed of many mitochondria. Electron microscopy showed that all the mitochondria in the cluster change from the orthodox to the condensed state. It was also found that mitochondria in the cluster are connected to one another with specific junctions. If a mitochondrion did not form junctions with a quenched cluster, its fluorescence was not decreased even when this mitochondrion was localized close to an illuminated one. The size of the mitochondrial cluster may be as long as 50 micron. The cluster is formed by branched chains of contacting mitochondria, which may be defined as Streptio mitochondriale. In the cardiomyocyte there are several mitochondrial clusters or, alternatively, the quenched cluster is a result of decomposition of a supercluster uniting all the mitochondria of the cell. Cluster organization of mitochondria could also be revealed when a single mitochondrion was punctured in situ with a microcapillary. The obtained data are in agreement with the idea that mitochondrial junctions are H+ permeable so that, within the cluster, delta psi may be transmitted from one mitochondrion to another. The above results are consistent with the assumption that mitochondrial filaments or networks represent a united electrical system.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

一种将线粒体视为细胞内质子传输电缆的假说,在人成纤维细胞(其中线粒体细长)和大鼠心肌细胞(其中线粒体呈簇状组织)中进行了验证。细胞中的线粒体用可穿透荧光的阳离子乙基罗丹明进行特异性染色,该染料通过电泳作用积聚在线粒体基质中。用非常窄(小于或等于0.5微米)的激光束照射成纤维细胞中一条40微米长的线粒体细丝,以诱导线粒体膜的局部损伤。结果发现,这种处理会导致整条细丝中的乙基罗丹明荧光猝灭。根据电子显微镜检查,激光处理后的细丝在激光照射后仍保持连续性。其他线粒体细丝(其中一些距离激光处理的细丝不到10微米)仍保持荧光。在一个线粒体细丝似乎连接成网络的细胞中,对一条细丝进行激光照射会导致整个网络中的荧光猝灭,而与该网络未连接的小线粒体的荧光则不受影响。对心肌细胞进行照射发现,不仅激光照射的线粒体中的荧光会猝灭,而且由许多线粒体组成的一大簇细胞器中的荧光也会猝灭。电子显微镜显示,簇中的所有线粒体都从正常状态转变为浓缩状态。还发现簇中的线粒体通过特定的连接相互连接。如果一个线粒体没有与猝灭的簇形成连接,即使它靠近被照射的线粒体,其荧光也不会降低。线粒体簇的大小可能长达50微米。该簇由相互接触的线粒体的分支链形成,可定义为链状线粒体。在心肌细胞中有几个线粒体簇,或者说,猝灭的簇是由将细胞中所有线粒体联合在一起的超级簇分解形成的。当用微毛细管对单个线粒体进行原位穿刺时,也能揭示线粒体的簇状组织。所获得的数据与线粒体连接对H + 具有通透性的观点一致,这样在簇内,膜电位差(Δψ)可以从一个线粒体传递到另一个线粒体。上述结果与线粒体细丝或网络代表一个统一的电系统这一假设相符。(摘要截断于400字)

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