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小鼠和人类线粒体类核——与功能相关的详细结构

Mouse and human mitochondrial nucleoid--detailed structure in relation to function.

作者信息

Prachar Jarmil

机构信息

Laboratory of Electron Microscopy, Cancer Research Institute, Slovak Academy of Sciences, Vlárska 7, 833 91 Bratislava, Slovakia.

出版信息

Gen Physiol Biophys. 2010 Jun;29(2):160-74.

Abstract

The independent mitochondrial genetic information is organized in so-called mitochondrial nucleoids that, in vertebrates, typically contain 5-7 genetic units. The total number of nucleoids per cell is several hundred in cultured cells. Mitochondrial nucleoids, similarly to the whole mitochondrial network, have recently been successfully and extensively visualized using fluorescent and confocal microscopy. In the present work, we show high-resolution micrographs of mouse and human mitochondrial nucleoids obtained by transmission electron microscopy. Position in the mitochondria, size, general appearance and other properties of the human nucleoids appear the same as those of mouse nucleoids, and all observations are also in full agreement with the results obtained in different laboratories using different approaches. Most of nucleoids are located inside mitochondrial tubes. However, we show directly that certain part of the nucleoids close to inner membrane is bound to the complex of molecules that crosscut both, the inner and the outer mitochondrial membranes. Nucleoids in cells starving for serum are mostly more dense than those in dividing cells. We discuss the position, appearance and other properties of the nucleoids in relation to functional stage. Other electron-dense structures inside mitochondria that could be erroneously considered to be mitochondrial nucleoids are also described.

摘要

独立的线粒体遗传信息被组织在所谓的线粒体类核中,在脊椎动物中,这些类核通常包含5 - 7个遗传单位。在培养细胞中,每个细胞的类核总数有数百个。与整个线粒体网络类似,线粒体类核最近已通过荧光显微镜和共聚焦显微镜成功且广泛地实现了可视化。在本研究中,我们展示了通过透射电子显微镜获得的小鼠和人类线粒体类核的高分辨率显微照片。人类类核在线粒体中的位置、大小、总体外观及其他特性与小鼠类核相同,并且所有观察结果也与不同实验室使用不同方法所获得的结果完全一致。大多数类核位于线粒体管内部。然而,我们直接表明,靠近内膜的部分类核与横跨线粒体内膜和外膜的分子复合物相连。血清饥饿细胞中的类核大多比分裂细胞中的类核密度更高。我们讨论了类核的位置、外观及其他特性与功能阶段的关系。还描述了线粒体内其他可能被错误地认为是线粒体类核的电子致密结构。

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