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线粒体膜电位:一种与细胞器遗传有关的特征?

Mitochondrial membrane potential: a trait involved in organelle inheritance?

作者信息

Milani Liliana

机构信息

Department of Biological, Geological and Environmental Sciences, University of Bologna, Bologna, Italy

出版信息

Biol Lett. 2015 Oct;11(10). doi: 10.1098/rsbl.2015.0732.

Abstract

Which mitochondria are inherited across generations? Are transmitted mitochondria functionally silenced to preserve the integrity of their genetic information, or rather are those mitochondria with the highest levels of function (as indicated by membrane potential Δψm) preferentially transmitted? Based on observations of the unusual system of doubly uniparental inheritance of mitochondria and of the common strictly maternal inheritance mode, I formulate a general hypothesis to explain which mitochondria reach the primordial germ cells (PGCs), and how this happens. Several studies indicate that mitochondrial movements are driven by microtubules and that mitochondria with high Δψm are preferentially transported. This can be applied also to the mitochondria that eventually populate embryonic PGCs, so I propose that Δψm may be a trait that allows for the preferential transmission of the most active (and healthy) mitochondria. The topics discussed here are fundamental in cell biology and genetics but remain controversial and a subject of heated debate; I propose an explanation for how a Δψm-dependent mechanism can cause the observed differences in mitochondrial transmission.

摘要

哪些线粒体是跨代遗传的?传递的线粒体在功能上会被沉默以保持其遗传信息的完整性吗?还是说那些功能水平最高的线粒体(由膜电位Δψm表示)会被优先传递?基于对线粒体双重单亲遗传这一特殊系统以及常见的严格母系遗传模式的观察,我提出一个一般性假设来解释哪些线粒体能够到达原始生殖细胞(PGC)以及这一过程是如何发生的。多项研究表明,线粒体的移动是由微管驱动的,并且具有高Δψm的线粒体更倾向于被运输。这一点也可以应用于最终在胚胎PGC中聚集的线粒体,所以我提出Δψm可能是一种特性,它使得最活跃(且健康)的线粒体能够被优先传递。这里讨论的主题在细胞生物学和遗传学中是基础性的,但仍存在争议且是激烈辩论的话题;我提出了一种解释,说明依赖于Δψm的机制如何能够导致在线粒体传递中观察到的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e0e/4650188/de8422f2c6df/rsbl20150732-g1.jpg

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