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真核细胞核起源的选择力。

Selective forces for the origin of the eukaryotic nucleus.

作者信息

López-García Purificación, Moreira David

机构信息

Unité d'Ecologie, Systématique et Evolution, CNRS UMR8079, Université Paris-Sud, 91405 Orsay Cedex, France.

出版信息

Bioessays. 2006 May;28(5):525-33. doi: 10.1002/bies.20413.

Abstract

The origin of the eukaryotic cell nucleus and the selective forces that drove its evolution remain unknown and are a matter of controversy. Autogenous models state that both the nucleus and endoplasmic reticulum (ER) derived from the invagination of the plasma membrane, but most of them do not advance clear selective forces for this process. Alternative models proposing an endosymbiotic origin of the nucleus fail to provide a pathway fully compatible with our knowledge of cell biology. We propose here an evolutionary scenario that reconciles both an ancestral endosymbiotic origin of the eukaryotic nucleus (endosymbiosis of a methanogenic archaeon within a fermentative myxobacterium) with an autogenous generation of the contemporary nuclear membrane and ER from the bacterial membrane. We specifically state two selective forces that operated sequentially during its evolution: (1) metabolic compartmentation to avoid deleterious co-existence of anabolic (autotrophic synthesis by the methanogen) and catabolic (fermentation by the myxobacterium) pathways in the cell, and (2) avoidance of aberrant protein synthesis due to intron spreading in the ancient archaeal genome following mitochondrial acquisition and loss of methanogenesis.

摘要

真核细胞核的起源以及推动其进化的选择力量仍然未知,且存在争议。自生模型认为细胞核和内质网(ER)均起源于质膜内陷,但其中大多数模型并未阐明这一过程的明确选择力量。提出细胞核内共生起源的替代模型未能提供一条与我们的细胞生物学知识完全兼容的途径。我们在此提出一种进化情景,它将真核细胞核的祖先内共生起源(发酵性粘细菌内的产甲烷古菌的内共生)与当代核膜和内质网从细菌膜的自生形成相协调。我们具体阐述了在其进化过程中依次起作用的两种选择力量:(1)代谢区室化,以避免细胞中合成代谢(产甲烷菌的自养合成)和分解代谢(粘细菌的发酵)途径的有害共存;(2)避免在获得线粒体和失去产甲烷作用后,由于内含子在古代古菌基因组中的扩散而导致的异常蛋白质合成。

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