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柄杆菌鞭毛蛋白mRNA在细胞分裂时不对称分离。

Caulobacter flagellin mRNA segregates asymmetrically at cell division.

作者信息

Milhausen M, Agabian N

出版信息

Nature. 1983 Apr 14;302(5909):630-2. doi: 10.1038/302630a0.

Abstract

Molecular processes which promote the spatial localization of subcellular components are fundamental to cell development and differentiation. At various stages in development unequal segregation of molecular information must occur to result in the differentiated characteristics which distinguish cell progeny. Biological attributes of the dimorphic bacterium, Caulobacter crescentus, provide an experimental system permitting examination of the generation of asymmetry at the molecular level. When a Caulobacter cell divides, two different daughter cells are produced--a motile swarmer cell with a polar flagellum and a non-motile cell with a static appendage referred to as a stalk. The two cell types are distinct with respect to surface morphology, developmental potential, protein composition and biosynthetic capabilities. One of the more conspicuous manifestations of asymmetric expression of macromolecules in this system, the flagellum, has been studied extensively. We have cloned the flagellin genes of Caulobacter and report here the use of these sequences as probes to demonstrate that (1) the level of flagellin mRNA is regulated during the cell cycle in a pattern coincident with flagellum polypeptide synthesis and (2) flagellin mRNA synthesized before cell division is segregated with progeny swarmer cells. This provides molecular evidence of specific partitioning of an mRNA at the time of cell division.

摘要

促进亚细胞成分空间定位的分子过程是细胞发育和分化的基础。在发育的各个阶段,分子信息的不均等分离必然会发生,从而产生区分细胞后代的分化特征。双态细菌新月柄杆菌的生物学特性提供了一个实验系统,可用于在分子水平上研究不对称性的产生。当新月柄杆菌细胞分裂时,会产生两种不同的子细胞——一种带有极鞭毛的游动菌毛细胞和一种带有称为柄的静态附属物的非游动细胞。这两种细胞类型在表面形态、发育潜能、蛋白质组成和生物合成能力方面都有所不同。在这个系统中,大分子不对称表达的一个较为显著的表现是鞭毛,对此已进行了广泛研究。我们克隆了新月柄杆菌的鞭毛蛋白基因,并在此报告使用这些序列作为探针来证明:(1)鞭毛蛋白mRNA的水平在细胞周期中受到调控,其模式与鞭毛多肽合成一致;(2)在细胞分裂前合成的鞭毛蛋白mRNA与子代游动菌毛细胞一起分离。这为细胞分裂时mRNA的特异性分配提供了分子证据。

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