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原核生物分化过程中表面结构的定位:细胞分裂在新月柄杆菌中的作用

Localization of surface structures during procaryotic differentiation: role of cell division in Caulobacter crescentus.

作者信息

Huguenel E D, Newton A

出版信息

Differentiation. 1982;21(2):71-8. doi: 10.1111/j.1432-0436.1982.tb01199.x.

Abstract

Asymmetric cell division in Caulobacter crescentus produces two cell types, a stalked cell and a new swarmer cell, with characteristics surface structures. We have examined the role of the cell cycle in the differentiation of these two cells using adsorption of bacteriophage phi LC72, the assembly of the polar flagellum, and stalk formation as assays for changes in surface morphology. Previous studies of this aquatic bacterium [17,25] have suggested that the replicating chromosome acts as a "clock' in timing the formation of the flagellar filament at one pole of the new swarmer cell. the analysis of conditional cell cycle mutants presented here extends these results by showing that DNA synthesis is also required for adsorption of phage phi LC72 and, more importantly, they also suggest that a late cell division step is involved in determining the spatial pattern in which the phage receptors and flagella are assembled. We propose that this cell division step is required for formation of "organizational' centers which direct the assembly of surface structures at the new cell poles, and for the polarity reversal in assembly that accompanies swarmer cell to stalked cell development.

摘要

新月柄杆菌中的不对称细胞分裂产生两种细胞类型,即柄细胞和新的游动细胞,它们具有独特的表面结构。我们利用噬菌体phi LC72的吸附、极生鞭毛的组装以及柄的形成作为表面形态变化的检测方法,研究了细胞周期在这两种细胞分化中的作用。此前对这种水生细菌的研究[17,25]表明,复制中的染色体在新游动细胞一极的鞭毛丝形成过程中充当“时钟”。本文对条件性细胞周期突变体的分析扩展了这些结果,表明DNA合成对于噬菌体phi LC72的吸附也是必需的,更重要的是,这些结果还表明细胞分裂后期步骤参与决定噬菌体受体和鞭毛组装的空间模式。我们提出,这一细胞分裂步骤对于形成指导新细胞极表面结构组装的“组织”中心以及伴随游动细胞向柄细胞发育的组装极性反转是必需的。

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