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丝状细菌灰色链霉菌生长和孢子形成过程中分裂控制基因ftsZ的表达

Expression of the division-controlling gene ftsZ during growth and sporulation of the filamentous bacterium Streptomyces griseus.

作者信息

Dharmatilake A J, Kendrick K E

机构信息

Department of Microbiology, Ohio State University, Columbus 43210.

出版信息

Gene. 1994 Sep 15;147(1):21-8. doi: 10.1016/0378-1119(94)90034-5.

Abstract

The branched, filamentous cells of Streptomyces form two different types of septum: those found infrequently in vegetative mycelia and those that form the boundaries of developing spores. To begin to understand the role of cell septation events in the Streptomyces life cycle, we have isolated the ftsZ locus from Streptomyces griseus, an organism that undergoes sporulation on solid surfaces and in liquid culture. The nucleotide sequence of the cloned DNA indicates that ftsZ in S. griseus lies within a region containing other genes likely to be involved in cell division and cell wall biogenesis. A gene (ORF1) showing significant similarity to ftsQ maps a short distance upstream from ftsZ, but there is no evidence for an ftsA homologue between ftsZ and ORF1. Transcription analysis suggests that ftsZ is expressed during both vegetative growth and sporulation. Immunoblots of soluble protein preparations from vegetative and sporulating mycelia indicate that FtsZ is present at similar levels during growth and differentiation. There appears to be only one ftsZ gene in S. griseus. We interpret these results to indicate that any temporal regulation of FtsZ that may be necessary for the enhanced synthesis of septa during sporulation of S. griseus is likely to occur predominantly at the level of activity rather than synthesis.

摘要

链霉菌的分支丝状细胞形成两种不同类型的隔膜

一种在营养菌丝体中很少见,另一种形成正在发育的孢子的边界。为了开始了解细胞隔膜事件在链霉菌生命周期中的作用,我们从灰色链霉菌中分离出ftsZ基因座,灰色链霉菌是一种在固体表面和液体培养中都能进行孢子形成的生物体。克隆DNA的核苷酸序列表明,灰色链霉菌中的ftsZ位于一个包含其他可能参与细胞分裂和细胞壁生物合成的基因的区域内。一个与ftsQ有显著相似性的基因(ORF1)位于ftsZ上游不远的位置,但在ftsZ和ORF1之间没有ftsA同源物的证据。转录分析表明,ftsZ在营养生长和孢子形成过程中均有表达。来自营养菌丝体和产孢菌丝体的可溶性蛋白质制剂的免疫印迹表明,FtsZ在生长和分化过程中以相似的水平存在。灰色链霉菌中似乎只有一个ftsZ基因。我们将这些结果解释为表明,在灰色链霉菌孢子形成过程中隔膜增强合成可能所需的FtsZ的任何时间调控,可能主要发生在活性水平而非合成水平。

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