新月形茎杆菌细胞分化的调控。

J W Gober, M V Marques
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引用次数: 5

摘要

在新月形茎杆菌中,分裂前细胞产生不对称,导致细胞分裂时形成两种不同的细胞类型:运动的蜂群细胞和无根的柄状细胞。这些后代细胞类型在基因表达和DNA复制的相关程序上有所不同。在后代群细胞中,DNA复制在一段确定的时间内沉默,但跟踪细胞在细胞分裂后立即重新启动染色体DNA复制。这些DNA复制差异程序的建立可能是由于DNA复制蛋白的极性定位,染色体高阶结构的差异,或极点特异性转录。杆状杆菌发育中最容易理解的方面是极地鞭毛的生物发生。编码鞭毛的基因在细胞周期控制下主要在分裂前细胞类型中表达。鞭毛基因的转录是由一个反式作用的层次结构调控的,该层次结构对鞭毛组装和细胞周期信号都有反应。当鞭毛基因被表达时,它们的产物被定位到分裂前细胞的蜂拥极,在那里进行组装。特异性蛋白靶向和区隔化转录是鞭毛基因产物在分裂前细胞群极定位的两种机制。
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Regulation of cellular differentiation in Caulobacter crescentus.

In Caulobacter crescentus, asymmetry is generated in the predivisional cell, resulting in the formation of two distinct cell types upon cell division: a motile swarmer cell and a sessile stalked cell. These progeny cell types differ in their relative programs of gene expression and DNA replication. In progeny swarmer cells, DNA replication is silenced for a defined period, but stalked cells reinitiate chromosomal DNA replication immediately following cell division. The establishment of these differential programs of DNA replication may be due to the polar localization of DNA replication proteins, differences in chromosome higher-order structure, or pole-specific transcription. The best-understood aspect of Caulobacter development is biogenesis of the polar flagellum. The genes encoding the flagellum are expressed under cell cycle control predominantly in the predivisional cell type. Transcription of flagellar genes is regulated by a trans-acting hierarchy that responds to both flagellar assembly and cell cycle cues. As the flagellar genes are expressed, their products are targeted to the swarmer pole of the predivisional cell, where assembly occurs. Specific protein targeting and compartmentalized transcription are two mechanisms that contribute to the positioning of flagellar gene products at the swarmer pole of the predivisional cell.

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