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首页> 外文期刊>Current opinion in microbiology >Cell polarity, intercellular signalling and morphogenetic cell movements in Myxococcus xanthus
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Cell polarity, intercellular signalling and morphogenetic cell movements in Myxococcus xanthus

机译:黄色粘球菌的细胞极性,细胞间信号传导和形态发生细胞运动

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In Myxococcus xanthus morphogenetic cell movements constitute the basis for the formation of spreading vegetative colonies and fruiting bodies in starving cells. M. xanthus cells move by gliding and gliding motility depends on two polarly localized engines, type IV pili pull cells forward, and slime extruding nozzle-like structures appear to push cells forward. The motility behaviour of cells provides evidence that the two engines are localized to opposite poles and that they undergo polarity switching. Several proteins involved in regulating polarity switching have been identified. The cell surface-associated C-signal induces the directed movement of cells into nascent fruiting bodies. Recently, the molecular nature of the C-signal molecule was elucidated and the motility parameters regulated by the C-signal were identified. From the effect of the C-signal on cell behaviour it appears that the C-signal inhibits polarity switching of the two motility engines. This establishes a connection between cell polarity, signalling by an intercellular signal and morphogenetic cell movements during fruiting body formation.
机译:在粘球菌中,黄原菌的形态发生细胞运动构成了在饥饿的细胞中形成蔓延的营养菌落和子实体的基础。 Xanthus细胞通过滑行运动,而滑行运动取决于两个极性定位的引擎,IV型菌毛将细胞向前拉,粘液挤出的喷嘴状结构似乎将细胞向前推。细胞的运动行为提供了证据,表明这两个引擎位于相反的两极,并且它们经历极性转换。已经鉴定出几种涉及调节极性转换的蛋白质。细胞表面相关的C信号诱导细胞定向进入新生子实体。最近,阐明了C信号分子的分子性质,并确定了由C信号调节的运动参数。从C信号对细胞行为的影响看来,C信号抑制了两个运动引擎的极性切换。这在子实体形成过程中的细胞极性,细胞间信号传递信号和形态发生细胞运动之间建立了联系。

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