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Identification of a localization factor for the polar positioning of bacterial structural and regulatory proteins

机译:鉴定用于细菌结构和调节蛋白极性定位的定位因子

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Polar pili biogenesis in Caulobacter involves the asymmetric localization of the CpaE and CpaC components of the pili-specific secretion apparatus to one pole of the predivisional cell followed by the biosynthesis of the pili filaments in the daughter swarmer cell. The histidine kinase signaling protein, PleC, that controls the temporal accumulation of the PilA pilin subunit is asymmetrically localized to the pole at which pili are assembled. Here we identify a protein, PodJ, that provides the positional information for the polar localization of both PleC and CpaE. The PodJ protein was found to exist in two forms, a truncated 90-kDa and a full-length 110-kDa form, each controlling a different aspect of polar development and each localizing to the cell poles at a specific time in the cell cycle. When active PleC is delocalized in a ΔpodJ mutant, the accumulation of PilA, the downstream target of PleC signaling, is impaired, providing evidence that the polar localization of this histidine kinase stimulates the response signaled by a two-component system.
机译:梭菌中的极性菌毛生物发生涉及菌毛特异性分泌装置的CpaE和CpaC成分不对称地定位到前一细胞的一个极点,然后在子群中产生菌毛细丝的生物合成。控制PilA菌毛素亚基的时间积累的组氨酸激酶信号蛋白PleC不对称地位于菌毛组装的极点。在这里,我们确定了一种蛋白质PodJ,它为PleC和CpaE的极性定位提供了位置信息。发现PodJ蛋白以两种形式存在,即90 kDa的截短形式和110 kDa的全长形式,每种形式控制着极性发育的不同方面,并且每种都在细胞周期的特定时间定位于细胞极。当活性PleC在ΔpodJ突变体中离域时,PilA(PleC信号传导的下游靶标)的积累受到损害,这证明该组氨酸激酶的极性定位刺激了由两组分系统发出的信号。

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