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首页> 外文期刊>Molecular Microbiology >The Bacillus subtilis Bacillus subtilis dCMP deaminase ComEB acts as a dynamic polar localization factor for ComGA within the competence machinery
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The Bacillus subtilis Bacillus subtilis dCMP deaminase ComEB acts as a dynamic polar localization factor for ComGA within the competence machinery

机译:枯草芽孢杆菌枯草芽孢杆菌DCMP脱氨酶变化为能力机械内的COMGA动态极性定位因子

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Abstract Bacillus subtilis can import DNA from the environment by an uptake machinery that localizes to a single cell pole. We investigated the roles of ComEB and of the?ATPase ComGA during the state of competence. We show that ComEB plays an important role during competence, possibly because it is necessary for the recruitment of GomGA to the cell pole. ComEB localizes to the cell poles even upon expression during exponential phase, indicating that it can serve as polar marker. ComEB is also a deoxycytidylate monophosphate (dCMP) deaminase, for the function of which a conserved cysteine residue is important. However, cysteine‐mutant ComEB is still capable of natural transformation, while a comEB deletion strain is highly impaired in competence, indicating that ComEB confers two independent functions. Single‐molecule tracking (SMT) reveals that both proteins exchange at the cell poles between bound and unbound in a time scale of a?few milliseconds, but turnover of ComGA increases during DNA uptake, whereas the mobility of ComEB is not affected. Our data reveal a highly dynamic role of ComGA during DNA uptake and an unusual role for ComEB as a mediator of polar localization, localizing by diffusion‐capture on an extremely rapid time scale and functioning as a moonlighting enzyme.
机译:摘要枯草芽孢杆菌可以通过向一个细胞杆定位的摄取机械从环境中导入DNA。在能力状态下,我们调查了成绩的角色和atPase Comga的角色。我们展示了在能力期间发挥着重要作用,可能是因为有必要招募GOMGA到细胞杆。即使在指数相位期间表达,表明它也可以用作极性标记,所以即使在表达中均匀定位到细胞杆。 Guesg是一种脱氧胞苷酸酯单磷酸酯(DCMP)脱氨酶,用于该功能,保守半胱氨酸残基是重要的。然而,半胱氨酸 - 突变体仍然能够自然转化,而大量缺失菌株在能力中受到高度损害,表明该旨在赋予两个独立的功能。单分子跟踪(SMT)揭示了蛋白质在一毫秒的束缚和未结合之间的界定和未结合之间交换,但在DNA摄取期间COMGA的营业额增加,而Guc的移动性不受影响。我们的数据揭示了DNA摄取期间COMGA的高度动态作用,以及作为极地定位的介体的变得不寻常的作用,通过扩散捕获在极其快速的时间尺度上定位并用作月光酶。

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