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首页> 外文期刊>Environmental microbiology >The Prc and RseP proteases control bacterial cell-surface signalling activity
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The Prc and RseP proteases control bacterial cell-surface signalling activity

机译:Prc和RseP蛋白酶控制细菌细胞表面信号传导活性

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Extracytoplasmic function (ECF) sigma factors play a key role in the regulation of vital functions in the bacterial response to the environment. In Gramnegative bacteria, activity of these sigma factors is often controlled by cell-surface signalling (CSS), a regulatory system that also involves an outer membrane receptor and a transmembrane anti-sigma factor. To get more insight into the molecular mechanism behind CSS regulation, we have focused on the unique Iut system of Pseudomonas putida. This system contains a hybrid protein containing both a cytoplasmic ECF sigma domain and a periplasmic anti-sigma domain, apparently leading to a permanent interaction between the sigma and anti-sigma factor. We show that the Iut ECF sigma factor regulates the response to aerobactin under iron deficiency conditions and is activated by a proteolytic pathway that involves the sequential action of two proteases: Prc, which removes the periplasmic anti-sigma domain, and RseP, which subsequently removes the transmembrane domain and thereby generates the ECF active transcriptional form. We furthermore demonstrate the role of these proteases in the regulation of classical CSS systems in which the sigma and antisigma factors are two different proteins.
机译:细胞质外功能(ECF)σ因子在调节细菌对环境的反应中的重要功能中起着关键作用。在革兰氏阴性细菌中,这些sigma因子的活性通常由细胞表面信号(CSS)控制,该表面调节系统还涉及外膜受体和跨膜抗sigma因子。为了更深入地了解CSS调控背后的分子机制,我们将重点放在恶臭假单胞菌的独特Iut系统上。该系统包含杂种蛋白,该杂种蛋白既包含细胞质ECF sigma域,又包含周质抗sigma域,显然导致sigma和抗sigma因子之间的永久相互作用。我们显示Iut ECF sigma因子调节铁缺乏条件下对航空杆菌素的反应,并通过涉及两种蛋白酶的顺序作用的蛋白水解途径被激活:Prc去除了周质抗sigma结构域,RseP随后去除了跨膜结构域,从而产生ECF活性转录形式。我们进一步证明了这些蛋白酶在经典CSS系统的调节中的作用,其中sigma和antisigma因子是两种不同的蛋白质。

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