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TatCd对TatAd的亲和力阐明了其在枯草芽孢杆菌双精氨酸转运(Tat)转运酶系统中的受体功能。

Affinity of TatCd for TatAd elucidates its receptor function in the Bacillus subtilis twin arginine translocation (Tat) translocase system.

作者信息

Schreiber Sandra, Stengel Rayk, Westermann Martin, Volkmer-Engert Rudolph, Pop Ovidiu I, Müller Jörg P

机构信息

Institut für Molekulare Zellbiologie, Friedrich-Schiller-Universität Jena, Drackendorfer Strasse 1, D-07747 Jena, Germany.

出版信息

J Biol Chem. 2006 Jul 21;281(29):19977-84. doi: 10.1074/jbc.M513900200. Epub 2006 May 12.

Abstract

Twin arginine translocation (Tat) systems catalyze the transport of folded proteins across the bacterial cytosolic membrane or the chloroplast thylakoid membrane. In the Tat systems of Escherichia coli and many other species TatA-, TatB-, and TatC-like proteins have been identified as essential translocase components. In contrast, the Bacillus subtilis phosphodiesterase PhoD-specific system consists only of a pair of TatA(d)/TatC(d) proteins and involves a TatA(d) protein engaged in a cytosolic and a membrane-embedded localization. Because soluble TatA(d) was able to bind the twin arginine signal peptide of prePhoD prior to membrane integration it could serve to recruit its substrate to the membrane via the interaction with TatC(d). By analyzing the distribution of TatA(d) and studying the mutual affinity with TatC(d) we have shown here that TatC(d) assists the membrane localization of TatA(d). Besides detergent-solubilized TatC(d), membrane-integrated TatC(d) showed affinity for soluble TatA(d). By using a peptide library-specific binding of TatA(d) to cytosolic loops of membrane protein TatC(d) was demonstrated. Depletion of TatC(d) in B. subtilis resulted in a drastic reduction of TatA(d), indicating a stabilizing effect of TatC(d) for TatA(d). In addition, the presence of the substrate prePhoD was the prerequisite for appropriate localization in the cytosolic membrane of B. subtilis as demonstrated by freeze-fracture experiments.

摘要

双精氨酸转运(Tat)系统催化折叠蛋白跨细菌细胞质膜或叶绿体类囊体膜的转运。在大肠杆菌和许多其他物种的Tat系统中,已鉴定出TatA、TatB和TatC样蛋白是必需的转运酶组分。相比之下,枯草芽孢杆菌磷酸二酯酶PhoD特异性系统仅由一对TatA(d)/TatC(d)蛋白组成,并且涉及一种定位于细胞质和膜嵌入的TatA(d)蛋白。由于可溶性TatA(d)能够在膜整合之前结合前PhoD的双精氨酸信号肽,它可以通过与TatC(d)的相互作用将其底物招募到膜上。通过分析TatA(d)的分布并研究其与TatC(d)的相互亲和力,我们在此表明TatC(d)有助于TatA(d)的膜定位。除了去污剂溶解的TatC(d)外,膜整合的TatC(d)对可溶性TatA(d)也表现出亲和力。通过使用肽库证明了TatA(d)与膜蛋白TatC(d)的细胞质环特异性结合。枯草芽孢杆菌中TatC(d)的缺失导致TatA(d)急剧减少,表明TatC(d)对TatA(d)具有稳定作用。此外,如冷冻断裂实验所示,底物前PhoD的存在是枯草芽孢杆菌细胞质膜中适当定位的先决条件。

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