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首页> 外文期刊>Molecular Microbiology >Identification of an additional member of the secretin superfamily of proteins in Pseudomonas aeruginosa that is able to function in type II protein secretion.
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Identification of an additional member of the secretin superfamily of proteins in Pseudomonas aeruginosa that is able to function in type II protein secretion.

机译:鉴定铜绿假单胞菌中蛋白质分泌蛋白超家族的另一个成员,该成员能够在II型蛋白质分泌中起作用。

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Pseudomonas aeruginosa is a prolific exporter of virulence factors and contains three of the four protein secretion systems that have been described in gram-negative bacteria. The P. aeruginosa type II general secretory pathway (GSP) is used to export the largest number of proteins from this organism, including lipase, phospholipase C, alkaline phosphatase, exotoxin A, elastase and LasA. Although these exoproteins contain no sequence similarity, they are specifically and efficiently transported by the secretion apparatus. Bacterial homologues of XcpQ (GspD), the only outer membrane component of this system, have been proposed to play the role of gatekeeper, by presumably interacting and recognizing the exported substrates to allow their passage through the outer membrane. While determining the phenotype of nonpolar deletions in each of the xcp genes, we have shown that a deletion of the P. aeruginosa strain K xcpQ does not completely abolish protein secretion. As the proposed function of XcpQ should be requisite for secretion, we searched for additional factors that could carry out this role. A cosmid DNA library from a PAK strain deleted for xcpP-Z was tested for its ability to increase protein secretion by screening for enhanced growth on lipid agar, a medium that selects for the secretion of lipase. In this manner, we have identified an XcpQ homologue, XqhA, that is solely responsible for the residual export observed in a deltaxcpQ strain, although it is not required for efficient secretion in wild-type P. aeruginosa. We have also demonstrated that this protein is capable of recognizing all of the exoproteins of P. aeruginosa, arguing against the proposed role of members of the secretin family as determinants of specificity.
机译:铜绿假单胞菌是毒力因子的大量输出者,包含革兰氏阴性细菌中描述的四个蛋白质分泌系统中的三个。铜绿假单胞菌II型一般分泌途径(GSP)用于从该生物中输出最大数量的蛋白质,包括脂肪酶,磷脂酶C,碱性磷酸酶,外毒素A,弹性蛋白酶和LasA。尽管这些外蛋白不具有序列相似性,但是它们由分泌设备特异性地和有效地运输。 XcpQ(GspD)的细菌同源物,该系统的唯一外膜组件,被认为通过推测和相互作用并识别出输出的底物以使其通过外膜而起到看门人的作用。在确定每个xcp基因中非极性缺失的表型时,我们已经表明铜绿假单胞菌K xcpQ菌株的缺失并不能完全消除蛋白质的分泌。由于XcpQ的拟议功能应该是分泌所必需的,因此我们搜索了可以发挥这一作用的其他因素。通过筛选脂琼脂(一种选择脂肪酶分泌的培养基)上增强的生长,测试了缺失了xcpP-Z的PAK菌株的粘粒DNA文库增加蛋白质分泌的能力。通过这种方式,我们确定了一个XcpQ同源物XqhA,尽管在野生型铜绿假单胞菌中有效分泌并不是必需的,但它仅负责deltaxcpQ菌株中观察到的残留出口。我们还证明了该蛋白能够识别铜绿假单胞菌的所有外蛋白,反对分泌素家族成员作为特异性决定因素的拟议作用。

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