首页> 外文期刊>Peptides: An International Journal >Peptide signal molecules and bacteriocins in Gram-negative bacteria: a genome-wide in silico screening for peptides containing a double-glycine leader sequence and their cognate transporters.
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Peptide signal molecules and bacteriocins in Gram-negative bacteria: a genome-wide in silico screening for peptides containing a double-glycine leader sequence and their cognate transporters.

机译:革兰氏阴性细菌中的肽信号分子和细菌素:在计算机全基因组学中筛选含有双甘氨酸前导序列及其同源转运蛋白的肽。

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Quorum sensing (QS) in Gram-negative bacteria is generally assumed to be mediated by N-acyl-homoserine lactone molecules while Gram-positive bacteria make use of signaling peptides. We analyzed the occurrence in Gram-negative bacteria of peptides and transporters that are involved in quorum sensing in Gram-positive bacteria. Many class II bacteriocins and inducing factors produced by lactic acid bacteria (LAB) and competence stimulating peptides (CSPs) synthesized by streptococci are processed by their cognate ABC-transporters during their secretion. During transport, a conserved leader sequence, termed the double-glycine motif (GG-motif), is cleaved off by the N-terminal domain of the transporter, which belongs to the Peptidase C39 protein family. Several peptides containing a GG-motif were recently described in Gram-negative bacteria (Trends Microbiol 2001;9:164-8). To screen for additional putative GG-motif containing peptides, an in silico strategy based on MEME, HMMER2.2 and Wise2 was designed. Using a curated training set, a motif model of the leader peptide was built and used to screen over 120 fully sequenced bacterial genomes. The screening methodology was applied at the nucleotide level as probably many small peptide genes have not been annotated and may be absent from the non-redundant databases. It was found that 33% of the screened genomes of Gram-negative bacteria contained one or more transporters carrying a Peptidase C39 domain, compared to 44% of the genomes of Gram-positive bacteria. The transporters can be subdivided into four classes on the basis of their domain organization. Genes coding for putative peptides containing 23-142 amino acids and a GG-motif were found in close association with genes coding for Peptidase C39 domain containing proteins. These peptides show structural similarity to bacteriocins and peptide pheromones of Gram-positive bacteria. The possibility of signal transduction based on peptide signaling in Gram-negative bacteria is discussed.
机译:一般认为革兰氏阴性细菌中的群体感应(QS)是由N-酰基高丝氨酸内酯分子介导的,而革兰氏阳性细菌则利用信号肽。我们分析了革兰氏阴性细菌中与革兰氏阳性细菌群体感应有关的肽和转运蛋白的发生。乳酸菌(LAB)产生的许多II类细菌素和诱导因子以及链球菌合成的能力刺激肽(CSP)在其分泌过程中均由其同源的ABC转运蛋白处理。在运输过程中,被称为双甘氨酸基序(GG-基序)的保守的前导序列被属于肽酶C39蛋白家族的转运蛋白的N末端结构域切割掉。最近在革兰氏阴性细菌中描述了几种含有GG基序的肽(Trends Microbiol 2001; 9:164-8)。为了筛选其他推定的含GG-基序的肽,设计了基于MEME,HMMER2.2和Wise2的计算机策略。使用精选的训练集,建立了前导肽的基序模型,并用于筛选120多个完全测序的细菌基因组。由于可能尚未注释许多小肽基因,非冗余数据库中可能没有这种筛选方法,因此在核苷酸水平应用了筛选方法。发现33%的革兰氏阴性细菌的基因组含有一个或多个带有肽酶C39结构域的转运蛋白,而革兰氏阳性细菌的基因组为44%。根据其领域组织,可以将运输者分为四类。发现编码包含23-142个氨基酸和GG基序的推定肽的基因与编码包含肽酶C39结构域的蛋白质的基因紧密相关。这些肽与革兰氏阳性细菌的细菌素和肽信息素显示出结构相似性。讨论了在革兰氏阴性细菌中基于肽信号传导的信号转导的可能性。

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