首页> 美国卫生研究院文献>Journal of Bacteriology >Identification of Diverse Archaeal Proteins with Class III Signal Peptides Cleaved by Distinct Archaeal Prepilin Peptidases
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Identification of Diverse Archaeal Proteins with Class III Signal Peptides Cleaved by Distinct Archaeal Prepilin Peptidases

机译:鉴定具有不同的古细菌前纤毛蛋白肽酶的III类信号肽的古细菌蛋白质。

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摘要

Most secreted archaeal proteins are targeted to the membrane via a tripartite signal composed of a charged N terminus and a hydrophobic domain, followed by a signal peptidase-processing site. Signal peptides of archaeal flagellins, similar to class III signal peptides of bacterial type IV pilins, are distinct in that their processing sites precede the hydrophobic domain, which is crucial for assembly of these extracytoplasmic structures. To identify the complement of archaeal proteins with class III signal sequences, a PERL program (FlaFind) was written. A diverse set of proteins was identified, and many of these FlaFind positives were encoded by genes that were cotranscribed with homologs of pilus assembly genes. Moreover, structural conservation of primary sequences between many FlaFind positives and subunits of bacterial pilus-like structures, which have been shown to be critical for pilin assembly, have been observed. A subset of pilin-like FlaFind positives contained a conserved domain of unknown function (DUF361) within the signal peptide. Many of the genes encoding these proteins were in operons that contained a gene encoding a novel euryarchaeal prepilin-peptidase, EppA, homolog. Heterologous analysis revealed that Methanococcus maripaludis DUF361-containing proteins were specifically processed by the EppA homolog of this archaeon. Conversely, M. maripaludis preflagellins were cleaved only by the archaeal preflagellin peptidase FlaK. Together, the results reveal a diverse set of archaeal proteins with class III signal peptides that might be subunits of as-yet-undescribed cell surface structures, such as archaeal pili.
机译:大多数分泌的古细菌蛋白通过由带电荷的N端和疏水域组成的三方信号靶向膜,随后是信号肽酶加工位点。与细菌IV型菌毛蛋白的III类信号肽相似,古细菌鞭毛蛋白的信号肽的不同之处在于它们的加工位点在疏水域之前,这对于这些胞浆外结构的组装至关重要。为了鉴定具有III类信号序列的古细菌蛋白的互补物,编写了PERL程序(FlaFind)。鉴定出多种蛋白质,并且这些FlaFind阳性中的许多由与菌毛装配基因的同源物共转录的基因编码。此外,已观察到许多FlaFind阳性和细菌菌毛样结构亚基之间的一级序列的结构保守性,已证明对菌毛蛋白组装至关重要。 pilin样FlaFind阳性子集在信号肽内包含未知功能的保守结构域(DUF361)。编码这些蛋白质的许多基因都在操纵子中,该操纵子包含一个编码新型euryarchaeal prepilin-肽酶EppA同源物的基因。异源分析表明,含有海藻甲烷球菌DUF361的蛋白质是由该古细菌的EppA同源物特异性加工的。相反,只用古细菌前鞭毛蛋白肽酶FlaK切割maripaludis前鞭毛蛋白。在一起,结果揭示了一组具有III类信号肽的古细菌蛋白质,这些蛋白质可能是尚未描述的细胞表面结构(例如古细菌菌毛)的亚基。

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