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Processing and Maturation of the Pilin of the Type IV Secretion System Encoded within the Gonococcal Genetic Island

机译:淋球菌遗传岛内编码的IV型分泌系统小柱的加工和成熟

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摘要

The type IV secretion system (T4SS) encoded within the gonococcal genetic island (GGI) of Neisseria gonorrhoeae has homology to the T4SS encoded on the F plasmid. The GGI encodes the putative pilin protein TraA and a serine protease TrbI, which is homologous to the TraF protein of the RP4 plasmid involved in circularization of pilin subunits of P-type pili. TraA was processed to a 68-amino acid long circular peptide by leader peptidase and TrbI. Processing occurred after co-translational membrane insertion and was independent of other proteins. Circularization occurred after removal of three C-terminal amino acids. Mutational analysis of TraA revealed limited flexibility at the cleavage and joining sites. Mutagenesis of TrbI showed that the conserved Lys-93 and Asp-155 are essential, whereas mutagenesis of Ser-52, the putative catalytic serine did not influence circularization. Further mutagenesis of other serine residues did not identify a catalytic serine, indicating that TrbI either contains redundant catalytic serine residues or does not function via a serine-lysine dyad mechanism. In vitro studies revealed that circularization occurs via a covalent intermediate between the C terminus of TraA and TrbI. The intermediate is processed to the circular form after cleavage of the N-terminal signal sequence. This is the first demonstration of a covalent intermediate in the circularization mechanism of conjugative pili.
机译:淋病奈瑟氏球菌的淋球菌遗传岛(GGI)中编码的IV型分泌系统(T4SS)与F质粒上编码的T4SS具有同源性。 GGI编码假定的菌毛蛋白TraA和丝氨酸蛋白酶TrbI,该蛋白与参与P型菌毛的菌毛蛋白亚基环化的RP4质粒的TraF蛋白同源。通过前导肽酶和TrbI将TraA加工成68个氨基酸长的环状肽。加工发生在共翻译膜插入后,并且独立于其他蛋白质。去除三个C末端氨基酸后发生环化。 TraA的突变分析显示在裂解和连接位点的灵活性有限。 TrbI的诱变表明保守的Lys-93和Asp-155是必不可少的,而诱变的Ser-52和假定的催化丝氨酸则不会影响环化。其他丝氨酸残基的进一步诱变未鉴定出催化丝氨酸,表明TrbI包含多余的催化丝氨酸残基,或不通过丝氨酸-赖氨酸二元机制起作用。体外研究表明,环化作用是通过TraA和TrbI的C末端之间的共价中间体发生的。裂解N-末端信号序列后,将中间体加工成环状。这是共轭纤毛的环化机理中共价中间体的首次证明。

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