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淋病奈瑟菌PilC表达为菌毛的结构多样性提供了一种选择机制。

Neisseria gonorrhoeae PilC expression provides a selective mechanism for structural diversity of pili.

作者信息

Jonsson A B, Pfeifer J, Normark S

机构信息

Department of Microbiology, University of Umeå, Sweden.

出版信息

Proc Natl Acad Sci U S A. 1992 Apr 15;89(8):3204-8. doi: 10.1073/pnas.89.8.3204.

Abstract

Pili of Neisseria gonorrhoeae undergo both phase and structural variation. Phase variation of gonococcal pili can be caused by a RecA-independent on/off switch in PilC, a protein involved in pilus biogenesis. We show here that spontaneous nonpiliated PilC- derivatives as well as PilC- insertional mutants have also acquired sequence alterations in pilE relative to the pilE gene of the piliated MS11mk(P+)-u parent, so that the pilin produced is processed to soluble S-pilin and can be released into the medium. It is proposed that pilin alterations are selected for in PilC- bacteria if the parental nonassembled pilin is toxic to the cells--i.e., is not degradable to S-pilin at rates sufficient to allow viability of the cells. Toxicity is indicated by the extreme instability of certain unassembled pilin sequences and by the low frequency of nonpiliated, pilin+, PilC- variants that emerge from piliated recA- cells. The presence of a point mutation changing leucine-39 to phenylalanine at the cleavage site for S-pilin in one nonpiliated, PilC-, recA- variant relative to its piliated parent is a further argument for a selective mechanism of structural diversity of the gonococcal pilin.

摘要

淋病奈瑟菌的菌毛会发生相位和结构变异。淋球菌菌毛的相位变异可能由PilC(一种参与菌毛生物合成的蛋白质)中不依赖RecA的开关开启或关闭所引起。我们在此表明,自发的无菌毛PilC-衍生物以及PilC-插入突变体相对于有菌毛的MS11mk(P+)-u亲本的pilE基因,在pilE中也获得了序列改变,从而使产生的菌毛蛋白被加工成可溶性S-菌毛蛋白并可释放到培养基中。有人提出,如果亲本未组装的菌毛蛋白对细胞有毒性——即不能以足以维持细胞活力的速率降解为S-菌毛蛋白,那么在PilC-细菌中会选择菌毛蛋白的改变。某些未组装的菌毛蛋白序列的极端不稳定性以及从有菌毛的recA-细胞中出现的无菌毛、菌毛蛋白阳性、PilC-变体的低频率表明了毒性。相对于其有菌毛的亲本,在一个无菌毛、PilC-、recA-变体中,在S-菌毛蛋白切割位点处存在将亮氨酸-39变为苯丙氨酸的点突变,这进一步证明了淋球菌菌毛蛋白结构多样性的选择机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b490/48834/87f7028ebbc8/pnas01082-0051-a.jpg

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