Type-III secretion systems (T3SSs) of the bacterial flagellum and the evolutionarily related injectisome are capable of translocating proteins with a remarkable speed of several thousand amino acids per second. Here, we investigate how T3SSs are able to transport proteins at such a high rate while preventing the leakage of small molecules. Our mutational and evolutionary analyses demonstrate that an ensemble of conserved methionine residues at the cytoplasmic side of the T3SS channel create a deformable gasket (M-gasket) around fast-moving substrates undergoing export. The unique physicochemical features of the M-gasket are crucial to preserve the membrane barrier, to accommodate local conformational changes during active secretion, and to maintain stability of the secretion pore in cooperation with a plug domain (R-plug) and a network of salt-bridges. The conservation of the M-gasket, R-plug, and salt-bridge network suggests a universal mechanism by which the membrane integrity is maintained during high-speed protein translocation in all T3SSs.
Control of membrane barrier during bacterial type-III protein secretion.
细菌III型蛋白分泌过程中膜屏障的控制
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作者:Hüsing Svenja, Halte Manuel, van Look Ulf, Guse Alina, Gálvez Eric J C, Charpentier Emmanuelle, Blair David F, Erhardt Marc, Renault Thibaud T
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 Jun 28; 12(1):3999 |
| doi: | 10.1038/s41467-021-24226-1 | 研究方向: | 免疫/内分泌 |
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