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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The mechanism of outer membrane penetration by the eubacterial flagellum and implications for spirochete evolution.
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The mechanism of outer membrane penetration by the eubacterial flagellum and implications for spirochete evolution.

机译:真细菌鞭毛穿透外膜的机制及其对螺旋体进化的影响。

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摘要

The rod component of the bacterial flagellum polymerizes from the inner membrane across the periplasmic space and stops at a length of 25 nm at the outer membrane. Bushing structures, the P- and L-rings, polymerize around the distal rod and form a pore in the outer membrane. The flagellar hook structure is then added to the distal rod growing outside the cell. Hook polymerization stops after the rod-hook structure reaches approximately 80 nm in length. This study describes mutants in the distal rod protein FlgG that fail to terminate rod growth. The mutant FlgG subunits continue to polymerize close to the length of the normal rod-hook structure of 80 nm. These filamentous rod structures have multiple P-rings and fail to form the L-ring pore at the outer membrane. The flagella grow within the periplasm similar to spirochete flagella. This provides a simple method to evolve intracellular flagella as in spirochetes. The mechanism that couples rod growth termination to the ring assembly and outer membrane penetration exemplifies the importance of stopping points in the construction of a complex macromolecular machine that facilitate efficient coupling to the next step in the assembly pathway.
机译:细菌鞭毛的杆状成分从内膜穿过周质空间聚合,并在外膜处以25 nm的长度终止。 P型和L型环的衬套结构在远端杆周围聚合,并在外膜上形成孔。然后将鞭毛钩结构添加到在细胞外部生长的远端杆。杆钩结构的长度达到约80 nm后,钩聚合停止。这项研究描述了远端杆蛋白FlgG中无法终止杆生长的突变体。突变的FlgG亚基继续聚合,接近正常杆钩结构80 nm的长度。这些丝状杆结构具有多个P形环并且不能在外膜上形成L形环孔。鞭毛类似于螺旋体鞭毛在周质内生长。这提供了一种简单的方法来进化螺旋状的细胞内鞭毛。将杆生长终止耦合到环组件和外膜穿透的机制体现了复杂高分子机器构造中停止点的重要性,该机器有助于有效地耦合到组装路径中的下一步骤。

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