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首页> 外文期刊>Molecular Microbiology >Mutational analysis of F-pilin reveals domains for pilus assembly, phage infection and DNA transfer.
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Mutational analysis of F-pilin reveals domains for pilus assembly, phage infection and DNA transfer.

机译:F-菌毛蛋白的突变分析揭示了菌毛组装,噬菌体感染和DNA转移的结构域。

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摘要

The F-pilus has been implicated in recipient cell recognition during the establishment of a stable mating pair before conjugation as well as forming part of the conjugative pore for DNA transfer. The F-pilus is the site of attachment of the filamentous phages (M13, f1 and fd), which attach to the F-pilus tip, and the RNA phages, R17 and Qbeta, which attach to different sites exposed on the sides of the pilus. R17 has been shown to undergo eclipse, or capsid release, outside the cell on pili attached to cells. New and existing mutants of traA combined with natural variants of F-pilin were assayed for pilin stability and processing, pilus elongation, transfer, phage sensitivity and R17 eclipse. Phenotypes of these mutants indicated that the F-pilin subunit contains specific regions that can be associated with pilus assembly, phage sensitivity and DNA transport. Mutations involving lysines and phenylalanines within residues 45-60 suggest that these residues might participate in transmitting a signal down the length of the pilus that initiates DNA transfer or R17 eclipse.
机译:F-菌毛在结合之前建立稳定的交配对期间参与了受体细胞的识别,并且形成了DNA转移的结合孔的一部分。 F菌毛是丝状噬菌体(M13,f1和fd)的附着位点,它们附着在F菌毛尖端,而RNA噬菌体R17和Qbeta则附着在暴露于噬菌体侧面的不同部位。纤毛。 R17已显示在附着于细胞的菌毛上在细胞外发生蚀食或衣壳释放。分析了新的和现有的traA突变体与F-pilin的天然变体相结合的pilin稳定性和加工,菌毛伸长,转移,噬菌体敏感性和R17蚀。这些突变体的表型表明,F-菌毛蛋白亚基包含可以与菌毛组装,噬菌体敏感性和DNA运输相关的特定区域。涉及残基45-60的赖氨酸和苯丙氨酸的突变表明,这些残基可能参与沿着菌毛长度的信号传递,从而启动DNA转移或R17蚀。

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