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首页> 外文期刊>The Journal of biological chemistry >Multiple SecA Molecules Drive Protein Translocation across a Single Translocon with SecG Inversion
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Multiple SecA Molecules Drive Protein Translocation across a Single Translocon with SecG Inversion

机译:多次SECA分子驱动蛋白易位,在单个摇音旋中,SECG反转

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SecA is a translocation ATPase that drives protein translocation. D209N SecA, a dominant-negative mutant, binds ATP but is unable to hydrolyze it. This mutant was inactive to proOmpA translocation. However, it generated a translocation intermediate of 18 kDa. Further addition of wild-type SecA caused its translocation into either mature OmpA or another intermediate of 28 kDa that can be translocated into mature by a proton motive force. The addition of excess D209N SecA during translocation caused a topology inversion of SecG. Moreover, an intermediate of SecG inversion was identified when wild-type and D209N SecA were used in the same amounts. These results indicate that multiple SecA molecules drive translocation across a single translocon with SecG inversion. Here, we propose a revised model of proOmpA translocation in which a single catalytic cycle of SecA causes translocation of 10–13 kDa with ATP binding and hydrolysis, and SecG inversion is required when the next SecA cycle begins with additional ATP hydrolysis.
机译:Seca是驱动蛋白易位的易位ATPase。 D209N Seca,一种主导阴性突变体,结合ATP但无法水解它。该突变体是无活性的,prompa易位。但是,它产生了18 kDa的易位中间体。进一步加入野生型Seca导致其转化为成熟OMA或28kDa的另一种中间体,其可以通过质子动力转化为成熟。在易位过程中添加多余的D209N Seca导致SECG的拓扑反转。此外,当以相同量使用野生型和D209N SECA时,鉴定了SECG反转的中间体。这些结果表明,多个SECA分子通过SECG反转来驱动横跨单个摇音符的易位。这里,我们提出了一种经修订的propma易位模型,其中Seca的单一催化循环导致10-13kDa的易位与ATP结合和水解,并且当下一个Seca循环开始以额外的ATP水解时需要Secg反转。

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