Matsumoto G, Yoshihisa T, Ito K
Institute for Virus Research, Kyoto University, Japan.
EMBO J. 1997 Nov 3;16(21):6384-93. doi: 10.1093/emboj/16.21.6384.
SecA, the preprotein-driving ATPase in Escherichia coli, was shown previously to insert deeply into the plasma membrane in the presence of ATP and a preprotein; this movement of SecA was proposed to be mechanistically coupled with preprotein translocation. We now address the role played by SecY, the central subunit of the membrane-embedded heterotrimeric complex, in the SecA insertion reaction. We identified a secY mutation (secY205), affecting the most carboxyterminal cytoplasmic domain, that did not allow ATP and preprotein-dependent productive SecA insertion, while allowing idling insertion without the preprotein. Thus, the secY205 mutation might affect the SecYEG 'channel' structure in accepting the preprotein-SecA complex or its opening by the complex. We isolated secA mutations that allele-specifically suppressed the secY205 translocation defect in vivo. One mutant protein, SecA36, with an amino acid alteration near the high-affinity ATP-binding site, was purified and suppressed the in vitro translocation defect of the inverted membrane vesicles carrying the SecY205 protein. The SecA36 protein could also insert into the mutant membrane vesicles in vitro. These results provide genetic evidence that SecA and SecY specifically interact, and show that SecY plays an essential role in insertion of SecA in response to a preprotein and ATP and suggest that SecA drives protein translocation by inserting into the membrane in vivo.
SecA是大肠杆菌中驱动前体蛋白的ATP酶,先前的研究表明,在ATP和前体蛋白存在的情况下,SecA会深深插入质膜;SecA的这种移动被认为在机制上与前体蛋白的转运相关联。我们现在探讨膜嵌入异源三聚体复合物的中心亚基SecY在SecA插入反应中所起的作用。我们鉴定出一个secY突变(secY205),它影响最羧基末端的细胞质结构域,该突变不允许ATP和前体蛋白依赖的有效SecA插入,却允许在没有前体蛋白的情况下进行空载插入。因此,secY205突变可能会影响SecYEG“通道”结构接受前体蛋白-SecA复合物或被该复合物打开的过程。我们分离出了在体内等位基因特异性抑制secY205转运缺陷的secA突变。一种突变蛋白SecA36,在高亲和力ATP结合位点附近有一个氨基酸改变,经过纯化后能够抑制携带SecY205蛋白的倒转膜囊泡在体外的转运缺陷。SecA36蛋白在体外也能插入突变的膜囊泡。这些结果提供了遗传学证据,证明SecA和SecY特异性相互作用,并表明SecY在响应前体蛋白和ATP时对SecA的插入起着至关重要的作用,还表明SecA在体内通过插入膜来驱动蛋白质转运。