Feng J N, Model P, Russel M
The Rockefeller University, 1230 York Avenue, New York, NY 10021, USA.
Mol Microbiol. 1999 Nov;34(4):745-55. doi: 10.1046/j.1365-2958.1999.01636.x.
Assembly and export of filamentous phage requires four non-capsid proteins: the outer membrane protein, pIV; the inner membrane proteins, pI and pXI; and a cytoplasmic host factor, thioredoxin. Chemical cross-linking of intact cells demonstrates a trans-membrane complex containing pI and pIV. Formation of the complex protects pI from proteolytic cleavage by an endogenous protease. This protection also requires pXI, which is identical to the C-terminal portion of pI. This indicates that pXI, which is required for phage assembly in its own right, is also part of the complex. This complex forms in the absence of any other phage proteins or the DNA substrate; hence, it represents the first preinitiation step of phage morphogenesis. On the basis of protease protection data, we propose that the preinitiation complex is converted to an initiation complex by binding phage DNA, thioredoxin and the initiating minor coat protein(s).
外膜蛋白pIV;内膜蛋白pI和pXI;以及一种细胞质宿主因子硫氧还蛋白。完整细胞的化学交联显示存在一个包含pI和pIV的跨膜复合物。该复合物的形成可保护pI不被内源性蛋白酶进行蛋白水解切割。这种保护作用还需要pXI,它与pI的C末端部分相同。这表明pXI本身是噬菌体组装所必需的,它也是该复合物的一部分。这种复合物在没有任何其他噬菌体蛋白或DNA底物的情况下形成;因此,它代表了噬菌体形态发生的第一个起始前步骤。基于蛋白酶保护数据,我们提出通过结合噬菌体DNA、硫氧还蛋白和起始小衣壳蛋白,起始前复合物可转化为起始复合物。