Herrero E, Jackson M, Bassford P J, Sinden D, Holland I B
J Bacteriol. 1982 Oct;152(1):133-9. doi: 10.1128/jb.152.1.133-139.1982.
The synthesis of a membrane-bound MalE beta-galactosidase hybrid protein, when induced by growth of Escherichia coli on maltose, leads to inhibition of cell division and eventually a reduced rate of mass increase. In addition, the relative rate of synthesis of outer membrane proteins, but not that of inner membrane proteins, was reduced by about 50%. Kinetic experiments demonstrated that this reduction coincided with the period of maximum synthesis of the hybrid protein (and another maltose-inducible protein, LamB). The accumulation of this abnormal protein in the envelope therefore appeared specifically to inhibit the synthesis, the assembly of outer membrane proteins, or both, indicating that the hybrid protein blocks some export site or causes the sequestration of some limiting factor(s) involved in the export process. Since the MalE protein is normally located in the periplasm, the results also suggest that the synthesis of periplasmic and outer membrane proteins may involve some steps in common. The reduced rate of synthesis of outer membrane proteins was also accompanied by the accumulation in the envelope of at least one outer membrane protein and at least two inner membrane proteins as higher-molecular-weight forms, indicating that processing (removal of the N-terminal signal sequence) was also disrupted by the presence of the hybrid protein. These results may indicate that the assembly of these membrane proteins is blocked at a relatively late step rather than at the level of primary recognition of some site by the signal sequence. In addition, the results suggest that some step common to the biogenesis of quite different kinds of envelope protein is blocked by the presence of the hybrid protein.
当大肠杆菌在麦芽糖上生长诱导合成膜结合型麦芽糖结合蛋白(MalE)β-半乳糖苷酶杂合蛋白时,会导致细胞分裂受到抑制,最终质量增加速率降低。此外,外膜蛋白的相对合成速率降低了约50%,而内膜蛋白的相对合成速率未降低。动力学实验表明,这种降低与杂合蛋白(以及另一种麦芽糖诱导蛋白,LamB)的最大合成期一致。因此,这种异常蛋白在包膜中的积累似乎特异性地抑制了外膜蛋白的合成、组装或两者,表明杂合蛋白阻断了某些输出位点或导致了参与输出过程的一些限制因子的隔离。由于MalE蛋白通常位于周质中,结果还表明周质蛋白和外膜蛋白的合成可能涉及一些共同步骤。外膜蛋白合成速率的降低还伴随着至少一种外膜蛋白和至少两种内膜蛋白以高分子量形式在包膜中的积累,这表明加工(去除N端信号序列)也因杂合蛋白的存在而受到干扰。这些结果可能表明这些膜蛋白的组装在相对较晚的步骤被阻断,而不是在信号序列对某些位点的初级识别水平。此外,结果表明,杂合蛋白的存在阻断了相当不同类型包膜蛋白生物合成的一些共同步骤。