Kleerebezem M, Tommassen J
Department of Molecular Cell Biology, University of Utrecht, The Netherlands.
Mol Microbiol. 1993 Mar;7(6):947-56. doi: 10.1111/j.1365-2958.1993.tb01186.x.
Expression of several mutant forms of outer membrane protein PhoE of Escherichia coli, which are disturbed in normal biogenesis, resulted in high expression of a 26 kDa protein. This 26 kDa protein fractionated as a peripherally bound inner membrane protein. It appeared to be identical to a previously identified protein (PspA = phage shock protein A) of unknown function that is induced upon infection of E. coli with filamentous phages. PspA was not expressed upon synthesis of mutant PhoE proteins in a secB mutant, nor upon expression of a PhoE mutant that lacks the signal sequence, suggesting that entrance into the export pathway of prePhoE is essential for induction. PspA synthesis was also induced under other conditions that are known to block the export apparatus, i.e. in secA, secD and secF mutants when grown at their non-permissive temperature or upon induction of the synthesis of MalE-LacZ or LamB-LacZ hybrid proteins. The inducing conditions for PspA synthesis suggested a role for this protein in export. In vivo pulse-chase experiments showed that the translocation of (mutant) prePhoE and of the precursors of other exported proteins was retarded in a pspA mutant strain. Also, in in vitro translocation assays, a role for PspA in protein transport could be demonstrated.
大肠杆菌外膜蛋白PhoE的几种突变形式,其正常生物合成受到干扰,导致一种26 kDa蛋白的高表达。这种26 kDa蛋白分离为外周结合的内膜蛋白。它似乎与先前鉴定的一种功能未知的蛋白(PspA = 噬菌体休克蛋白A)相同,该蛋白在丝状噬菌体感染大肠杆菌时被诱导表达。在secB突变体中合成突变型PhoE蛋白时,或者在缺乏信号序列的PhoE突变体表达时,PspA不表达,这表明prePhoE进入输出途径对于诱导至关重要。在其他已知会阻断输出装置的条件下,即secA、secD和secF突变体在其非允许温度下生长时,或者在诱导MalE-LacZ或LamB-LacZ杂合蛋白合成时,也会诱导PspA合成。PspA合成的诱导条件表明该蛋白在输出中起作用。体内脉冲追踪实验表明,(突变型)prePhoE和其他输出蛋白前体的转运在pspA突变体菌株中受到阻碍。此外,在体外转运试验中,可以证明PspA在蛋白质转运中的作用。