首页> 美国卫生研究院文献>Journal of Bacteriology >Escherichia coli SecB stimulates export without maintaining export competence of ribose-binding protein signal sequence mutants.
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Escherichia coli SecB stimulates export without maintaining export competence of ribose-binding protein signal sequence mutants.

机译:大肠杆菌SecB刺激了出口而没有维持核糖结合蛋白信号序列突变体的出口能力。

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摘要

Ribose-binding protein (RBP) is exported to the periplasm of Escherichia coli via the general export pathway. An rbsB-lacZ gene fusion was constructed and used to select mutants defective in RBP export. The spontaneous Lac+ mutants isolated in this selection contained either single-amino-acid substitutions or a deletion of the RBP signal sequence. Intact rbsB genes containing eight different point mutations in the signal sequence were reconstructed, and the effects of the mutations on RBP export were examined. Most of the mutations caused severe defects in RBP export. In addition, different suppressor mutations in SecY/PrlA protein were analyzed for their effects on the export of RBP signal sequence mutants in the presence or absence of SecB. Several RBP signal sequence mutants were efficiently suppressed, but others were not suppressed. Export of an RBP signal sequence mutant in prlA mutant strains was partially dependent on SecB, which is in contrast to the SecB independence of wild-type RBP export. However, the kinetics of export of an RBP signal sequence mutant point to a rapid loss of pre-RBP export competence, which occurs in strains containing or lacking SecB. These results suggest that SecB does not stabilize the export-competent conformation of RBP and may affect translocation by stabilizing the binding of pre-RBP at the translocation site.
机译:核糖结合蛋白(RBP)通过一般出口途径出口到大肠杆菌的周质。构建了rbsB-lacZ基因融合体,并用于选择在RBP输出中有缺陷的突变体。在该选择中分离的自发的Lac +突变体包含单氨基酸取代或RBP信号序列的缺失。重建了在信号序列中包含八个不同点突变的完整rbsB基因,并研究了这些突变对RBP输出的影响。大多数突变导致RBP出口严重缺陷。此外,分析了存在或不存在SecB时,SecY / PrlA蛋白中不同的抑制子突变对RBP信号序列突变体输出的影响。几个RBP信号序列突变体被有效抑制,但其他未被抑制。 prlA突变菌株中RBP信号序列突变体的输出部分依赖于SecB,这与野生型RBP输出的SecB独立性相反。但是,RBP信号序列突变体输出的动力学指向RBP前输出能力的快速丧失,这种情况发生在含有或缺乏SecB的菌株中。这些结果表明,SecB不能稳定RBP的出口能力构象,并可能通过稳定易位RBP在转运位点的结合而影响转运。

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