首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A mutant hunt for defects in membrane protein assembly yields mutations affecting the bacterial signal recognition particle and Sec machinery
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A mutant hunt for defects in membrane protein assembly yields mutations affecting the bacterial signal recognition particle and Sec machinery

机译:突变寻找膜蛋白装配中的缺陷会产生影响细菌信号识别颗粒和Sec机制的突变

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We describe an Escherichia coli genetic screen that yields mutations affecting two different cellular processes: disulfide bond formation and membrane protein assembly. The mutants defective in disulfide bond formation include additional classes of dsbA and dsbB muta- tions. The membrane protein assembly defective mutants contain a mutation in the secA operon and three mutations in the ffs gene. which encodes 4.5S RNA. These latter mutations are the only ones to be isolated in a gene encoding a component of the bacterial signal recognition particle by screening in vivo for defects in membrane protein insertion. A sensitive method for examining membrane pro- tein localization shows that the ffs and secA locus mutations affect membrane assembly of the polytopic membrane protein, MalF. The ffs mutations also affect the membrane insertion of the FtsQ and the AcrB proteins. Although both the ffs and the secA locus mutations interfere with membrane protein assembly, only the latter also reduces export of a protein containing a cleavable signal sequence.
机译:我们描述了一种大肠杆菌遗传筛选,其产生影响两个不同细胞过程的突变:二硫键形成和膜蛋白组装。在二硫键形成方面存在缺陷的突变体包括其他类型的dsbA和dsbB突变。膜蛋白组装缺陷突变体在secA操纵子中包含一个突变,在ffs基因中包含三个突变。编码4.5S RNA。通过体内筛选膜蛋白插入缺陷,后一种突变是唯一在编码细菌信号识别颗粒成分的基因中分离的突变。检查膜蛋白定位的一种灵敏方法表明,ffs和secA基因座突变会影响多位膜蛋白MalF的膜组装。 ffs突变也影响FtsQ和AcrB蛋白的膜插入。尽管ffs和secA基因座突变均会干扰膜蛋白装配,但只有后者也会减少含有可裂解信号序列的蛋白的输出。

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