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A new genetic selection identifies essential residues in SecG a component of the Escherichia coli protein export machinery.

机译:一种新的遗传选择方法可识别SecG中的重要残基SecG是大肠杆菌蛋白质出口机制的组成部分。

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摘要

The signal sequence of the murine serine protease inhibitor PAI-2 promotes alkaline phosphatase export to the E. coli periplasm. However, high level expression of this chimeric protein interferes with cell growth. Since most suppressors of this toxic phenotype map to secA and secY, growth arrest results from a defective interaction of the chimeric protein with the export machinery. We have characterized suppressors which map in secG, a newly defined gene of the export machinery. All single amino acid substitutions map to three adjacent codons. These secG mutants have a weak Sec phenotype, as determined by their effect on export mediated by wild-type and mutant signal sequences. Whilst a secG disruption allele also confers a weak Sec phenotype, it does not suppress the toxicity of the chimeric protein. This difference results from a selective effect of the secG suppressors on the kinetics of export mediated by the PAI-2 signal sequence. Using a malE signal sequence mutant, which has a Mal-phenotype in secG mutant strains, we have isolated extragenic Mal+ suppressors. Most suppressors map to secY, and several are allele-specific. Finally, SecG overexpression accelerates the kinetics of protein export, suggesting that there are two types of functional translocation complexes: with or without SecG.
机译:鼠丝氨酸蛋白酶抑制剂PAI-2的信号序列促进碱性磷酸酶向大肠杆菌周质的输出。但是,这种嵌合蛋白的高水平表达会干扰细胞的生长。由于这种毒性表型的大多数抑制剂都映射到secA和secY,因此,由于嵌合蛋白与输出机械相互作用不良而导致生长停滞。我们已经对抑制子进行了表征,这些抑制子在secG中定位,secG是出口机器的新定义基因。所有单个氨基酸取代都映射到三个相邻的密码子。这些secG突变体具有弱的Sec表型,这取决于它们对野生型和突变体信号序列介导的输出的影响。尽管secG破坏等位基因也具有弱的Sec表型,但它不能抑制嵌合蛋白的毒性。这种差异是由于secG抑制剂对PAI-2信号序列介导的输出动力学的选择性作用所致。使用在secG突变菌株中具有Mal表型的malE信号序列突变体,我们分离了外源的Mal +抑制剂。大多数抑制子都映射到secY,有几种是等位基因特异的。最后,SecG的过表达加速了蛋白质输出的动力学,表明存在两种类型的功能性转运复合体:有或没有SecG。

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