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首页> 外文期刊>Journal of bacteriology >secG and Temperature Modulate Expression of Azide-Resistant and Signal Sequence Suppressor Phenotypes of Escherichia coli secA Mutants
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secG and Temperature Modulate Expression of Azide-Resistant and Signal Sequence Suppressor Phenotypes of Escherichia coli secA Mutants

机译:secG和温度调节大肠杆菌secA突变体的抗叠氮和信号序列抑制表型的表达

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SecA is a dynamic protein that undergoes ATP-dependent membrane cycling to drive protein translocation across the Escherichia coli inner membrane. To understand more about this process, azide-resistant (azi) and signal sequence suppressor (prlD) alleles of secA were studied. We found that azide resistance is cold sensitive because of a direct effect on protein export, suggesting that SecA-membrane interaction is regulated by an endothermic step that is azide inhibitable. secGfunction is required for expression of azide-resistant and signal sequence suppressor activities of azi and prlDalleles, and in turn, these alleles suppress cold-sensitive and export-defective phenotypes of a secG null mutant. These remarkable genetic observations support biochemical data indicating that SecG promotes SecA membrane cycling and that this process is dependent on an endothermic change in SecA conformation.
机译:SecA是一种动态蛋白,会经历ATP依赖的膜循环,从而驱动蛋白跨过大肠杆菌内膜转运。为了进一步了解这一过程,研究了 secA 的抗叠氮( azi )和信号序列抑制子( prlD )等位基因。我们发现,叠氮化物抗性是冷敏感的,因为它直接影响蛋白质的输出,这表明SecA-膜的相互作用受叠氮化物可抑制的吸热步骤调节。表达 azi prlD 等位基因的抗叠氮物和信号序列抑制活性需要 secG 功能,这些等位基因又能抑制感冒secG null突变体的敏感和出口缺陷表型。这些非凡的遗传观察结果支持生化数据,表明SecG促进SecA膜循环,并且此过程取决于SecA构象的吸热变化。

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