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Allosteric regulation of DegS protease subunits through a shared energy landscape

机译:通过共享的能量格局对DegS蛋白酶亚基的变构调节

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摘要

The PDZ domains of the trimeric DegS protease bind unassembled outer-membrane proteins (OMPs) that accumulate in the Escherichia coli periplasm. This cooperative binding reaction triggers a proteolytic cascade that activates a transcriptional stress response. To dissect the mechanism of allosteric activation, we generated hybrid DegS trimers with different numbers of PDZ domains and/or protease-domain mutations. By studying the chemical reactivity and enzymatic properties of these hybrids, we show that all subunits experience a strongly coupled energetic landscape. For example, OMP peptide binding to a single PDZ domain stimulates active site chemical modification and proteolytic cleavage in the attached and neighboring protease domains. OMP peptide binding relieves inhibitory PDZ interactions, whereas the interfaces between protease domains in the trimeric DegS core mediate positively cooperative activation driven by both substrate binding and inhibition relief.
机译:三聚体DegS蛋白酶的PDZ结构域结合在大肠杆菌周质中积累的未组装的外膜蛋白(OMP)。这种协同结合反应触发蛋白水解级联反应,从而激活转录应激反应。为了剖析变构激活的机制,我们生成了具有不同数量的PDZ域和/或蛋白酶结构域突变的杂化DegS三聚体。通过研究这些杂种的化学反应性和酶学性质,我们表明所有亚基都经历了强烈耦合的能量景观。例如,结合至单个PDZ结构域的OMP肽刺激了在附着的和相邻的蛋白酶结构域中的活性位点化学修饰和蛋白水解切割。 OMP肽结合可缓解抑制性PDZ相互作用,而三聚体DegS核心中蛋白酶结构域之间的界面介导由底物结合和抑制释放驱动的正向协同激活。

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