首页> 外文期刊>Journal of Molecular Biology >Mechanism of action of the Escherichia coli phage shock protein PspA in repression of the AAA family transcription factor PspF.
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Mechanism of action of the Escherichia coli phage shock protein PspA in repression of the AAA family transcription factor PspF.

机译:大肠杆菌噬菌体休克蛋白PspA在抑制AAA家族转录因子PspF中的作用机制。

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摘要

The PspA protein, a negative regulator of the Escherichia coli phage shock psp operon, is produced when virulence factors are exported through secretins in many Gram-negative pathogenic bacteria and its homologue in plants, VIPP1, plays a critical role in thylakoid biogenesis, essential for photosynthesis. Activation of transcription by the enhancer-dependent bacterial sigma(54) containing RNA polymerase occurs through ATP hydrolysis-driven protein conformational changes enabled by activator proteins that belong to the large AAA(+) mechanochemical protein family. We show that PspA directly and specifically acts upon and binds to the AAA(+) domain of the PspF transcription activator. Interactions involving PspF and nucleotide are changed by the action of PspA. These changes and the complexes that form between PspF and PspA can explain how PspA exerts its negative effects upon transcription activated by PspF, and are of significance when considering how activities of other AAA(+) proteins might be controlled.
机译:PspA蛋白是大肠杆菌噬菌体休克psp操纵子的负调节剂,是在许多革兰氏阴性致病菌中通过分泌素输出毒力因子时产生的,而其同源物VIPP1在类囊体生物发生中起关键作用,这是PspA蛋白的关键。光合作用。由包含RNA聚合酶的增强子依赖性细菌sigma(54)激活的转录是通过ATP水解驱动的蛋白质构象变化发生的,该构象变化由属于大型AAA(+)机械化学蛋白家族的激活蛋白实现。我们显示,PspA直接且特异性地作用于PspF转录激活因子的AAA(+)结构域并与之结合。涉及PspF和核苷酸的相互作用通过PspA的作用而改变。这些变化以及PspF和PspA之间形成的复合物可以解释PspA如何对PspF激活的转录产生负面影响,并且在考虑如何控制其他AAA(+)蛋白质的活性时具有重要意义。

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