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首页> 外文期刊>Nucleic Acids Research >Molecular basis of nucleotide-dependent substrate engagement and remodeling by an AAA plus activator
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Molecular basis of nucleotide-dependent substrate engagement and remodeling by an AAA plus activator

机译:AAA结合激活剂的核苷酸依赖性底物参与和重塑的分子基础

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Binding and hydrolysis of ATP is universally required by AAA+ proteins to underpin their mechanochemical work. Here we explore the roles of the ATPase site in an AAA+ transcriptional activator protein, the phage shock protein F (PspF), by specifically altering the Walker B motif sequence required in catalyzing ATP hydrolysis. One such mutant, the E108Q variant, is defective in ATP hydrolysis but fully remodels target transcription complexes, the RNAP-sigma(54) holoenzyme, in an ATP dependent manner. Structural analysis of the E108Q variant reveals that unlike wild-type protein, which has distinct conformations for E108 residue in the ATP and ADP bound forms, E108Q adapts the same conformation irrespective of nucleotide bound. Our data show that the remodeling activities of E108Q are strongly favored on premelted DNA and engagement with RNAP-sigma(54) using ATP binding can be sufficient to convert the inactive holoenzyme to an active form, while hydrolysis per se is required for nucleic acid remodeling that leads to transcription bubble formation. Furthermore, using linked dimer constructs, we show that RNAP-sigma(54) engagement by adjacent subunits within a hexamer are required for this protein remodeling activity while DNA remodeling activity can tolerate defective ATP hydrolysis of alternating subunits.
机译:AAA +蛋白普遍需要ATP的结合和水解来支撑其机械化学作用。在这里,我们通过特异性地改变催化ATP水解所需的Walker B基序序列,探索了AAA +转录激活蛋白,噬菌体休克蛋白F(PspF)中ATPase位点的作用。一种这样的突变体E108Q变体在ATP水解中存在缺陷,但以ATP依赖的方式完全重塑了目标转录复合物RNAP-sigma(54)全酶。对E108Q变体的结构分析表明,与野生型蛋白不同,野生型蛋白在ATP和ADP结合形式中对E108残基具有独特的构象,而与核苷酸结合无关,E108Q都适应相同的构象。我们的数据表明,E108Q的重塑活性在预融DNA上极受青睐,并且使用ATP结合与RNAP-sigma(54)结合足以将无活性的全酶转变为活性形式,而核酸重塑本身需要水解导致转录气泡的形成。此外,使用链接的二聚体构建体,我们显示六聚体内相邻亚基的RNAP-sigma(54)接合对于这种蛋白质重塑活性是必需的,而DNA重塑活性可以容忍交替亚基的有缺陷的ATP水解。

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