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Double autoinhibition mechanism of signal transduction ATPases with numerous domains (STAND) with a tetratricopeptide repeat sensor

机译:具有饱和肽重复传感器的多个域(支架)的信号转导拟处的双自动抑制机制

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摘要

Upon triggering by their inducer, signal transduction ATPases with numerous domains (STANDs), initially in monomeric resting forms, multimerize into large hubs that activate target macromolecules. This process requires conversion of the STAND conserved core (the NOD) from a closed form encasing an ADP molecule to an ATP-bound open form prone to multimerize. In the absence of inducer, autoinhibitory interactions maintain the NOD closed. In particular, in resting STAND proteins with an LRR- or WD40-type sensor domain, the latter establishes interactions with the NOD that are disrupted in the multimerization-competent forms. Here, we solved the first crystal structure of a STAND with a tetratricopeptide repeat sensor domain, PH0952 from Pyrococcus horikoshii, revealing analogous NOD-sensor contacts. We use this structural information to experimentally demonstrate that similar interactions also exist in a PH0952 homolog, the MalT STAND archetype, and actually contribute to the MalT autoinhibition in vitro and in vivo. We propose that STAND activation occurs by stepwise release of autoinhibitory contacts coupled to the unmasking of inducer-binding determinants. The MalT example suggests that STAND weak autoinhibitory interactions could assist the binding of inhibitory proteins by placing in register inhibitor recognition elements born by two domains.
机译:在其诱导物触发时,最初以单体静止形式的具有许多结构域(支架)的信号转导ATP酶,多化到激活靶大分子的大型轮毂中。该过程需要将站立保守的核心(NOD)从包裹的闭合形式转换为将ADP分子包装到容易多化的ATP结合的开放形式。在没有诱导者的情况下,自动抑制的相互作用维持Nod关闭。特别地,在用LRR或WD40型传感器结构域静态蛋白质中,后者建立了与多元化主管形式中断的点的相互作用。这里,我们用来自Pyrococcus horikoshii的硫代肽重复传感器结构域,PH0952求解一级的第一晶体结构,揭示了类似的点头传感器触点。我们使用这种结构信息来实验证明,在PH0952同源物,麦芽立场原型中也存在类似的相互作用,并且实际上有助于体外和体内的麦芽自动抑制。我们提出了通过逐步释放的逐步释放到诱导诱导物结合决定簇的自动抑制接触的逐步释放而发生的静止激活。麦芽示例表明,弱自身抑制性相互作用可以通过放置在两个结构域出生的注册抑制剂识别元素中来帮助抑制蛋白的结合。

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