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首页> 外文期刊>Structure >Wheel of Life, Wheel of Death: A Mechanistic Insight into Signaling by STAND Proteins
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Wheel of Life, Wheel of Death: A Mechanistic Insight into Signaling by STAND Proteins

机译:生命之轮,死亡之轮:STAND蛋白信号转导的机理分析

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摘要

The signal transduction ATPases with numerous domains (STAND) represent a newly recognized class of widespread, sophisticated ATPases that are related to the AAA+ proteins and that function as signaling hubs. These proteins control diverse biological processes in bacteria and eukaryotes, including gene expression, apoptosis, and innate immunity responses. They function as tightly regulated switches, with the off and on positions corresponding to a long-lived monomeric, ADP-bound form and a multimeric, ATIP-bound form, respectively. Inducer binding to the sensor domain activates the protein by promoting ADP for ATP exchange, probably through removal of an intramolecular inhibitory interaction, whereas ATP hydrolysis turns off the protein. One key component of the switch is a three-domain module carrying the ATPase activity (nucleotide-binding oligomerization domain [NOD]). Analysis of the atomic structures of four crystallized nucleotide-bound NOD modules provides an unprecedented insight into the NOD conformational changes underlying the activation process.
机译:具有多个结构域的信号转导ATPase(STAND)代表了新近公认的一类广泛的,复杂的ATPase,与AAA +蛋白有关,并起着信号枢纽的作用。这些蛋白质控制细菌和真核生物中的多种生物过程,包括基因表达,凋亡和先天免疫应答。它们用作严格调节的开关,其断开和接通位置分别对应于长寿命的单体,ADP结合形式和多聚体,ATIP结合形式。诱导剂与传感器结构域的结合可通过促进ADP进行ATP交换来激活蛋白质,可能是通过去除分子内抑制性相互作用,而ATP水解会关闭蛋白质。开关的一个关键组成部分是具有ATPase活性的三域模块(核苷酸结合寡聚域[NOD])。对四个结晶的核苷酸键合的NOD模块的原子结构的分析为激活过程背后的NOD构象变化提供了前所未有的见识。

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