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How ‘arm-twisting’ by the inducer triggers activation of the MalT transcription factor a typical signal transduction ATPase with numerous domains (STAND)

机译:诱导剂扭曲如何触发MalT转录因子的激活MalT转录因子是具有多个域的典型信号转导ATPase(STAND)

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摘要

Signal transduction ATPases with numerous domains (STAND) get activated through inducer-dependent assembly into multimeric platforms. This switch relies on the conversion of their nucleotide-binding oligomerization domain (NOD) from a closed, ADP-bound form to an open, ATP-bound form. The NOD closed form is stabilized by contacts with the arm, a domain that connects the NOD to the inducer-binding domain called the sensor. How the inducer triggers NOD opening remains unclear. Here, I pinpointed the NOD-arm interface of the MalT STAND transcription factor, and I generated a MalT variant in which this interface can be covalently locked on demand, thereby trapping the NOD in the closed state. By characterizing this locked variant, I found that the inducer is recognized in two steps: it first binds to the sole sensor with low affinity, which then triggers the recruitment of the arm to form a high-affinity arm-sensor inducer-binding site. Strikingly, this high-affinity binding step was incompatible with arm-NOD contacts maintaining the NOD closed. Through this toggling between two mutually exclusive states reminiscent of a single-pole double-throw switch, the arm couples inducer binding to NOD opening, shown here to precede nucleotide exchange. This scenario likely holds for other STANDs like mammalian NLR innate immunity receptors.
机译:具有多个域的信号转导ATPase(STAND)通过依赖于诱导剂的组装进入多聚体平台而被激活。此开关依赖于其核苷酸结合寡聚域(NOD)从封闭的,ADP结合形式转变为开放的,ATP结合形式。 NOD闭合形式通过与手臂接触而稳定,该手臂将NOD连接到称为传感器的诱导剂结合结构域。诱导剂如何触发NOD开放尚不清楚。在这里,我查明了MalT STAND转录因子的NOD-arm界面,并生成了MalT变体,其中该界面可以按需共价锁定,从而将NOD陷于关闭状态。通过对该锁定变体进行表征,我发现可以通过两个步骤识别诱导物:它首先以低亲和力与唯一的传感器结合,然后触发手臂募集以形成高亲和力的臂-传感器诱导剂结合位点。引人注目的是,这种高亲和力的结合步骤与保持NOD闭合的手臂-NOD接触不兼容。通过在让人想起单刀双掷开关的两个互斥状态之间进行切换,该臂将诱导物与NOD的开放结合,在核苷酸交换之前显示。这种情况可能适用于其他STAND,例如哺乳动物NLR先天免疫受体。

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