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The PAS domains of the major sporulation kinase in Bacillus subtilis play a role in tetramer formation that is essential for the autokinase activity

机译:枯草芽孢杆菌中主要孢子形成激酶的PAS结构域在四聚体形成中发挥作用这对自身激酶活性至关重要

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摘要

Sporulation in Bacillus subtilis is induced upon starvation. In a widely accepted model, an N‐terminal “sensor” domain of the major sporulation kinase KinA recognizes a hypothetical starvation signal(s) and autophosphorylates a histidine residue to activate the master regulator Spo0A via a multicomponent phosphorelay. However, to date no confirmed signal has been found. Here, we demonstrated that PAS‐A, the most N‐terminal of the three PAS domains (PAS‐ABC), is dispensable for the activity, contrary to a previous report. Our data indicated that the autokinase activity is dependent on the formation of a functional tetramer, which is mediated by, at least, PAS‐B and PAS‐C. Additionally, we ruled out the previously proposed notion that NAD +/NADH ratio controls KinA activity through the PAS‐A domain by demonstrating that the cofactors show no effects on the kinase activity in vitro. In support of these data, we found that the cofactors exist in approximately 1000‐fold excess of KinA in the cell and the cofactors’ ratio does not change significantly during growth and sporulation, suggesting that changes in the cofactor ratio might not play a role in controlling KinA activity. These data may refute the widely‐held belief that the activity of KinA is regulated in response to an unknown starvation signal(s).
机译:饥饿时诱导枯草芽孢杆菌中的孢子形成。在一个广为接受的模型中,主要孢子形成激酶KinA的N端“传感器”结构域识别一个假设的饥饿信号并自磷酸化组氨酸残基,以通过多组分磷酸化激活主调节剂Spo0A。但是,到目前为止,尚未找到确认信号。在这里,我们证明了PAS-A是三个PAS域(PAS-ABC)中最N端,对于该活动是必不可少的,这与以前的报告相反。我们的数据表明自体激酶活性取决于功能性四聚体的形成,至少由PAS-B和PAS-C介导。此外,我们通过证明辅因子对体外激酶活性没有影响,排除了先前提出的观念:NAD + / NADH比值通过PAS-A域控制KinA活性。为了支持这些数据,我们发现辅因子在细胞中的KinA含量大约过量1000倍,并且辅因子的比率在生长和孢子形成过程中没有显着变化,这表明辅因子比率的变化可能在控制KinA活动。这些数据可能反驳了广泛认为的观点,即KinA的活性受未知饥饿信号的调节。

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