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Intrinsic Negative Feedback Governs Activation Surge in Two-Component Regulatory Systems

机译:内在的负反馈控制两组分监管系统中的激活浪涌

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摘要

PhoP and PhoQ comprise a two-component system in the bacterium Salmonella enterica. PhoQ is the sensor kinase/phosphatase that modifies the phosphorylation state of the regulator PhoP in response to stimuli. The amount of phosphorylated PhoP surges after activation, then declines to reach a steady-state level. We now recapitulate this surge invitro by incubating PhoP and PhoQ with ATP and ADP. Mathematical modeling identified PhoQ's affinity for ADP as the key parameter dictating phosphorylated PhoP levels, as ADP promotes PhoQ's phosphatase activity toward phosphorylated PhoP. The lid covering the nucleotide-binding pocket of PhoQ governs the kinase to phosphatase switch because a lid mutation that decreased ADP binding compromised PhoQ's phosphatase activity invitro and resulted in sustained expression of PhoP-dependent mRNAs invivo. This feedback mechanism may curtail futile ATP consumption because ADP not only stimulates PhoQ's phosphatase activity but also inhibits ATP binding necessary for the kinase reaction.
机译:PhoP和PhoQ在细菌沙门氏菌中包含两组分系统。 PhoQ是一种传感器激酶/磷酸酶,可响应刺激而修饰调节剂PhoP的磷酸化状态。磷酸化的PhoP的数量在激活后激增,然后下降到稳态水平。现在,我们通过将PhoP和PhoQ与ATP和ADP一起孵育来简要说明这种激增体外实验。数学建模将PhoQ对ADP的亲和力确定为指示磷酸化PhoP水平的关键参数,因为ADP会促进PhoQ的磷酸酶活性朝着磷酸化PhoP方向发展。覆盖PhoQ核苷酸结合袋的盖子决定了激酶向磷酸酶的转换,因为降低ADP结合的盖子突变会在体外损害PhoQ的磷酸酶活性,并导致PhoP依赖性mRNA在体内的持续表达。这种反馈机制可能会减少无用的ATP消耗,因为ADP不仅会刺激PhoQ的磷酸酶活性,而且会抑制激酶反应所需的ATP结合。

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