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A Memory of Oxygen Binding Explains the Dose Response of the Heme-Based Sensor FixL

机译:氧结合的记忆解释了基于血红素的传感器FixL的剂量响应

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Bradyrhizobium japonicum FixL is a modular oxygen sensor that directs adaptations to hypoxia by coupling the status of a heme-binding domain to a histidine-protein kinase activity. The oxygen-bound form is the "off-state". The unliganded form is the "on-state" active kinase that phosphorylates a transcription factor, FixJ. We have developed methods to optimize the kinase reactions of FixL and measure the turnover rates (k_(cat)) for reactions catalyzed by highly inhibited states of this sensor at constant, precisely known oxygen saturations. The resulting oxygen dose-response curve shows that an in vitro system with FixL and the response regulator FixJ as its only proteins manifests such a sharp ligand response that, when the proportion of deoxy-FixL decreases less than 3-fold, the kinase activity drops over 50-fold, and by the time the deoxy-FixL declines just 8-fold, the activity is inhibited over 1100-fold. This response is entirely reversible and similar to that reported for the in vivo hypoxic induction of FixLJ-regulated genes. FixL binds oxygen noncooperatively. When complexed with FixJ, FixL is dimeric in both oxy and deoxy states. Therefore traditional models involving cooperative binding of ligand or robust allosteric regulation cannot account for the extremely nonlinear kinase response to the heme saturation. This response, however, can be explained by a form of enzyme hysteresis with the simple assumptions that (i) on association of oxygen with the heme, the kinase is rapidly switched off; (ii) after dissociation of oxygen, the kinase remains inhibited longer than the average time that it takes a deoxy-heme to encounter an oxygen molecule at most oxygen saturations.
机译:缓生根瘤菌FixL是一种模块化的氧传感器,通过将血红素结合域的状态与组氨酸-蛋白激酶活性偶联来指导对缺氧的适应。氧结合形式是“关闭状态”。未配体形式是磷酸化转录因子FixJ的“状态”活性激酶。我们已经开发出方法来优化FixL的激酶反应,并测量在恒定的,精确已知的氧饱和度下该传感器的高度抑制状态所催化的反应的周转率(k_(cat))。所得的氧剂量-响应曲线表明,以FixL和响应调节剂FixJ作为其唯一蛋白质的体外系统表现出如此敏锐的配体响应,以至于当脱氧-FixL的比例下降不到3倍时,激酶活性下降超过50倍,并且当脱氧-FixL下降仅8倍时,活性被抑制超过1100倍。这种反应是完全可逆的,并且与体内低氧诱导FixLJ调控的基因报道的反应相似。 FixL非合作地结合氧。与FixJ配合使用时,FixL在氧和脱氧状态下都是二聚体。因此,涉及配体的合作结合或强大的变构调节的传统模型不能解释对血红素饱和度的极非线性激酶反应。然而,这种反应可以用一种简单的假设来解释,即:(i)在氧与血红素缔合后,激酶迅速关闭; (ii)氧解离后,该激酶的抑制时间长于脱氧血红素在大多数氧饱和度下遇到一个氧分子所需的平均时间。

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