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首页> 外文期刊>Journal of Molecular Biology >Solution Structures of the Inactive and BeF(3)-activated Response Regulator CheY2.
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Solution Structures of the Inactive and BeF(3)-activated Response Regulator CheY2.

机译:非活动和BeF(3)激活的响应调节器CheY2的解决方案结构。

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摘要

The chemotactic signalling chain to the flagellar motor of Sinorhizobium meliloti features a new type of response regulator, CheY2. CheY2 activated by phosphorylation (CheY2-P) controls the rotary speed of the flagellar motor (instead of reversing the sense of rotation), and it is efficiently dephosphorylated by phospho-retrotransfer to the cognate kinase, CheA. Here, we report the NMR solution structures of the Mg(2+)-complex of inactive CheY2, and of activated CheY2-BeF(3), a stable analogue of CheY2-P, to an overall root mean square deviation of 0.042 nm and 0.027 nm, respectively. The 14 kDa CheY2 protein exhibits a characteristic open (alpha/beta)(5) conformation. Modification of CheY2 by BeF(3)(-) leads to large conformational changes of the protein, which are in the limits of error identical with those observed by phosphorylation of the active-centre residue Asp58. In BeF(3)-activated CheY2, the position of Thr88-OH favours the formation of a hydrogen bond with the active site, Asp58-BeF(3), similar to BeF(3)-activated CheY from Escherichia coli. In contrast to E.coli, this reorientation is not involved in a Tyr-Thr-coupling mechanism, that propagates the signal from the incoming phosphoryl group to the C-terminally located FliM-binding surface. Rather, a rearrangement of the Phe59 side-chain to interact with Ile86-Leu95-Val96 along with a displacement of alpha4 towards beta5 is stabilised in S.meliloti. The resulting, activation-induced, compact alpha4-beta5-alpha5 surface forms a unique binding domain suited for specific interaction with and signalling to a rotary motor that requires a gradual speed control. We propose that these new features of response regulator activation, compared to other two-component systems, are the key for the observed unique phosphorylation, dephosphorylation and motor control mechanisms in S.meliloti.
机译:苜蓿中华根瘤菌鞭毛马达的趋化信号传递链具有新型的响应调节剂CheY2。通过磷酸化作用激活的CheY2(CheY2-P)控制鞭毛马达的旋转速度(而不是逆转旋转方向),并且通过磷酸逆向转移至同源激酶CheA进行有效的去磷酸化。在这里,我们报告的NMR溶液结构的Mg(2+)络合物的非活性CheY2,和活化的CheY2-BeF(3)(一种稳定的CheY2-P类似物),其总均方根偏差为0.042 nm,分别为0.027 nm。 14 kDa CheY2蛋白表现出特征性的开放(alpha / beta)(5)构象。 BeF(3)(-)对CheY2的修饰会导致蛋白质的构象变化较大,其误差范围与活性中心残基Asp58磷酸化所观察到的相同。在BeF(3)激活的CheY2中,Thr88-OH的位置有利于与活性位点Asp58-BeF(3)形成氢键,类似于来自大肠杆菌的BeF(3)激活的CheY。与大肠杆菌相反,这种重新定向不参与Tyr-Thr偶联机制,该机制将信号从传入的磷酰基传播到位于C末端的FliM结合表面。而是,在S.meliloti中稳定了与Ile86-Leu95-Val96相互作用的Phe59侧链的重排以及α4朝β5的置换。产生的,激活诱导的致密α4-β5-α5表面形成一个独特的结合域,适合与需要逐步控制速度的旋转马达发生特异性相互作用并发出信号。我们建议,与其他两组分系统相比,响应调节剂激活的这些新功能是观察到的S.meliloti中独特的磷酸化,去磷酸化和运动控制机制的关键。

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