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Mechanistic Insights Revealed by the Crystal Structure of a Histidine Kinase with Signal Transducer and Sensor Domains

机译:组氨酸激酶的晶体结构与信号传感器和传感器域的揭示的机械学见解。

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Two-component systems (TCSs) are important for the adaptation and survival of bacteria and fungi under stress conditions. A TCS is often composed of a membrane-bound sensor histidine kinase (SK) and a response regulator (RR), which are relayed through sequential phosphorylation steps. However, the mechanism for how an SK is switched on in response to environmental stimuli remains obscure. Here, we report the crystal structure of a complete cytoplasmic portion of an SK, VicK from Streptococcus mutans. The overall structure of VicK is a long-rod dimer that anchors four connected domains: HAMP, Per-ARNT-SIM (PAS), DHp, and catalytic and ATP binding domain (CA). The HAMP, a signal transducer, and the PAS domain, major sensor, adopt canonical folds with dyad symmetry. In contrast, the dimer of the DHp and CA domains is asymmetric because of different helical bends in the DHp domain and spatial positions of the CA domains. Moreover, a conserved proline, which is adjacent to the phosphoryl acceptor histidine, contributes to helical bending, which is essential for the autokinase and phosphatase activities. Together, the elegant architecture of VicK with a signal transducer and sensor domain suggests a model where DHp helical bending and a CA swing movement are likely coordinated for autokinase activation.
机译:两组分系统(TCS)对于在压力条件下细菌和真菌的适应和生存非常重要。 TCS通常由膜结合的传感器组氨酸激酶(SK)和响应调节剂(RR)组成,通过连续的磷酸化步骤进行中继。然而,如何响应于环境刺激而接通SK的机制仍然不清楚。在这里,我们报道了来自变形链球菌的SK,VicK的完整细胞质部分的晶体结构。 VicK的整体结构是一个长杆二聚体,可固定四个连接的域:HAMP,Per-ARNT-SIM(PAS),DHp以及催化和ATP结合域(CA)。 HAMP(信号转换器)和PAS域(主要传感器)采用具有对称对称的规范折叠。相反,由于DHp域中不同的螺旋弯曲和CA域的空间位置,DHp和CA域的二聚体是不对称的。此外,与磷酸基受体组氨酸相邻的保守脯氨酸有助于螺旋弯曲,这对于自激激酶和磷酸酶活性是必不可少的。总之,具有信号换能器和传感器域的VicK优雅的体系结构提出了一个模型,其中DHp螺旋弯曲和CA摆动运动很可能与自动激酶激活相协调。

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