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HWE组氨酸激酶家族的结构见解:布鲁氏菌蓝光激活组氨酸激酶结构域

Structural Insights into the HWE Histidine Kinase Family: The Brucella Blue Light-Activated Histidine Kinase Domain.

作者信息

Rinaldi Jimena, Arrar Mehrnoosh, Sycz Gabriela, Cerutti María Laura, Berguer Paula M, Paris Gastón, Estrín Darío Ariel, Martí Marcelo Adrián, Klinke Sebastián, Goldbaum Fernando Alberto

机构信息

Fundación Instituto Leloir, IIBBA-CONICET, Avenida Patricias Argentinas 435, C1405BWE, Buenos Aires, Argentina.

Departamento de Química Inorgánica, Analítica y Química Física e INQUIMAE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires , Ciudad Universitaria, Pabellón 2, C1428EHA, Buenos Aires, Argentina.

出版信息

J Mol Biol. 2016 Mar 27;428(6):1165-1179. doi: 10.1016/j.jmb.2016.01.026. Epub 2016 Feb 2.

Abstract

In response to light, as part of a two-component system, the Brucella blue light-activated histidine kinase (LOV-HK) increases its autophosphorylation, modulating the virulence of this microorganism. The Brucella histidine kinase (HK) domain belongs to the HWE family, for which there is no structural information. The HWE family is exclusively present in proteobacteria and usually coupled to a wide diversity of light sensor domains. This work reports the crystal structure of the Brucella HK domain, which presents two different dimeric assemblies in the asymmetric unit: one similar to the already described canonical parallel homodimers (C) and the other, an antiparallel non-canonical (NC) dimer, each with distinct relative subdomain orientations and dimerization interfaces. Contrary to these crystallographic structures and unlike other HKs, in solution, the Brucella HK domain is monomeric and still active, showing an astonishing instability of the dimeric interface. Despite this instability, using cross-linking experiments, we show that the C dimer is the functionally relevant species. Mutational analysis demonstrates that the autophosphorylation activity occurs in cis. The different relative subdomain orientations observed for the NC and C states highlight the large conformational flexibility of the HK domain. Through the analysis of these alternative conformations by means of molecular dynamics simulations, we also propose a catalytic mechanism for Brucella LOV-HK.

摘要

作为双组分系统的一部分,布鲁氏菌蓝光激活组氨酸激酶(LOV-HK)在光照下会增加自身磷酸化,从而调节这种微生物的毒力。布鲁氏菌组氨酸激酶(HK)结构域属于HWE家族,目前尚无该家族的结构信息。HWE家族仅存在于变形菌中,通常与多种光传感器结构域偶联。这项工作报道了布鲁氏菌HK结构域的晶体结构,该结构在不对称单元中呈现出两种不同的二聚体组装形式:一种类似于已描述的典型平行同型二聚体(C),另一种是反平行非典型(NC)二聚体,每种二聚体都有不同的相对亚结构域取向和二聚化界面。与这些晶体结构相反,与其他HKs不同的是,在溶液中,布鲁氏菌HK结构域是单体且仍具有活性,这表明其二聚化界面具有惊人的不稳定性。尽管存在这种不稳定性,但通过交联实验,我们表明C二聚体是功能相关的物种。突变分析表明自磷酸化活性以顺式发生。在NC和C状态下观察到的不同相对亚结构域取向突出了HK结构域的大构象灵活性。通过分子动力学模拟对这些替代构象进行分析,我们还提出了布鲁氏菌LOV-HK的催化机制。

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