Units of Protein Crystallography, Institut Pasteur de Montevideo, Montevideo 11400, Uruguay.
J Biol Chem. 2010 Aug 6;285(32):24892-903. doi: 10.1074/jbc.M110.147843. Epub 2010 May 27.
DesK is a sensor histidine kinase (HK) that allows Bacillus subtilis to respond to cold shock, triggering the adaptation of membrane fluidity via transcriptional control of a fatty acid desaturase. It belongs to the HK family HPK7, which includes the nitrogen metabolism regulators NarX/Q and the antibiotic sensor LiaS among other important sensor kinases. Structural information on different HK families is still scarce and several questions remain, particularly concerning the molecular features that determine HK specificity during its catalytic autophosphorylation and subsequent response-regulator phosphotransfer reactions. To analyze the ATP-binding features of HPK7 HKs and dissect their mechanism of autophosphorylation at the molecular level, we have studied DesK in complex with ATP using high resolution structural approaches in combination with biochemical studies. We report the first crystal structure of an HK in complex with its natural nucleotidic substrate. The general fold of the ATP-binding domain of DesK is conserved, compared with well studied members of other families. Yet, DesK displays a far more compact structure at the ATP-binding pocket: the ATP lid loop is much shorter with no secondary structural organization and becomes ordered upon ATP loading. Sequence conservation mapping onto the molecular surface, semi-flexible protein-protein docking simulations, and structure-based point mutagenesis allow us to propose a specific domain-domain geometry during autophosphorylation catalysis. Supporting our hypotheses, we have been able to trap an autophosphorylating intermediate state, by protein engineering at the predicted domain-domain interaction surface.
DesK 是一种传感器组氨酸激酶(HK),使枯草芽孢杆菌能够对冷休克做出反应,通过对脂肪酸去饱和酶的转录控制来调节膜流动性。它属于 HK 家族 HPK7,其中包括氮代谢调节剂 NarX/Q 和抗生素传感器 LiaS 以及其他重要的传感器激酶。不同 HK 家族的结构信息仍然很少,还有几个问题仍然存在,特别是关于决定 HK 在催化自磷酸化及其随后的响应调节剂磷酸转移反应中特异性的分子特征。为了分析 HPK7 HKs 的 ATP 结合特征,并在分子水平上剖析其自磷酸化的机制,我们使用高分辨率结构方法结合生化研究,研究了与 ATP 结合的 DesK。我们报告了第一个与天然核苷酸底物结合的 HK 的晶体结构。与其他家族中研究得很好的成员相比,DesK 的 ATP 结合域的总体折叠是保守的。然而,DesK 在 ATP 结合口袋处显示出更紧凑的结构:ATP 盖环短得多,没有二级结构组织,并且在加载 ATP 时变得有序。序列保守性映射到分子表面、半柔性蛋白质-蛋白质对接模拟以及基于结构的点突变,使我们能够在自磷酸化催化过程中提出特定的结构域-结构域几何形状。支持我们的假设,我们已经能够通过在预测的结构域-结构域相互作用表面上进行蛋白质工程,捕获自磷酸化的中间状态。