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组氨酸激酶CheA与核苷酸的结合

Nucleotide binding by the histidine kinase CheA.

作者信息

Bilwes A M, Quezada C M, Croal L R, Crane B R, Simon M I

机构信息

Division of Biology, California Institute of Technology, 1200 East California Blvd., Pasadena, California 91125, USA.

出版信息

Nat Struct Biol. 2001 Apr;8(4):353-60. doi: 10.1038/86243.

Abstract

To probe the structural basis for protein histidine kinase (PHK) catalytic activity and the prospects for PHK-specific inhibitor design, we report the crystal structures for the nucleotide binding domain of Thermotoga maritima CheA with ADP and three ATP analogs (ADPNP, ADPCP and TNP-ATP) bound with either Mg(2+) or Mn(2+). The conformation of ADPNP bound to CheA and related ATPases differs from that reported in the ADPNP complex of PHK EnvZ. Interactions of the active site with the nucleotide gamma-phosphate and its associated Mg(2+) ion are linked to conformational changes in an ATP-lid that could mediate recognition of the substrate domain. The inhibitor TNP-ATP binds CheA with its phosphates in a nonproductive conformation and its adenine and trinitrophenyl groups in two adjacent binding pockets. The trinitrophenyl interaction may be exploited for designing CheA-targeted drugs that would not interfere with host ATPases.

摘要

为探究蛋白质组氨酸激酶(PHK)催化活性的结构基础以及设计PHK特异性抑制剂的前景,我们报道了嗜热栖热菌CheA核苷酸结合结构域与ADP以及三种ATP类似物(ADPNP、ADPCP和TNP-ATP)结合的晶体结构,这些ATP类似物与Mg(2+)或Mn(2+)结合。与CheA及相关ATP酶结合的ADPNP的构象不同于PHK EnvZ的ADPNP复合物中报道的构象。活性位点与核苷酸γ-磷酸及其相关Mg(2+)离子的相互作用与ATP盖子的构象变化相关联,该构象变化可能介导对底物结构域的识别。抑制剂TNP-ATP以其磷酸盐处于非生产性构象且其腺嘌呤和三硝基苯基基团位于两个相邻结合口袋的方式与CheA结合。三硝基苯基相互作用可用于设计不会干扰宿主ATP酶的靶向CheA的药物。

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