Dutta R, Qin L, Inouye M
Department of Biochemistry, UMDNJ, Robert Wood Johnson Medical School, 675 Hoes Lane, Piscataway, NJ 08854, USA.
Mol Microbiol. 1999 Nov;34(4):633-40. doi: 10.1046/j.1365-2958.1999.01646.x.
Histidine kinases play a major role in signal transduction in prokaryotes for the cellular adaptation to environmental conditions and stresses. Recent progress in the three-dimensional structure determination of two representative members of histidine kinases, EnvZ (class I) and CheA (class II), has revealed common structural features, as well as a kinase catalytic motif topologically similar to those of the ATP-binding domains of a few ATPases. They have also disclosed that there are significant differences in domain organization between class I and II histidine kinases, possibly reflecting their distinct locations, functions and regulatory mechanisms. In spite of this diversity, both class I and II histidine kinases use similar four-helix bundle motifs to relay phosphoryl groups from ATP to regulatory domains of response regulators. The previously known so-called transmitter domain of histidine kinase is further dissected into two domains: a CA (Catalytic ATP-binding) domain and a DHp (Dimerization Histidine phosphotransfer) domain for class I, or a CA domain and an HPt (Histidine-containing Phosphotransfer) domain for class II histidine kinases. From a comparative analysis of the CA domains of EnvZ, CheA and their ATPase homologues, the core elements of the CA domain have been derived. The apparent resemblance between DHp and HPt domains is only superficial, and significant differences between them are discussed.
组氨酸激酶在原核生物的信号转导中发挥着重要作用,使细胞能够适应环境条件和应激。最近,对组氨酸激酶的两个代表性成员EnvZ(I类)和CheA(II类)进行三维结构测定取得了进展,揭示了它们共同的结构特征,以及一个在拓扑结构上与一些ATP酶的ATP结合结构域相似的激酶催化基序。研究还发现,I类和II类组氨酸激酶在结构域组织上存在显著差异,这可能反映了它们不同的定位、功能和调节机制。尽管存在这种多样性,但I类和II类组氨酸激酶都使用相似的四螺旋束基序将磷酸基团从ATP传递到应答调节因子的调节结构域。先前已知的所谓组氨酸激酶的传递结构域进一步被细分为两个结构域:I类为CA(催化ATP结合)结构域和DHp(二聚化组氨酸磷酸转移)结构域,II类组氨酸激酶为CA结构域和HPt(含组氨酸的磷酸转移)结构域。通过对EnvZ、CheA及其ATP酶同源物的CA结构域进行比较分析,得出了CA结构域的核心元件。DHp和HPt结构域之间表面上的相似性只是表象,文中还讨论了它们之间的显著差异。