Kishii Ryuta, Falzon Liliana, Yoshida Takeshi, Kobayashi Hiroshi, Inouye Masayori
Discovery Research Laboratories, Kyorin Pharmaceutical Co., Ltd., Shimotsuga, Tochigi 329-0114, Japan.
J Biol Chem. 2007 Sep 7;282(36):26401-8. doi: 10.1074/jbc.M701342200. Epub 2007 Jul 16.
The HAMP domain plays an essential role in signal transduction not only in histidine kinase but also in a number of other signal-transducing receptor proteins. Here we expressed the EnvZ HAMP domain (Arg(180)-Thr(235)) with the R218K mutation (termed L(RK)) or with L(RK) connected with domain A (Arg(180)-Arg(289)) (termed LA(RK)) of EnvZ, an osmosensing transmembrane histidine kinase in Escherichia coli, by fusing it with protein S. The L(RK) and LA(RK) proteins were purified after removing protein S. The CD analysis of the isolated L protein revealed that it consists of a random structure or is unstructured. This suggests that the EnvZ HAMP domain by itself is unable to form a stable structure and that this structural fragility may be important for its role in signal transduction. Interestingly the substitution of Ala(193) in the EnvZ HAMP domain with valine or leucine in Tez1A1, a chimeric protein of Tar and EnvZ, caused a constitutive OmpC phenotype. The CD analysis of LA(RK)(A193L) revealed that this mutated HAMP domain possesses considerable secondary structures and that the thermostability of this entire LA(RK)(A193L) became substantially lower than that of LA(RK) or just domain A, indicating that the structure of the HAMP domain with the A193L mutation affects the stability of downstream domain A. This results in cooperative thermodenaturation of domain A with the mutated HAMP domain. These results are discussed in light of the recently solved NMR structure of the HAMP domain from a thermophilic bacterium (Hulko, M., Berndt, F., Gruber, M., Linder, J. U., Truffault, V., Schultz, A., Martin, J., Schultz, J. E., Lupas, A. N., and Coles, M. (2006) Cell 126, 929-940).
HAMP结构域不仅在组氨酸激酶的信号转导中,而且在许多其他信号转导受体蛋白的信号转导中都起着至关重要的作用。在这里,我们通过将EnvZ的HAMP结构域(Arg(180)-Thr(235))与R218K突变(称为L(RK))或与EnvZ的结构域A(Arg(180)-Arg(289))相连的L(RK)(称为LA(RK))进行表达,EnvZ是大肠杆菌中的一种渗透压感应跨膜组氨酸激酶,通过将其与蛋白S融合来实现。去除蛋白S后,对L(RK)和LA(RK)蛋白进行了纯化。对分离出的L蛋白的圆二色性(CD)分析表明,它由无规结构组成或无结构。这表明EnvZ的HAMP结构域自身无法形成稳定结构,并且这种结构脆弱性可能对其在信号转导中的作用很重要。有趣的是,在Tar和EnvZ的嵌合蛋白Tez1A1中,用缬氨酸或亮氨酸取代EnvZ的HAMP结构域中的Ala(193),会导致组成型OmpC表型。对LA(RK)(A193L)的CD分析表明,这种突变的HAMP结构域具有相当多的二级结构,并且整个LA(RK)(A193L)的热稳定性比LA(RK)或仅结构域A的热稳定性显著降低,这表明具有A193L突变的HAMP结构域的结构影响下游结构域A的稳定性。这导致结构域A与突变的HAMP结构域协同热变性。根据最近解析的嗜热细菌HAMP结构域的核磁共振(NMR)结构(Hulko, M., Berndt, F., Gruber, M., Linder, J. U., Truffault, V., Schultz, A., Martin, J., Schultz, J. E., Lupas, A. N., and Coles, M. (2006) Cell 126, 929 - 940)对这些结果进行了讨论。