Shukla D, Matsumura P
Department of Microbiology and Immunology, University of Illinois at Chicago 60612, USA.
J Biol Chem. 1995 Oct 13;270(41):24414-9. doi: 10.1074/jbc.270.41.24414.
CheY is the response regulator of Escherichia coli chemotaxis and is one of the best studied response regulators of the two-component signaling system. CheY can receive phosphate from the histidine kinase, CheA. Phospho-CheY interacts with the motor-switch complex to induce clockwise flagellar rotation, thus causing the cell to tumble. We used an enzyme-linked immunosorbent assay to study the direct interaction between the kinase, CheA, and the regulator, CheY. The products of random, suppressor, and site-specific cheY mutants were assayed for their ability to bind CheA. Nine mutants showed altered binding. We sequenced and mapped these point mutations on the crystal structure of CheY, and a high degree of spatial clustering was revealed, indicating that this region of CheY is involved in CheA binding. Interestingly, five of these altered binding mutants were previously defined as being involved in motor-switch binding interactions. This suggested a possible overlap between the motor-switch binding and CheA binding surfaces of CheY. Using CheY (Trp-58) fluorescence quenching, we determined the equilibrium dissociation constants of CheA (124-257) binding for these CheY mutants. The results from the fluorescence quenching are in close agreement with our initial enzyme-linked immunosorbent assay results. Therefore, we propose that the CheA and the motor binding surfaces on CheY partially overlap and that this overlap allows CheY to interact with either the CheA or the flagellar motor, depending on its signaling (phosphorylation) state.
CheY是大肠杆菌趋化作用的应答调节因子,也是双组分信号系统中研究最为深入的应答调节因子之一。CheY可以从组氨酸激酶CheA接收磷酸基团。磷酸化的CheY与马达开关复合体相互作用,诱导鞭毛顺时针旋转,从而使细胞翻滚。我们使用酶联免疫吸附测定法研究激酶CheA和调节因子CheY之间的直接相互作用。对随机、抑制和位点特异性cheY突变体的产物进行了结合CheA能力的测定。九个突变体表现出结合改变。我们对这些点突变进行了测序,并将其定位到CheY的晶体结构上,结果显示出高度的空间聚集性,表明CheY的这一区域参与CheA的结合。有趣的是,这些结合改变的突变体中有五个之前被定义为参与马达开关结合相互作用。这表明CheY的马达开关结合表面和CheA结合表面可能存在重叠。利用CheY(色氨酸-58)荧光猝灭,我们测定了这些CheY突变体与CheA(124 - 257)结合的平衡解离常数。荧光猝灭的结果与我们最初的酶联免疫吸附测定结果高度一致。因此,我们提出CheY上的CheA结合表面和马达结合表面部分重叠而且这种重叠使得CheY能够根据其信号(磷酸化)状态与CheA或鞭毛马达相互作用。