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应答调节蛋白CheB和CheY对激酶CheA表现出竞争性结合。

The response regulators CheB and CheY exhibit competitive binding to the kinase CheA.

作者信息

Li J, Swanson R V, Simon M I, Weis R M

机构信息

Department of Chemistry, University of Massachusetts, Amherst 01003, USA.

出版信息

Biochemistry. 1995 Nov 14;34(45):14626-36. doi: 10.1021/bi00045a003.

Abstract

The autophosphorylating kinase CheA of the bacterial chemosensory signaling pathway donates a phosphoryl group to either of two regulator proteins, CheY or the receptor methylesterase (CheB). With isothermal titration calorimetry, it was demonstrated that CheA and CheA fragment composed of amino acid residues 1-233 (CheA1-233) bound to CheY with similar dissociation constants of 2.0 and 1.2 microM at 298 K, respectively, indicating that the CheY binding site is wholly within the 1-233 amino acid locus. CheB bound to CheA1-233 with a KD of 3.2 microM, and also bound to intact CheA with the same affinity. CheY was found to complete with CheB for binding to CheA1-233, in spite of the low level of sequence identity between CheY and the regulatory domain of CheB. The competitive nature of CheY and CheB binding was determined in two independent sets of experiments: titration experiments in which either a CheB-CheA1-233 complex was titrated with CheY or CheB was titrated with a CheY-CheA1-233 complex, and competitive affinity chromatography experiments that used a Ni-NTA-chelating resin as an affinity matrix for complexes of the histidine-tagged CheA1-233 fragment and CheY or CheB. The effects of phosphorylation, binding-site mutations, and active-site mutations were also studied to probe the influence of conformational changes in CheY as a regulatory mechanism of CheY-CheA Interactions. Phosphorylated CheY, in the presence of excess EDTA, was found to have a 2-fold lower affinity for CheA1-233, and 6 mM Mg2+ further reduced the affinity of phosphorylated CheY for CheA1-233 (ca. 3-fold), although Mg2+ on its own had no effect on the interactions of either CheB or CheY with CheA1-233. The data thus indicate that phosphorylated CheY has a significantly lower affinity for CheA under physiological conditions. The idea that phosphorylation may induce a significant conformational change, reducing the strength of the CheY-CheA interaction, is supported by the relative values of the association constants measured for CheY active-site and binding-site mutants. A binding-site mutation (A103V) in CheY, which is remote from the site of phosphorylation produced a 10-fold reduction in Ka, whereas active-site mutations produced a modest (2-fold) reduction.

摘要

细菌化学传感信号通路中的自磷酸化激酶CheA将磷酸基团转移给两种调节蛋白之一,即CheY或受体甲基酯酶(CheB)。通过等温滴定量热法表明,CheA和由氨基酸残基1 - 233组成的CheA片段(CheA1 - 233)在298 K时与CheY结合,解离常数分别为2.0和1.2 microM,相似,这表明CheY结合位点完全位于1 - 233氨基酸区域内。CheB与CheA1 - 233结合的KD为3.2 microM,并且以相同的亲和力与完整的CheA结合。尽管CheY与CheB的调节结构域之间的序列同一性水平较低,但发现CheY与CheB竞争结合CheA1 - 233。CheY和CheB结合的竞争性在两组独立实验中得以确定:滴定实验(其中用CheY滴定CheB - CheA1 - 233复合物或用CheY - CheA1 - 233复合物滴定CheB)以及竞争性亲和色谱实验(该实验使用Ni - NTA螯合树脂作为组氨酸标签的CheA1 - 233片段与CheY或CheB复合物的亲和基质)。还研究了磷酸化、结合位点突变和活性位点突变的影响,以探究CheY构象变化作为CheY - CheA相互作用调节机制的影响。发现在过量EDTA存在下,磷酸化的CheY对CheA1 - 233的亲和力降低2倍,并且6 mM Mg2 +进一步降低了磷酸化的CheY对CheA1 - 233的亲和力(约3倍),尽管Mg2 +本身对CheB或CheY与CheA1 - 233的相互作用没有影响。因此,数据表明在生理条件下,磷酸化的CheY对CheA的亲和力显著降低。磷酸化可能诱导显著的构象变化,降低CheY - CheA相互作用强度的观点得到了CheY活性位点和结合位点突变体结合常数相对值的支持。CheY中远离磷酸化位点的结合位点突变(A103V)使Ka降低10倍,而活性位点突变导致适度(2倍)降低。

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