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含磷化合物与CheY蛋白结合的特异性和亲和力。

Specificity and affinity of binding of phosphate-containing compounds to CheY protein.

作者信息

Kar L, De Croos P Z, Roman S J, Matsumura P, Johnson M E

机构信息

Department of Medicinal Chemistry and Pharmacognosy, University of Illinois, Chicago 60680.

出版信息

Biochem J. 1992 Oct 15;287 ( Pt 2)(Pt 2):533-43. doi: 10.1042/bj2870533.

Abstract

1H- and 31P-n.m.r. have been used to study the interaction of the bacterial chemotaxis protein, CheY, with ATP and a variety of other phosphates in the presence and absence of bivalent metal ions. In the metal-bound conformation, CheY will bind nucleotide phosphates and phosphates in general, while in the metal-free conformation CheY loses its affinity for phosphates. In the presence of low concentrations of nitroxide-spin-labelled ATP (SL-ATP), specific proton resonances of metal-bound CheY are suppressed, indicating that ATP binds to a specific site on this metal-bound form of the protein. These studies also show that the same resonances are affected by the binding of SL-ATP and Mn2+, indicating that the phosphate- and metal-binding sites are close to each other and to Asp-57 (the site of phosphorylation in CheY). 1H- and 31P-n.m.r. studies using ATP, GTP, TTP, UTP, ADP, AMP and inorganic phosphates show that the binding is not specific for adenine, and does not involve the base directly, but is mediated primarily by the phosphate groups. Experiments with a phosphorylation mutant (Asp-13-->Asn) suggest that the observed phosphate binding and activation of CheY by phosphorylation may be related. Our results indicate that the conformational change and charge interactions brought about by the binding of a metal ion at the active site are required for CheY to interact with a phosphate. These studies also demonstrate the utility of spin-label-induced relaxation in conjunction with two-dimensional-n.m.r. measurements for exploring ligand-binding sites.

摘要

1H-核磁共振和31P-核磁共振已被用于研究细菌趋化蛋白CheY在存在和不存在二价金属离子的情况下与ATP及多种其他磷酸盐的相互作用。在与金属结合的构象中,CheY通常会结合核苷酸磷酸盐和磷酸盐,而在无金属的构象中,CheY失去了对磷酸盐的亲和力。在低浓度的氮氧化物自旋标记ATP(SL-ATP)存在下,与金属结合的CheY的特定质子共振受到抑制,这表明ATP结合到该蛋白质与金属结合形式的特定位点上。这些研究还表明,相同的共振受到SL-ATP和Mn2+结合的影响,这表明磷酸盐结合位点和金属结合位点彼此靠近,并且靠近Asp-57(CheY中的磷酸化位点)。使用ATP、GTP、TTP、UTP、ADP、AMP和无机磷酸盐的1H-核磁共振和31P-核磁共振研究表明,这种结合对腺嘌呤不具有特异性,不直接涉及碱基,而是主要由磷酸基团介导。对磷酸化突变体(Asp-13→Asn)的实验表明,观察到的磷酸盐结合以及磷酸化对CheY的激活可能有关。我们的结果表明,CheY与磷酸盐相互作用需要活性位点上金属离子结合所引起的构象变化和电荷相互作用。这些研究还证明了自旋标记诱导的弛豫与二维核磁共振测量相结合在探索配体结合位点方面的实用性。

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