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Bivalent-metal binding to CheY protein. Effect on protein conformation.

机译:与CheY蛋白的二价金属结合。对蛋白质构象的影响。

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摘要

CheY is a 14 kDa cytoplasmic protein that is activated by the transfer of a phosphoryl moiety to Asp-57 from phosphoCheA during signal transduction in bacterial chemotaxis. It has been established that metal ions are necessary for the autophosphorylation of CheA, the transfer of phosphate from phosphoCheA to CheY and the autodephosphorylation of phosphoCheY. In this work, paramagnetic relaxation enhancement has been used in conjunction with one- and two-dimensional n.m.r. to study the interaction of CheY with bivalent metal ions. These studies have led to the discovery of two conformations of the protein in water, corresponding to the metal-free and the metal-bound states. Binding of bivalent cations like Mg2+, Ca2+, Sr2+, Zn2+ and Mn2+ results in a conformational change from the metal-free to the metal-bound state. Preliminary assignments of the aromatic proton resonances are reported. Comparison of phase-sensitive double-quantum-filtered COSY, homonuclear Hartmann-Hahn coherence transfer and nuclear Overhauser enhancement spectra from the metal-bound and metal-free protein indicates that Trp-58, Thr-87 and Tyr-106 are particularly affected by the conformational change involved, and that this change is limited to a small number of residues. In addition, homonuclear Hartmann-Hahn coherence transfer experiments with paramagnetic Mn2+ show significant suppression of cross-peaks associated with Trp-58 and several neighbouring residues. Comparison of the distances estimated using n.m.r. with the CheY crystal structure indicates that the n.m.r. results are consistent with bivalent metal binding at the cluster of aspartic acid residues that includes Asp-13 and Asp-57. These studies also demonstrate the utility of paramagnetic metal-induced relaxation in conjunction with two-dimensional n.m.r. measurements for exploring ligand-binding sites.
机译:CheY是一种14 kDa的细胞质蛋白,在细菌趋化性的信号转导过程中,通过将磷酰基部分从phosphoCheA转移到Asp-57而被激活。已经确定金属离子对于CheA的自磷酸化,磷酸盐从phosphoCheA到CheY的转移以及phosphoCheY的自去磷酸化是必需的。在这项工作中,顺磁弛豫增强已与一维和二维n.m.r结合使用。研究CheY与二价金属离子的相互作用。这些研究导致发现了蛋白质在水中的两种构象,分别对应于无金属态和金属结合态。二价阳离子(如Mg2 +,Ca2 +,Sr2 +,Zn2 +和Mn2 +)的结合导致构象从无金属态转变为与金属结合态。报告了芳香族质子共振的初步分配。从金属结合蛋白和无金属蛋白对相敏感双量子滤波的COSY,同核Hartmann-Hahn相干转移和核Overhauser增强光谱的比较表明,Trp-58,Thr-87和Tyr-106受到以下影响涉及构象变化,并且这种变化仅限于少量残基。此外,使用顺磁性Mn2 +的同核Hartmann-Hahn相干转移实验显示出与Trp-58和几个相邻残基相关的交叉峰的显着抑制。比较使用n.m.r.具有CheY晶体结构的n.m.r.结果与包括Asp-13和Asp-57在内的天冬氨酸残基簇上的二价金属结合相符。这些研究还证明了顺磁性金属引起的弛豫与二维n.m.r.测量以探索配体结合位点。

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