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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Tryptophan Cu(I)-pi interaction fine-tunes the metal binding properties of the bacterial metallochaperone CusF
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Tryptophan Cu(I)-pi interaction fine-tunes the metal binding properties of the bacterial metallochaperone CusF

机译:色氨酸Cu(I)-pi相互作用可微调细菌金属伴侣蛋白CusF的金属结合特性

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摘要

The periplasmic metallochaperone CusF coordinates Cu(I) and Ag(I) through a unique site consisting of a Met(2)His motif as well as a Cu(I)-pi interaction between a nearby tryptophan, W44, and the metal ion. Through mutational analyses we investigate here the role that W44 in CusF plays in metal coordination. Nuclear magnetic resonance spectra show that the specificity of CusF for Cu(I) and Ag(I) is not altered by mutation of W44. X-ray absorption spectroscopy studies reveal that W44 protects the bound Cu(I) from oxidation as well as from adventitious ligands. Competition assays demonstrate that W44 does not significantly contribute to the affinity of CusF for metal, but that substitution of W44 by methionine, which forms a fourth Cu(I) ligand, substantially increases the affinity. These studies indicate that W44 is important in maintaining a moderate-affinity and solvent-shielded three-coordinate environment for Cu(I), which has implications for the function of CusF as a metallochaperone.
机译:周质金属陪伴酮CusF通过一个独特的位点协调Cu(I)和Ag(I),该位点由Met(2)His图案以及附近色氨酸W44和金属离子之间的Cu(I)-pi相互作用组成。通过突变分析,我们在这里研究了CusF中W44在金属配位中的作用。核磁共振光谱表明,CusF对Cu(I)和Ag(I)的特异性不会因W44突变而改变。 X射线吸收光谱研究表明,W44保护结合的Cu(I)免受氧化以及不定配体的影响。竞争分析表明,W44不会显着提高CusF对金属的亲和力,但是W44被蛋氨酸取代形成了第四个Cu(I)配体,大大提高了亲和力。这些研究表明,W44对于维持适度亲和和溶剂屏蔽的Cu(I)三坐标环境非常重要,这对CusF作为金属伴侣分子的功能具有影响。

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