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半乳糖化学感受器蛋白中的钙结合位点。晶体学和金属结合研究。

The calcium-binding site in the galactose chemoreceptor protein. Crystallographic and metal-binding studies.

作者信息

Vyas M N, Jacobson B L, Quiocho F A

机构信息

Howard Hughes Medical Institute, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Biol Chem. 1989 Dec 5;264(34):20817-21.

PMID:2684986
Abstract

We have determined the relative affinities in solution for various metals which bind to the lone calcium-binding site of the D-galactose-binding protein which resembles the EF-hand loop. In order of affinity the metals are: Ca2+ approximately Tb3+ approximately Pb2+ greater than Cd2+ greater than Sr2+ greater than Mg2+ much greater than Ba2+. The binding affinity for calcium (Kd = 2 microM) and the slow off-rate determined for terbium (1 x 10(-3) s-1) and that the metal-binding site is unperturbed by sugar binding argue for a structural role. Furthermore, we have crystallographically refined the structure of the binding protein with the calcium substituted by cadmium, compared it with the calcium-bound structure, and found them to be identical. The results of these structural and solution studies support the hypothesis that for a given metal-binding loop, cation hydration energy, size, and charge are major factors contributing to binding affinity.

摘要

我们已确定在溶液中各种金属与D-半乳糖结合蛋白的单个钙结合位点的相对亲和力,该蛋白类似于EF-手型环。按亲和力顺序排列,这些金属依次为:Ca2+ 近似于Tb3+ 近似于Pb2+ > Cd2+ > Sr2+ > Mg2+ 远大于Ba2+。对钙的结合亲和力(Kd = 2 microM)以及对铽测定的缓慢解离速率(1×10⁻³ s⁻¹),还有糖结合不会干扰金属结合位点,这些都表明其具有结构作用。此外,我们已通过晶体学方法精制了用镉取代钙后的结合蛋白结构,并将其与钙结合结构进行比较,发现二者相同。这些结构研究和溶液研究的结果支持了这样一个假说,即对于给定的金属结合环,阳离子水合能、大小和电荷是影响结合亲和力的主要因素。

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