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通过核磁共振光谱和定点诱变确定S100B上锌离子结合位点的位置。

Location of the Zn(2+)-binding site on S100B as determined by NMR spectroscopy and site-directed mutagenesis.

作者信息

Wilder Paul T, Baldisseri Donna M, Udan Ryan, Vallely Kristen M, Weber David J

机构信息

Molecular and Cell Biology Program, University of Maryland School of Medicine, 108 North Greene Street, Baltimore, Maryland 21201, USA.

出版信息

Biochemistry. 2003 Nov 25;42(46):13410-21. doi: 10.1021/bi035334q.

Abstract

In addition to binding Ca(2+), the S100 protein S100B binds Zn(2+) with relatively high affinity as confirmed using isothermal titration calorimetry (ITC; K(d) = 94 +/- 17 nM). The Zn(2+)-binding site on Ca(2+)-bound S100B was examined further using NMR spectroscopy and site-directed mutagenesis. Specifically, ITC measurements of S100B mutants (helix 1, H15A and H25A; helix 4, C84A, H85A, and H90A) were found to bind Zn(2+) with lower affinity than wild-type S100B (from 2- to >25-fold). Thus, His-15, His-25, Cys-84, His-85, and perhaps His-90 of S100B are involved in coordinating Zn(2+), which was confirmed by NMR spectroscopy. Previous studies indicate that the binding of Zn(2+) enhances calcium and target protein-binding affinities, which may contribute to its biological function. Thus, chemical shift perturbations observed here for residues in both EF-hand domains of S100B during Zn(2+) titrations could be detecting structural changes in the Ca(2+)-binding domains of S100B that are pertinent to its increase in Ca(2+)-binding affinity in the presence of Zn(2+). Furthermore, Zn(2+) binding causes helix 4 to extend by one full turn when compared to Ca(2+)-bound S100B. This change in secondary structure likely contributes to the increased binding affinity that S100B has for target peptides (i.e., TRTK peptide) in the presence of Zn(2+).

摘要

除了结合Ca(2+)外,S100蛋白S100B还以相对较高的亲和力结合Zn(2+),等温滴定量热法(ITC;K(d)=94±17 nM)证实了这一点。使用核磁共振光谱和定点诱变进一步研究了结合Ca(2+)的S100B上的Zn(2+)结合位点。具体而言,发现S100B突变体(螺旋1,H15A和H25A;螺旋4,C84A、H85A和H90A)的ITC测量结果显示,它们结合Zn(2+)的亲和力低于野生型S100B(低2至>25倍)。因此,S100B的His-15、His-25、Cys-84、His-85以及可能的His-90参与了Zn(2+)的配位,核磁共振光谱证实了这一点。先前的研究表明,Zn(2+)的结合增强了钙和靶蛋白的结合亲和力,这可能有助于其生物学功能。因此,在Zn(2+)滴定过程中,S100B两个EF手结构域中残基观察到的化学位移扰动可能检测到S100B的Ca(2+)结合结构域中的结构变化,这与在Zn(2+)存在下其Ca(2+)结合亲和力的增加有关。此外,与结合Ca(2+)的S100B相比,Zn(2+)结合导致螺旋4延伸一整圈。这种二级结构的变化可能有助于S100B在Zn(2+)存在下对靶肽(即TRTK肽)的结合亲和力增加。

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