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通过设计的α-螺旋肽进行位点选择性金属结合。

Site-selective metal binding by designed alpha-helical peptides.

作者信息

Matzapetakis Manolis, Pecoraro Vincent L

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109-1055, USA.

出版信息

J Am Chem Soc. 2005 Dec 28;127(51):18229-33. doi: 10.1021/ja055433m.

Abstract

It is known that the designed alpha-helical peptide family TRI [(Ac-G(LKALEEK)4G-CONH2)], containing single site substitution of a cysteine for a leucine, is capable of binding Cd(II) within a three-stranded coiled coil. The binding affinity of cadmium is dependent upon the site of substitution, with cysteine incorporated at the a site leading to cadmium complexes of higher affinity than when a d site was modified. In this work we have examined whether this differential binding affinity can be expressed in a di-cysteine-substituted peptide in order to develop site specificity within a designed system. The peptide TRI L9CL19C was used to determine whether significant differences in binding affinities at nearly proximal sites could be achieved in a short designed peptide. On the basis of 113Cd, 1H NMR, and circular dichroic spectroscopies, we have shown that 1 equiv of Cd(II) binds exclusively at the a site. Only after that position is filled does the second site become populated. Thus, the TRI system represents the first example where stoichiometrically equivalent peptides with different sequences form the framework for designing molecular assemblies that show site-specific ion recognition. We propose that the distinct metal affinities are due to the cysteine conformers at different substitution points along the peptide. Furthermore, we have shown that site selectivity in biomolecules can be encoded into relatively short peptides with helical sequences and, therefore, do not necessarily require the extensive protein scaffolds found in natural systems.

摘要

已知设计的α-螺旋肽家族TRI [(Ac-G(LKALEEK)4G-CONH2)],其中亮氨酸被半胱氨酸单点取代,能够在三链卷曲螺旋结构中结合Cd(II)。镉的结合亲和力取决于取代位点,在α位点掺入半胱氨酸会导致形成比在δ位点修饰时具有更高亲和力的镉配合物。在这项工作中,我们研究了这种不同的结合亲和力是否可以在二半胱氨酸取代的肽中表现出来,以便在设计的系统中实现位点特异性。肽TRI L9CL19C被用于确定在一个短的设计肽中,在几乎相邻的位点上结合亲和力是否能有显著差异。基于113Cd、1H NMR和圆二色光谱,我们表明1当量的Cd(II)仅在α位点结合。只有在该位点被占据后,第二个位点才会被占据。因此,TRI系统代表了第一个例子,其中具有不同序列的化学计量当量的肽形成了用于设计显示位点特异性离子识别的分子组装体的框架。我们提出,不同的金属亲和力是由于沿着肽的不同取代点处的半胱氨酸构象体。此外,我们已经表明,生物分子中的位点选择性可以编码到具有螺旋序列的相对短的肽中,因此不一定需要天然系统中发现的广泛的蛋白质支架。

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