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Deciphering metal ion preference and primary coordination sphere robustness of a designed zinc finger with high-resolution mass spectrometry

机译:用高分辨率质谱法解密金属离子偏好和主要协调球体的设计锌手指的鲁棒性

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摘要

Small zinc finger (ZnF) motifs are promising molecular scaffolds for protein design owing to their structural robustness and versatility. Moreover, their characterization provides important insights into protein folding in general. ZnF motifs usually possess an exceptional specificity and high affinity towards Zn(II) ion to drive folding. While the Zn(II) ion is canonically coordinated by two cysteine and two histidine residues, many other coordination spheres also exist in small ZnFs, all having four amino acid ligands. Here we used high-resolution mass spectrometry to study metal ion binding specificity and primary coordination sphere robustness of a designed zinc finger, named MM1. Based on the results, MM1 possesses high specificity for zinc with sub-micromolar binding affinity. Surprisingly, MM1 retains metal ion binding affinity even in the presence of selective alanine mutations of the primary zinc coordinating amino acid residues.
机译:小锌手指(ZNF)图案是由于其结构稳健性和多功能性而有前途的蛋白质设计的分子支架。 此外,它们的表征在一般方面提供了对蛋白质折叠的重要见解。 ZnF基序通常具有卓越的特异性和对Zn(ii)离子的高亲和力以驱动折叠。 虽然Zn(II)离子由两个半胱氨酸和两个组氨酸残基协调,但许多其他协调球也存在于小ZnF中,均具有四个氨基酸配体。 在这里,我们使用高分辨率质谱来研究设计的锌指的金属离子结合特异性和主要协调球体的鲁棒性,命名为MM1。 基于该结果,MM1对具有亚微摩尔结合亲和力的锌具有高特异性。 令人惊讶的是,即使在初级锌协调氨基酸残基的选择性丙氨酸突变存在下,MM1也保持金属离子结合亲和力。

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