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优化工程化钙调蛋白结合位点 1 中铀酰的配位,提供了对铀酰的亚纳摩尔亲和力和对铀酰与钙的强选择性。

Optimized Coordination of Uranyl in Engineered Calmodulin Site 1 Provides a Subnanomolar Affinity for Uranyl and a Strong Uranyl versus Calcium Selectivity.

机构信息

Aix Marseille Univ, CEA, CNRS, UMR 7265, BIAM, Interactions Protéine Métal, 13108Saint Paul-Lez-Durance, France.

Univ. Grenoble Alpes, CEA, CNRS, Grenoble INP, IRIG, SyMMES, 38000Grenoble, France.

出版信息

Inorg Chem. 2022 Dec 19;61(50):20480-20492. doi: 10.1021/acs.inorgchem.2c03185. Epub 2022 Dec 5.

Abstract

As an alpha emitter and chemical toxicant, uranium toxicity in living organisms is driven by its molecular interactions. It is therefore essential to identify main determinants of uranium affinity for proteins. Others and we showed that introducing a phosphoryl group in the coordination sphere of uranyl confers a strong affinity of proteins for uranyl. In this work, using calmodulin site 1 as a template, we modulate the structural organization of a metal-binding loop comprising carboxylate and/or carbonyl ligands and reach affinities for uranyl comparable to that provided by introducing a strong phosphoryl ligand. Shortening the metal binding loop of calmodulin site 1 from 12 to 10 amino acids in CaMΔ increases the uranyl-binding affinity by about 2 orders of magnitude to log  = 9.55 ± 0.11 ( = 280 ± 60 pM). Structural analysis by FTIR, XAS, and molecular dynamics simulations suggests an optimized coordination of the CaMΔ-uranyl complex involving bidentate and monodentate carboxylate groups in the uranyl equatorial plane. The main role of this coordination sphere in reaching subnanomolar dissociation constants for uranyl is supported by similar uranyl affinities obtained in a cyclic peptide reproducing CaMΔ binding loop. In addition, CaMΔ presents a uranyl/calcium selectivity of 10 that is even higher in the cyclic peptide.

摘要

作为一种α发射器和化学毒物,铀在生物体中的毒性是由其分子相互作用驱动的。因此,确定铀与蛋白质亲和力的主要决定因素至关重要。其他人以及我们之前的研究表明,在铀酰的配位环境中引入磷酸基团可以赋予蛋白质与铀酰的强烈亲和力。在这项工作中,我们以钙调蛋白位点 1 为模板,调节包含羧酸盐和/或羰基配体的金属结合环的结构组织,并达到与引入强磷酸配体相当的铀酰亲和力。将钙调蛋白位点 1 的金属结合环从 12 个氨基酸缩短到 10 个氨基酸(在 CaMΔ中),可使铀酰结合亲和力提高约 2 个数量级,达到 log = 9.55 ± 0.11(= 280 ± 60 pM)。通过傅里叶变换红外光谱(FTIR)、X 射线吸收光谱(XAS)和分子动力学模拟的结构分析表明,优化的 CaMΔ-铀酰配合物的配位涉及铀酰赤道平面中双齿和单齿羧酸盐基团。这种配位环境在达到亚纳摩尔铀酰离解常数方面的主要作用得到了类似的环状肽中获得的铀酰亲和力的支持,该环状肽可再现 CaMΔ 结合环。此外,CaMΔ 对铀酰/钙的选择性为 10,在环状肽中甚至更高。

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