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金属硫蛋白对必需和有毒金属离子的亲和力、选择性和结构域特异性的热力学起源。

Thermodynamic origin of the affinity, selectivity, and domain specificity of metallothionein for essential and toxic metal ions.

机构信息

Department of Chemistry, 6128 Burke Laboratory, Dartmouth College, Hanover, NH 03755, USA.

Waters | Wyatt Technology Corporation, 6330 Hollister Avenue, Goleta, CA 93117, USA.

出版信息

Metallomics. 2024 Oct 4;16(10). doi: 10.1093/mtomcs/mfae041.

DOI:10.1093/mtomcs/mfae041
PMID:39289027
Abstract

The small Cys-rich protein metallothionein (MT) binds several metal ions in clusters within two domains. While the affinity of MT for both toxic and essential metals has been well studied, the thermodynamics of this binding has not. We have used isothermal titration calorimetry measurements to quantify the change in enthalpy (ΔH) and change in entropy (ΔS) when metal ions bind to the two ubiquitous isoforms of MT. The seven Zn2+ that bind sequentially at pH 7.4 do so in two populations with different coordination thermodynamics, an initial four that bind randomly with individual tetra-thiolate coordination and a subsequent three that bind with bridging thiolate coordination to assemble the metal clusters. The high affinity of MT for both populations is due to a very favourable binding entropy that far outweighs an unfavourable binding enthalpy. This originates from a net enthalpic penalty for Zn2+ displacement of protons from the Cys thiols and a favourable entropic contribution from the displaced protons. The thermodynamics of other metal ions binding to MT were determined by their displacement of Zn2+ from Zn7MT and subtraction of the Zn2+-binding thermodynamics. Toxic Cd2+, Pb2+, and Ag+, and essential Cu+, also bind to MT with a very favourable binding entropy but a net binding enthalpy that becomes increasingly favourable as the metal ion becomes a softer Lewis acid. These thermodynamics are the origin of the high affinity, selectivity, and domain specificity of MT for these metal ions and the molecular basis for their in vivo binding competition.

摘要

富含半胱氨酸的小蛋白金属硫蛋白 (MT) 在两个结构域内将几个金属离子簇结合在一起。虽然 MT 对有毒和必需金属的亲和力已经得到了很好的研究,但这种结合的热力学性质尚未得到研究。我们使用等温滴定量热法测量来量化金属离子与两种普遍存在的 MT 同工型结合时焓变 (ΔH) 和熵变 (ΔS) 的变化。在 pH 值为 7.4 时,七个 Zn2+ 依次结合,分为两种具有不同配位热力学的群体,最初的四个 Zn2+ 以单个四硫代配位随机结合,随后的三个 Zn2+ 以桥接硫代配位结合以组装金属簇。MT 对两种群体都具有高亲和力,这是由于非常有利的结合熵远远超过不利的结合焓。这源于 Zn2+ 从 Cys 硫醇取代质子的净焓罚和取代质子的有利熵贡献。其他金属离子与 MT 结合的热力学性质是通过它们从 Zn7MT 中置换 Zn2+ 并减去 Zn2+ 结合热力学来确定的。有毒的 Cd2+、Pb2+ 和 Ag+以及必需的 Cu+也与 MT 结合,具有非常有利的结合熵,但净结合焓随着金属离子成为更软的路易斯酸而变得越来越有利。这些热力学是 MT 对这些金属离子具有高亲和力、选择性和结构域特异性以及它们在体内结合竞争的分子基础的来源。

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