ESI-MS analysis of Cu(I) binding to apo and Zn7 human metallothionein 1A, 2, and 3 identifies the formation of a similar series of metallated species with no individual isoform optimization for Cu(I).

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Metallomics Pub Date : 2024-04-05 DOI:10.1093/mtomcs/mfae015
Adyn Melenbacher, Martin J Stillman
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引用次数: 0

Abstract

Metallothioneins (MTs) are cysteine-rich proteins involved in metal homeostasis, heavy metal detoxification, and protection against oxidative stress. Whether the four mammalian MT isoforms exhibit different metal binding properties is not clear. In this paper, the Cu(I) binding properties of the apo MT1A, apo MT2, and apo MT3 are compared and the relative Cu(I) binding affinities are reported. In all three isoforms, Cu4, Cu6, and Cu10 species form cooperatively, and MT1A and MT2 also form a Cu13 species. The Cu(I) binding properties of Zn7-MT1A, Zn7-MT2, and Zn7-MT3 are compared systematically using isotopically pure 63Cu(I) and 68Zn(II). The species formed in each MT isoform were detected through electrospray ionization-mass spectrometry and further characterized using room temperature phosphorescence spectroscopy. The mixed metal Cu, Zn species forming in MT1A, MT2, and MT3 have similar stoichiometries and their emission spectral properties indicate that analogous clusters form in the three isoforms. Three parallel metallation pathways have been proposed through analysis of the detailed Cu, Zn speciation in MT1A, MT2, and MT3. Pathway ① results in Cu5Zn5-MT and Cu9Zn3-MT. Pathway ② involves Cu6Zn4-MT and Cu10Zn2-MT. Pathway ③ includes Cu8Zn4-MT. Speciation analysis indicates that Pathway ② is the preferred pathway for MT2. This is also evident in the phosphorescence spectra with the 750 nm emission from Cu6Zn4-MT being most prominent in MT2. We see no evidence for different MT isoforms being optimized or exhibiting preferences for certain metals. We discuss the probable stoichiometry for MTs in vivo based on the in vitro determined binding constants.

对 Cu(I)与 apo 和 Zn7 人金属硫蛋白 1A、2 和 3 的结合进行的 ESI-MS 分析表明,形成了一系列类似的金属化物种,但没有对 Cu(I)进行单独的同工酶优化。
金属硫蛋白(MTs)是富含半胱氨酸的蛋白质,参与金属平衡、重金属解毒和氧化应激保护。哺乳动物的四种 MT 异构体是否表现出不同的金属结合特性尚不清楚。本文比较了载脂蛋白 MT1A、载脂蛋白 MT2 和载脂蛋白 MT3 的 Cu(I)结合特性,并报告了其相对 Cu(I)结合亲和力。在所有这三种同工酶中,Cu4、Cu6 和 Cu10 三种物质都是合作形成的,MT1A 和 MT2 还形成了一种 Cu13 物质。利用同位素纯的 63Cu(I) 和 68Zn(II),系统地比较了 Zn7-MT1A、Zn7-MT2 和 Zn7-MT3 的 Cu(I) 结合特性。通过 ESI-MS 对每种 MT 异构体中形成的物种进行了检测,并使用室温磷光光谱对其进行了进一步表征。在 MT1A、MT2 和 MT3 中形成的混合金属铜、锌物种具有相似的化学计量,其发射光谱特性表明在这三种异构体中形成了类似的簇。通过分析 MT1A、MT2 和 MT3 中详细的铜、锌标本,提出了三种平行的金属化途径。途径①产生 Cu5Zn5-MT 和 Cu9Zn3-MT。途径②涉及 Cu6Zn4-MT 和 Cu10Zn2-MT。途径③包括 Cu8Zn4-MT。物种分析表明,途径②是 MT2 的首选途径。这一点在磷光光谱中也很明显,在 MT2 中,Cu6Zn4-MT 的 750 nm 发射最为突出。我们没有发现证据表明不同的金属硫蛋白同工酶对某些金属进行了优化或表现出偏好。我们根据体外测定的结合常数讨论了 MT 在体内的可能化学计量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Metallomics
Metallomics 生物-生化与分子生物学
CiteScore
7.00
自引率
5.90%
发文量
87
审稿时长
1 months
期刊介绍: Global approaches to metals in the biosciences
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