金属硫蛋白
硫黄
化学
抑制性突触后电位
生物化学
生物
内分泌学
基因
有机化学
作者
Yasuhiro Shinkai,Yunjie Ding,Toru Matsui,George Devitt,Masahiro Akiyama,Tang‐Long Shen,Motohiro Nishida,Tomoaki Ida,Takaaki Akaike,Sumeet Mahajan,Jon M. Fukuto,Yasuteru Shigeta,Yoshito Kumagai
标识
DOI:10.1101/2023.10.19.563042
摘要
Abstract Cysteine-bound sulfane sulfur atoms in proteins have received much attention as key factors in cellular redox homeostasis. However, the role of sulfane sulfur in zinc regulation has been underinvestigated. We report here that cysteine-bound sulfane sulfur atoms serve as ligands to hold and release zinc ions in growth inhibitory factor (GIF)/metallothionein-3 (MT-3) with an unexpected C–S–S–Zn structure. Oxidation of such a zinc/persulfide cluster in Zn 7 GIF/MT-3 results in the release of zinc ions, and intramolecular tetrasulfide bridges in apo-GIF/MT-3 efficiently undergo S–S bond cleavage by thioredoxin to regenerate Zn 7 GIF/MT-3. Three-dimensional molecular modeling confirmed the critical role of the persulfide group in the thermostability and Zn-binding affinity of GIF/MT-3. The present discovery raises the fascinating possibility that the function of other Zn-binding proteins is controlled by sulfane sulfur.
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