Univ. Grenoble Alpes, LCBM/PMB, and CEA, IRTSV/CBM/PMB, and CNRS, LCBM UMR 5249, PMB, 38000 Grenoble (France).
Angew Chem Int Ed Engl. 2014 Aug 25;53(35):9365-8. doi: 10.1002/anie.201405333. Epub 2014 Jul 7.
Singlet oxygen ((1)O2) plays an important role in oxidative stress in all types of organisms, most of them being able to mount a defense against this oxidant. Recently, zinc finger proteins have been proposed to be involved in its cellular detection but the molecular basis of this process still remains unknown. We have studied the reactivity of a Zn(Cys)4 zinc finger with (1)O2 by combinations of spectroscopic and analytical techniques, focusing on the products formed and the kinetics of the reaction. We report that the cysteines of this zinc finger are oxidized to sulfinates by (1)O2. The reaction of the ZnS4 core with (1)O2 is very fast and efficient with almost no physical quenching of (1)O2. A drastic (ca. five orders of magnitude) decrease of the Zn(2+) binding constant was observed upon oxidation. This suggests that the Zn(Cys)4 zinc finger proteins would release their Zn(2+) ion and unfold upon reaction with (1)O2 under cellular conditions and that zinc finger sites are likely targets for (1)O2.
单线态氧((1)O2)在所有类型的生物体的氧化应激中起着重要作用,其中大多数生物体能够对这种氧化剂产生防御。最近,锌指蛋白被认为参与了其细胞检测,但这一过程的分子基础仍不清楚。我们通过光谱和分析技术的组合研究了 Zn(Cys)4 锌指与(1)O2 的反应性,重点研究了形成的产物和反应动力学。我们报告说,(1)O2 将这个锌指的半胱氨酸氧化成亚磺酸盐。ZnS4 核与(1)O2 的反应非常快且有效,几乎没有(1)O2 的物理猝灭。在氧化过程中观察到 Zn(2+)结合常数急剧下降(约五个数量级)。这表明,在细胞条件下,锌指蛋白与(1)O2 反应时会释放其 Zn(2+)离子并展开,并且锌指位点可能是(1)O2 的靶标。