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谷胱甘肽过氧化物酶 4(GPX4)利用硒来预防过氧化氢诱导的铁死亡。

Selenium Utilization by GPX4 Is Required to Prevent Hydroperoxide-Induced Ferroptosis.

机构信息

Helmholtz Zentrum München, Institute of Developmental Genetics, 85764 Neuherberg, Germany.

Heinrich-Heine University, Department of Neurology, Medical Faculty, 40255 Düsseldorf, Germany.

出版信息

Cell. 2018 Jan 25;172(3):409-422.e21. doi: 10.1016/j.cell.2017.11.048. Epub 2017 Dec 28.

Abstract

Selenoproteins are rare proteins among all kingdoms of life containing the 21 amino acid, selenocysteine. Selenocysteine resembles cysteine, differing only by the substitution of selenium for sulfur. Yet the actual advantage of selenolate- versus thiolate-based catalysis has remained enigmatic, as most of the known selenoproteins also exist as cysteine-containing homologs. Here, we demonstrate that selenolate-based catalysis of the essential mammalian selenoprotein GPX4 is unexpectedly dispensable for normal embryogenesis. Yet the survival of a specific type of interneurons emerges to exclusively depend on selenocysteine-containing GPX4, thereby preventing fatal epileptic seizures. Mechanistically, selenocysteine utilization by GPX4 confers exquisite resistance to irreversible overoxidation as cells expressing a cysteine variant are highly sensitive toward peroxide-induced ferroptosis. Remarkably, concomitant deletion of all selenoproteins in Gpx4 cells revealed that selenoproteins are dispensable for cell viability provided partial GPX4 activity is retained. Conclusively, 200 years after its discovery, a specific and indispensable role for selenium is provided.

摘要

硒蛋白是所有生命王国中罕见的蛋白质,其中包含 21 种氨基酸,即硒代半胱氨酸。硒代半胱氨酸类似于半胱氨酸,只是用硒取代了硫。然而,硒代巯基酸盐与硫代巯基酸盐催化的实际优势仍然是个谜,因为大多数已知的硒蛋白也存在含半胱氨酸的同源物。在这里,我们证明了必需的哺乳动物硒蛋白 GPX4 的硒代巯基酸盐催化对于正常胚胎发生出乎意料地不是必需的。然而,特定类型的中间神经元的存活却完全依赖于含硒代半胱氨酸的 GPX4,从而防止致命的癫痫发作。从机制上讲,GPX4 利用硒代半胱氨酸赋予了对不可逆过氧化物化的极高抗性,因为表达半胱氨酸变体的细胞对过氧化物诱导的铁死亡非常敏感。值得注意的是,Gpx4 细胞中所有硒蛋白的同时缺失表明,硒蛋白对于细胞活力不是必需的,只要保留部分 GPX4 活性即可。总之,在发现硒 200 年后,提供了一个具体而不可或缺的硒作用。

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