1 Departamento de Biociencias, Facultad de Química, Universidad de la República , Montevideo, Uruguay .
2 Worm Biology Lab, Institut Pasteur de Montevideo , Montevideo, Uruguay .
Antioxid Redox Signal. 2018 Feb 20;28(6):407-409. doi: 10.1089/ars.2017.7464. Epub 2018 Jan 5.
The maintenance of thiol-redox homeostasis is vital to the survival of living organisms. Sulfur-based low-molecular weight compounds and proteins synthesized by cells provide efficient and specific ways to counteract oxidative stress and regulate cellular processes. For these tasks, most organisms share the glutathione and thioredoxin NADPH-dependent redox systems. However, in certain lineages, evolution has taken different paths that led to the emergence of novel cysteine-based low-molecular weight redox cofactors, around which new redox systems evolved. These include the sugar-based cysteinyl derivatives mycothiol and bacillithiol, and ergothioneine (EGT), which are present in different phyla from bacteria. Within Eukarya, some fungi contain EGT, whereas trypanothione is unique to species from the Euglenozoa family. This Forum compiles the state-of-the-art knowledge about these noncanonical redox systems of pathogenic organisms. The functions in physiology and pathogenicity, as well as structural and biochemical specializations that these system components evolved, are thoroughly discussed. Antioxid. Redox Signal. 28, 407-409.
硫醇-氧化还原平衡的维持对生物的生存至关重要。细胞合成的基于硫的小分子化合物和蛋白质为抵抗氧化应激和调节细胞过程提供了有效和特异的方法。对于这些任务,大多数生物体都共享谷胱甘肽和硫氧还蛋白 NADPH 依赖的氧化还原系统。然而,在某些谱系中,进化采取了不同的途径,导致新型基于半胱氨酸的小分子氧化还原辅因子的出现,围绕这些新的氧化还原系统进化。这些包括基于糖的半胱氨酸衍生物巯基乙胺和芽孢硫胺素,以及存在于细菌不同门的麦角硫因(EGT)。在真核生物中,一些真菌含有 EGT,而锥虫硫胺素是 Euglenozoa 科特有。本论坛汇集了关于这些致病生物体的非典型氧化还原系统的最新知识。深入讨论了这些系统成分在生理学和致病性方面的功能,以及它们进化出的结构和生化特化。抗氧化。氧化还原信号。28,407-409。