Jacob Claus, Knight Iona, Winyard Paul G
School of Pharmacy, Saarland University, P.O. Box 151150, D-66041 Saarbrücken, Germany.
Biol Chem. 2006 Oct-Nov;387(10-11):1385-97. doi: 10.1515/BC.2006.174.
The last decade has witnessed an increased interest in cysteine modifications such as sulfenic and sulfinic acids, thiyl radicals, sulfenyl-amides and thiosulfinates, which come together to enable redox sensing, activation, catalysis, switching and cellular signalling. While glutathionylation, sulfenyl-amide formation and disulfide activation are examples of relatively simple redox responses, the sulfinic acid switch in peroxiredoxin enzymes is part of a complex signalling system that involves sulfenic and sulfinic acids and interacts with kinases and sulfiredoxin. Although the in vivo evaluation of sulfur species is still complicated by a lack of appropriate analytical techniques, research into biological sulfur species has gained considerable momentum and promises further excitement in the future.
在过去十年中,人们对诸如亚磺酸、亚磺酸盐、硫自由基、亚磺酰胺和亚磺酸盐等半胱氨酸修饰的兴趣与日俱增,这些修饰共同作用,实现氧化还原传感、激活、催化、转换和细胞信号传导。虽然谷胱甘肽化、亚磺酰胺形成和二硫键激活是相对简单的氧化还原反应的例子,但过氧化物酶中的亚磺酸开关是一个复杂信号系统的一部分,该系统涉及亚磺酸和亚磺酸盐,并与激酶和硫氧还蛋白相互作用。尽管由于缺乏合适的分析技术,体内硫物种的评估仍然很复杂,但对生物硫物种的研究已经取得了相当大的进展,并有望在未来带来更多令人兴奋的成果。