Chae H Z, Kang S W, Rhee S G, Stadtman E R
Laboratory of Biochemistry and the Laboratory of Cell Signaling, NHLBI, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 1996 Jun 28;271(26):15315-21. doi: 10.1074/jbc.271.26.15315.
The thiol-specific antioxidant protein (TSA) protects glutamine synthetase from inactivation by a metal-catalyzed oxidation (MCO) system comprised of dithiothreitol (DTT)/Fe3+/O2 but not by the ascorbate/Fe3+/O2 MCO system. The removal of sulfur-centered radicals or H2O2 has been proposed as the protective mechanism of TSA. Like catalase, TSA prevents the initiation of the rapid O2 uptake phase during MCO of DTT but causes only partial inhibition when added after the reaction is well into the propagation phase. Stoichiometric studies showed that the antioxidant property of TSA is, at least in part, due to its ability to catalyze the destruction of H2O2 by the overall reaction 2 RSH + H2O2 --> RSSR + H2O. Results of kinetic studies demonstrate that the removal of H2O2 by TSA correlates with its ability to protect glutamine synthetase from inactivation. In the presence of thioredoxin, TSA is more active, whereas C170S (an active mutant of TSA in which cysteine 170 was replaced by a serine) and open reading frame 6 (a human antioxidant protein homologous to TSA with only one conserved cysteine residue) are only slightly affected. The thiol specificity of the protective activity of TSA derives from the fact that the oxidized form of TSA can be converted back to its sulfhydryl form by treatment with thiols but not by ascorbate.
硫醇特异性抗氧化蛋白(TSA)可保护谷氨酰胺合成酶不被由二硫苏糖醇(DTT)/Fe3+/O2组成的金属催化氧化(MCO)系统灭活,但不能保护其不被抗坏血酸盐/Fe3+/O2 MCO系统灭活。有人提出清除以硫为中心的自由基或过氧化氢是TSA的保护机制。与过氧化氢酶一样,TSA可防止在DTT的MCO过程中快速吸氧阶段的起始,但在反应进入传播阶段后添加时仅引起部分抑制。化学计量研究表明,TSA的抗氧化特性至少部分归因于其通过总体反应2 RSH + H2O2 --> RSSR + H2O催化过氧化氢破坏的能力。动力学研究结果表明,TSA对过氧化氢的清除与其保护谷氨酰胺合成酶不被灭活的能力相关。在存在硫氧还蛋白的情况下,TSA更具活性,而C170S(TSA的一种活性突变体,其中半胱氨酸170被丝氨酸取代)和开放阅读框6(与TSA同源的一种人类抗氧化蛋白,仅具有一个保守的半胱氨酸残基)仅受到轻微影响。TSA保护活性的硫醇特异性源于这样一个事实,即TSA的氧化形式可以通过用硫醇处理而不是抗坏血酸盐处理转化回其巯基形式。