首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Plant Thioredoxin CDSP32 Regenerates 1-Cys Methionine Sulfoxide Reductase B Activity through the Direct Reduction of Sulfenic Acid
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Plant Thioredoxin CDSP32 Regenerates 1-Cys Methionine Sulfoxide Reductase B Activity through the Direct Reduction of Sulfenic Acid

机译:植物硫氧还蛋白CDSP32通过直接还原亚磺酸来再生1-Cys甲硫氨酸亚砜还原酶B的活性

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摘要

Thioredoxins (Trxs) are ubiquitous enzymes catalyzing the reduction of disulfide bonds, thanks to a CXXC active site. Among their substrates, 2-Cys methionine sulfoxide reductases B (2-Cys MSRBs) reduce the R diastereoisomer of methionine sulfoxide (MetSO) and possess two redox-active Cys as follows: a catalytic Cys reducing MetSO and a resolving one, involved in disulfide bridge formation. The other MSRB type, 1-Cys MSRBs, possesses only the catalytic Cys, and their regeneration mechanisms by Trxs remain unclear. The plant plastidial Trx CDSP32 is able to provide 1-Cys MSRB with electrons. CDSP32 includes two Trx modules with one potential active site 219CGPC222 and three extra Cys. Here, we investigated the redox properties of recombinant Arabidopsis CDSP32 and delineated the biochemical mechanisms of MSRB regeneration by CDSP32. Free thiol titration and 4-acetamido-4′-maleimidyldistilbene-2,2′-disulfonic acid alkylation assays indicated that the Trx possesses only two redox-active Cys, very likely the Cys219 and Cys222. Protein electrophoresis analyses coupled to mass spectrometry revealed that CDSP32 forms a heterodimeric complex with MSRB1 via reduction of the sulfenic acid formed on MSRB1 catalytic Cys after MetSO reduction. MSR activity assays using variable CDSP32 amounts revealed that MSRB1 reduction proceeds with a 1:1 stoichiometry, and redox titrations indicated that CDSP32 and MSRB1 possess midpoints potentials of −337 and −328 mV at pH 7.9, respectively, indicating that regeneration of MSRB1 activity by the Trx through sulfenic acid reduction is thermodynamically feasible in physiological conditions.
机译:硫氧还蛋白(Trxs)是一种普遍存在的酶,由于具有CXXC活性位点,可催化二硫键的还原。在它们的底物中,2-Cys甲硫氨酸亚砜还原酶B(2-Cys MSRBs)还原甲硫氨酸亚砜(MetSO)的R非对映异构体,并具有以下两个氧化还原活性Cys:催化Cys还原MetSO和一个可分解的Cys,涉及二硫化物。桥梁形成。其他MSRB类型的1-Cys MSRB仅具有催化Cys,其通过Trxs的再生机理仍不清楚。植物质体Trx CDSP32能够为1-Cys MSRB提供电子。 CDSP32包含两个Trx模块,一个潜在的活性位点 219 CGPC 222 和三个额外的Cys。在这里,我们研究了重组拟南芥CDSP32的氧化还原特性,并描述了CDSP32再生MSRB的生化机制。游离硫醇滴定法和4-乙酰氨基-4'-马来酰亚胺基二硅烷基-2,2'-二磺酸烷基化测定表明,Trx仅具有两个氧化还原活性的Cys,很可能是Cys 219 和Cys 222 。结合质谱的蛋白质电泳分析表明,CDSP32在MetSO还原后通过还原MSRB1催化Cys上形成的磺酸,与MSRB1形成异二聚体复合物。使用可变CDSP32量的MSR活性测定表明,MSRB1的还原以1:1的化学计量进行,氧化还原滴定表明CDSP32和MSRB1在pH 7.9时分别具有-337和-328 mV的中点电位,表明MSRB1活性通过在生理条件下,通过亚硫酸还原制得的Trx在热力学上是可行的。

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