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巯基氧化还原酶通过分子内氢键调节其氧化还原性质。

Tuning of thioredoxin redox properties by intramolecular hydrogen bonds.

机构信息

Department of Biosciences, University of Oslo, Oslo, Norway.

出版信息

PLoS One. 2013 Jul 23;8(7):e69411. doi: 10.1371/journal.pone.0069411. Print 2013.

Abstract

Thioredoxin-like proteins contain a characteristic C-x-x-C active site motif and are involved in a large number of biological processes ranging from electron transfer, cellular redox level maintenance, and regulation of cellular processes. The mechanism for deprotonation of the buried C-terminal active site cysteine in thioredoxin, necessary for dissociation of the mixed-disulfide intermediate that occurs under thiol/disulfide mediated electron transfer, is not well understood for all thioredoxin superfamily members. Here we have characterized a 8.7 kD thioredoxin (BC3987) from Bacillus cereus that unlike the typical thioredoxin appears to use the conserved Thr8 side chain near the unusual C-P-P-C active site to increase enzymatic activity by forming a hydrogen bond to the buried cysteine. Our hypothesis is based on biochemical assays and thiolate pKa titrations where the wild type and T8A mutant are compared, phylogenetic analysis of related thioredoxins, and QM/MM calculations with the BC3987 crystal structure as a precursor for modeling of reduced active sites. We suggest that our model applies to other thioredoxin subclasses with similar active site arrangements.

摘要

硫氧还蛋白样蛋白含有特征性的 C-x-x-C 活性位点基序,参与了许多生物学过程,包括电子传递、细胞氧化还原水平的维持以及细胞过程的调节。在硫醇/二硫键介导的电子转移过程中,发生混合二硫键中间物的解离所需的硫氧还蛋白中埋置的 C 末端活性位点半胱氨酸的去质子化机制,对于所有硫氧还蛋白超家族成员来说都不是很清楚。在这里,我们已经对来自蜡状芽孢杆菌的 8.7kD 硫氧还蛋白(BC3987)进行了表征,与典型的硫氧还蛋白不同,它似乎利用保守的 Thr8 侧链附近不寻常的 C-P-P-C 活性位点来形成氢键与埋置的半胱氨酸结合,从而增加酶活性。我们的假设是基于生化测定和硫醇 pKa 滴定的比较,比较野生型和 T8A 突变体,对相关硫氧还蛋白进行系统发育分析,以及使用 BC3987 晶体结构进行 QM/MM 计算,作为建模还原活性位点的前体。我们建议我们的模型适用于具有类似活性位点排列的其他硫氧还蛋白子类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3737/3720550/a82c9a6671bf/pone.0069411.g001.jpg

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