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首页> 外文期刊>Biochemistry >The Structure of an Oxalate Oxidoreductase Provides Insight into Microbial 2-Oxoacid Metabolism
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The Structure of an Oxalate Oxidoreductase Provides Insight into Microbial 2-Oxoacid Metabolism

机译:草酸氧化还原酶的结构提供了微生物2-氧代酸代谢的见解。

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摘要

Thiamine pyrophosphate (TPP), a derivative of vitamin B-1, is a versatile and ubiquitous cofactor. When coupled with [4Fe-4S] clusters in microbial 2-oxoacid:ferredoxin oxidoreductases (OFORs), TPP is involved in catalyzing low-potential redox reactions that are important for the synthesis of key metabolites and the reduction of N-2, H+, and CO2. We have determined the high-resolution (2.27 angstrom) crystal structure of the TPP-dependent oxalate oxidoreductase (OOR), an enzyme that allows microbes to grow on oxalate, a widely occurring dicarboxylic acid that is found in soil and freshwater and is responsible for kidney stone disease in humans. OOR catalyzes the anaerobic oxidation of oxalate, harvesting the low-potential electrons for use in anaerobic reduction and fixation of CO2. We compare the OOR structure to that of the only other structurally characterized OFOR family member, pyruvate:ferredoxin oxidoreductase. This side-by-side structural analysis highlights the key similarities and differences that are relevant for the chemistry of this entire class of TPP-utilizing enzymes.
机译:硫胺素焦磷酸酯(TPP)是维生素B-1的衍生物,是一种多用途且普遍存在的辅因子。当与微生物2-氧合酸:铁氧还蛋白氧化还原酶(OFOR)中的[4Fe-4S]簇结合时,TPP参与催化低电位氧化还原反应,这对于关键代谢产物的合成和N-2,H +,和二氧化碳。我们已经确定了TPP依赖性草酸盐氧化还原酶(OOR)的高分辨率(2.27埃)晶体结构,该酶可以使微生物在草酸盐上生长,草酸盐是一种广泛存在的二元羧酸,在土壤和淡水中均存在,并与人类的肾结石病。 OOR催化草酸盐的厌氧氧化,收集低电位电子,用于厌氧还原和固定CO2。我们将OOR结构与仅有的其他结构特征OFOR家族成员丙酮酸:铁氧还蛋白氧化还原酶进行了比较。这种并排的结构分析突出显示了与整类利用TPP的酶的化学性质相关的关键相似点和不同点。

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