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Arginine‐95 is important for recruiting superoxide to the active site of the FerB flavoenzyme of Paracoccus?denitrificans Paracoccus?denitrificans

机译:精氨酸-95对于招募过量的超氧化物至关重要的位点,对帕拉卡克(Paracccus Ferb Flavo酶)的活性部位很重要?Denitriffans Paracoccus?Denitriffans

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摘要

Ferric reductase B (FerB) is a flavin mononucleotide ( FMN )‐containing NAD (P)H:acceptor oxidoreductase structurally close to the Gluconacetobacter?hansenii chromate reductase (ChrR). The crystal structure of ChrR was previously determined with a chloride bound proximal to FMN in the vicinity of Arg101, and the authors suggested that the anionic electron acceptors, chromate and uranyl tricarbonate, bind similarly. Here, we identify the corresponding arginine residue in FerB (Arg95) as being important for the reaction of FerB with superoxide. Four mutants at position 95 were prepared and found kinetically to have impaired capacity for superoxide binding. Stopped‐flow data for the flavin cofactor showed that the oxidative step is rate limiting for catalytic turnover. The findings are consistent with a role for FerB as a superoxide scavenging contributor.
机译:铁还原酶B(FERB)是一种黄素单核苷酸(FMN) - NAD(P)H:受体氧化还原酶在结构上靠近葡聚糖杆菌(CHRR)。 在Arg101附近的氯化物邻近FMN的氯化物结合的氯化物晶体结构,作者表明阴离子电子受体,铬酸盐和三碳酸酯,同样染色。 在此,我们鉴定FERB(ARG95)中的相应的精氨酸残基,对于FERB与超氧化物的反应很重要。 制备95位的四个突变体,并在动力学上发现了过量氧化物结合的能力受损。 Flavin Cofactor的停止流动数据表明,氧化步骤是催化转换的速率限制。 该研究结果与FERB作为超氧化物清除贡献者的作用一致。

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