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Structural and mechanistic insights into type II trypanosomatid tryparedoxin-dependent peroxidases

机译:对II型锥虫锥虫毒素依赖性过氧化物酶的结构和机理研究

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摘要

TbTDPX (Trypanosoma brucei tryparedoxin-dependent peroxidase) is a genetically validated drug target in the fight against African sleeping sickness. Despite its similarity to members of the GPX (glutathione peroxidase) family, TbTDPX2 is functional as a monomer, lacks a selenocysteine residue and relies instead on peroxidatic and resolving cysteine residues for catalysis and uses tryparedoxin rather than glutathione as electron donor. Kinetic studies indicate a saturable Ping Pong mechanism, unlike selenium-dependent GPXs, which display infinite Km and Vmax values. The structure of the reduced enzyme at 2.1 Å (0.21 nm) resolution reveals that the catalytic thiol groups are widely separated [19 Å (0.19 nm)] and thus unable to form a disulphide bond without a large conformational change in the secondary-structure architecture, as reported for certain plant GPXs. A model of the oxidized enzyme structure is presented and the implications for small-molecule inhibition are discussed.
机译:TbTDPX(布鲁氏锥虫Tryparedoxin依赖性过氧化物酶)是对抗非洲昏睡病的一种经过基因验证的药物靶标。尽管TbTDPX2与GPX(谷胱甘肽过氧化物酶)家族的成员相似,但它可以作为单体发挥功能,缺少硒代半胱氨酸残基,而是依靠过氧化物和可分解的半胱氨酸残基来催化,并使用色霉毒素而不是谷胱甘肽作为电子供体。动力学研究表明可饱和的乒乓机制,与硒依赖的GPX不同,后者显示无限的Km和Vmax值。以2.1Å(0.21 nm)分辨率还原的酶的结构表明催化硫醇基团被广泛分离[19Å(0.19 nm)],因此在二级结构结构中没有较大构象变化的情况下无法形成二硫键,如某些工厂GPX所报道。提出了一种氧化酶结构的模型,并讨论了抑制小分子的意义。

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