首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >THE THREE-DIMENSIONAL STRUCTURE OF NAD(P)H-QUINONE REDUCTASE, A FLAVOPROTEIN INVOLVED IN CANCER CHEMOPROTECTION AND CHEMOTHERAPY - MECHANISM OF THE TWO-ELECTRON REDUCTION
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THE THREE-DIMENSIONAL STRUCTURE OF NAD(P)H-QUINONE REDUCTASE, A FLAVOPROTEIN INVOLVED IN CANCER CHEMOPROTECTION AND CHEMOTHERAPY - MECHANISM OF THE TWO-ELECTRON REDUCTION

机译:NAD(P)H-醌还原酶的三维结构,黄素蛋白参与了癌症的化学预防和化学治疗-两种电子还原的机理

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Quinone reductase [NAD(P)H:(quinone acceptor) oxidoreductase, EC 1.6.99.2], also called DT diaphorase, is a homodimeric FAD-containing enzyme that catalyzes obligatory NAD(P)H-dependent two-electron reductions of quinones and protects cells against the toxic and neoplastic effects of free radicals and reactive oxygen species arising from one-electron reductions, These two electron reductions participate in the reductive bioactivation of cancer chemotherapeutic agents such as mitomycin C in tumor cells, Thus, surprisingly, the same enzymatic reaction that protects normal cells activates cytotoxic drugs used in cancer chemotherapy, The 2.1-Angstrom crystal structure of rat liver quinone reductase reveals that the folding of a portion of each monomer is similar to that of flavodoxin, a bacterial FMN-containing protein, Two additional portions of the polypeptide chains are involved in dimerization and in formation of the two identical catalytic sites to which both monomers contribute, The crystallographic structures of two FAD-containing enzyme complexes (one containing NADP(+), the other containing duroquinone) suggest that direct hydride transfers from NAD(P)H to FAD and from FADH(2) to the quinone [which occupies the site vacated by NAD(P)H] provide a simple rationale for the obligatory two-electron reductions involving a ping-pong mechanism. [References: 38]
机译:醌还原酶[NAD(P)H :(醌受体)氧化还原酶,EC 1.6.99.2],也称为DT心肌黄递酶,是一种含FAD的同二聚体酶,可催化强制性NAD(P)H依赖的二电子还原醌和保护细胞免受单电子还原引起的自由基和活性氧的毒性和肿瘤作用。这两个电子还原参与肿瘤细胞中诸如丝裂霉素C的癌症化学治疗剂的还原生物激活,因此,令人惊讶的是,相同的酶保护正常细胞的反应会激活用于癌症化学疗法的细胞毒性药物。大鼠肝脏醌还原酶的2.1埃晶体结构表明,每种单体的一部分折叠与黄酮毒素类似,黄酮毒素是一种细菌性FMN蛋白质,另外两种多肽链的一部分参与二聚化和两个单体共同贡献的两个相同催化位点的形成。两种含FAD的酶复合物的晶体结构(一种含NADP(+),另一种含二氢醌)表明氢化物从NAD(P)H到FAD以及从FADH(2)到醌的直接氢化物转移[占据了空出的位点NAD(P)H的研究]为涉及乒乓机制的强制性两电子还原提供了简单的原理。 [参考:38]

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