...
【24h】

Redox reactions of the pyranopterin system of the molybdenum cofactor

机译:钼辅因子吡喃蝶呤系统的氧化还原反应

获取原文
获取原文并翻译 | 示例

摘要

This work provides the first extensive study of the redox reactivity of the pyranopterin system that is a component of the catalytic site of all molybdenum and tungsten enzymes possessing molybdopterin. The pyranopterin system possesses certain characteristics typical of tetrahydropterins, such as a reduced pyrazine ring; however, it behaves as a dihydropterin in redox reactions with oxidants. Titrations using ferricyanide and dichloroindophenol (DCIP) prove a 2e~–/2H~+ stoichiometry for pyranopterin oxidations. Oxidations of pyranopterin by Fe(CN)_6~(3–) or DCIP are slower than tetrahydropterin oxidation under a variety of conditions, but are considerably faster than observed for oxidations of dihydropterin. The rate of pyranopterin oxidation by DCIP was studied in a variety of media. In aqueous buffered solution the pyranopterin oxidation rate has minimal pH dependence, whereas the rate of tetrahydropterin oxidation decreases 100-fold over the pH range 7.4–8.5. Although pyranopterin reacts as a dihydropterin with oxidants, it resists further reduction to a tetrahydropterin. No reduction was achieved by catalytic hydrogenation, even after several days. The reducing ability of the commonly used biological reductants dithionite and methyl viologen radical cation was investigated, but experiments showed no evidence of pyranopterin reduction by any of these reducing agents. This study illustrates the dual personalities of pyranopterin and underscores the unique place that the pyranopterin system holds in the spectrum of pterin redox reactions. The work presented here has important implications for understanding the biosynthesis and reaction chemistry of the pyranopterin cofactor in molybdenum and tungsten enzymes.
机译:这项工作对吡喃蝶呤系统的氧化还原反应性进行了首次广泛研究,吡喃蝶呤系统是所有具有钼蝶呤的钼和钨酶的催化位点的组成部分。吡喃蝶呤系统具有某些典型的四氢蝶呤特性,例如还原的吡嗪环;然而,它在与氧化剂的氧化还原反应中表现为二氢蝶呤。使用铁氰化物和二氯吲哚酚(DCIP)进行滴定证明吡喃蝶呤氧化的化学计量为2e〜– / 2H〜+。 Fe(CN)_6〜(3–)或DCIP氧化吡喃蝶呤的速度比四氢蝶呤氧化的速度要慢,但比二氢蝶呤的氧化速度要快得多。在多种介质中研究了吡opter蝶素被DCIP氧化的速率。在水溶液缓冲溶液中,吡an蝶呤的氧化速率具有最小的pH依赖性,而四蝶呤的氧化速率在7.4-8.5的pH范围内降低100倍。尽管吡喃蝶呤作为二氢蝶呤与氧化剂反应,但它抵抗进一步还原为四氢蝶呤。即使经过几天,催化氢化也没有还原。研究了常用的生物还原剂连二亚硫酸盐和甲基紫精自由基阳离子的还原能力,但实验表明没有证据表明吡pyr蝶呤被这些还原剂中的任何一种还原。这项研究说明了吡an蝶呤的双重个性,并强调了吡an蝶呤系统在蝶呤氧化还原反应谱中的独特地位。本文介绍的工作对于理解吡the蝶素辅因子在钼和钨酶中的生物合成和反应化学具有重要意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号