Giovanelli J, Campos K L, Kaufman S
Laboratory of Neurochemistry, National Institute of Mental Health, Bethesda, MD 20892.
Proc Natl Acad Sci U S A. 1991 Aug 15;88(16):7091-5. doi: 10.1073/pnas.88.16.7091.
Studies with purified nitric oxide synthase from rat cerebellum have confirmed previous reports that product formation is enhanced by tetrahydrobiopterin [H4B; 6-(L-erythro-1,2-dihydroxypropyl)-5,6,7,8-tetrahydropterin]. The effect of the natural isomer, (6R)-H4B, is observed at extremely low (less than 0.1 microM) concentrations and is remarkably selective. At these concentrations, only the diastereoisomer (6S)-H4B, the structural isomer 7-(L-erythro-1,2-dihydroxypropyl)-5,6,7,8-tetrahydropterin, and 7,8-dihydrobiopterin showed detectable effects. Our observations are inconsistent with a stoichiometric role for H4B in the oxygenation of arginine [e.g., Stuehr, D. J., Kwon, N. S., Nathan, C. F., Griffith, O. W., Feldman, P. L. & Wiseman, J. (1991) J. Biol. Chem. 266, 6259-6263]. Activity is initially independent of added H4B; enhanced product formation with H4B is observed only as incubation progresses. The effect of H4B is catalytic, with each mole of added H4B supporting the formation of greater than 15 mol of product. Recycling of H4B was excluded by direct measurement during nitric oxide synthesis and by the demonstration that nitric oxide synthase is not inhibited by methotrexate. These combined results exclude H4B as a stoichiometric reactant and suggest that H4B enhances product formation by protecting enzyme activity against progressive loss. Preliminary studies indicate that the decreased activity in the absence of added H4B does not depend on catalytic turnover of the enzyme. The role of H4B may be allosteric or it may function to maintain some group(s) on the enzyme in a reduced state required for activity.
对大鼠小脑纯化的一氧化氮合酶的研究证实了先前的报道,即四氢生物蝶呤[H4B;6-(L-赤藓糖-1,2-二羟基丙基)-5,6,7,8-四氢蝶呤]可增强产物生成。天然异构体(6R)-H4B的作用在极低(小于0.1微摩尔)浓度下即可观察到,且具有显著的选择性。在这些浓度下,只有非对映异构体(6S)-H4B、结构异构体7-(L-赤藓糖-1,2-二羟基丙基)-5,6,7,8-四氢蝶呤和7,8-二氢生物蝶呤显示出可检测到的作用。我们的观察结果与H4B在精氨酸氧化中起化学计量作用不一致[例如,Stuehr, D. J., Kwon, N. S., Nathan, C. F., Griffith, O. W., Feldman, P. L. & Wiseman, J. (1991) J. Biol. Chem. 266, 6259-6263]。活性最初与添加的H4B无关;只有随着孵育的进行,才观察到H4B增强产物生成。H4B的作用是催化性的,每摩尔添加的H4B可支持生成超过15摩尔的产物。在一氧化氮合成过程中通过直接测量以及证明一氧化氮合酶不受甲氨蝶呤抑制排除了H4B的循环利用。这些综合结果排除了H4B作为化学计量反应物的可能性,并表明H4B通过保护酶活性防止其逐渐丧失来增强产物生成。初步研究表明,在不添加H4B的情况下活性降低并不依赖于酶的催化周转。H4B的作用可能是变构的,或者它可能起到将酶上的某些基团维持在活性所需的还原状态的作用。