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Proximal control of inducible nitric oxide synthase.

机译:诱导型一氧化氮合酶的近端控制。

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摘要

Inducible Nitric Oxide Synthase (iNOS) catalyzes the formation of nitric oxide (NO) via a two step monooxygenation from Arginine to hydroxy-Arginine (NOHA), then to Citrulline and NO. The importance of NO in normal physiology and disease has made the NOS enzymes an intensely studied group of enzymes. NOS enzymes are unique P450-type heme enzymes with a conserved tryptophan residue hydrogen bonding to the axial cysteinate residue. Several studies were carried out to determine functional properties of the enzyme.;We studied the effect of CO binding to iNOS and its effect on the proximal ligand. CO binds to iNOS producing a 444 nm Soret, which shifts to 420 nm, characteristic for the inactivated "P420 form" of P450 enzymes. The nature of the proximal ligand of inactivated P420 enzymes has been proposed to be a neutral thiol or histidine residue as both produce a 420 nm Soret with CO. We compared the optical absorption and Raman spectra of iNOS P420 to myoglobin and a carbomonoxy-heure thiol model complex and studied the effects of pH on P420 formation. We conclude that the origin of the 420 nm Soret in P420 iNOS is due to protonation of the proximal thiolate ligand to neutral thiol.;Next, we studied the effect of mutating the conserved tryptophan residue to histidine (W188H). During turnover, this mutant was shown to stabilize a previously unobserved intermediate in the reaction, proposed to be compound (Tejero et al. JBC, 283, 33498--33507). We used resonance Raman and optical absorption spectroscopy, to show that the intermediate is a six-coordinate, low-spin, water-bound species. Using EPR we observed that the population of the H4B·+ radical correlates with the intermediate population.;Finally, we measured the Fe-Cys stretching mode (v Fe-Cys) of the W188H mutant and two new mutants, W188Y and W188F. The W188H vFe-Cys is similar to wild type, while the W188Y and W188F mutants are more similar to the P450 vF6Cys suggesting a broken or weakened hydrogen bond. In each of the mutants and the wild type, NOHA increases the vFe-Cys, demonstrating that the substrate (Arg or NORA) determines the mechanism of oxidation.
机译:诱导型一氧化氮合酶(iNOS)通过从精氨酸到羟基精氨酸(NOHA),然后到瓜氨酸和NO的两步单加氧来催化一氧化氮(NO)的形成。 NO在正常生理和疾病中的重要性使NOS酶成为一组经过深入研究的酶。 NOS酶是独特的P450型血红素酶,具有保守的色氨酸残基氢键合至轴向半胱氨酸残基。进行了数项研究以确定该酶的功能特性。我们研究了CO与iNOS结合的作用及其对近端配体的作用。 CO与iNOS结合,产生一个444 nm的Soret,该Soret移至420 nm,这是P450酶失活的“ P420形式”的特征。有人提出,灭活的P420酶的近端配体的性质是中性的巯基或组氨酸残基,因为它们都会与CO一起产生420 nm Soret。我们将iNOS P420的吸光度和拉曼光谱与肌红蛋白和碳氧结合的硫醇进行了比较。模拟复合物并研究了pH对P420形成的影响。我们得出结论,P420 iNOS中420 nm Soret的起源是由于近端硫醇盐配体质子化为中性硫醇。接下来,我们研究了将保守的色氨酸残基突变为组氨酸(W188H)的作用。在周转期间,该突变体显示出可以稳定反应中以前未被发现的中间体,该中间体被认为是化合物(Tejero等人,JBC,283,33498--33507)。我们使用共振拉曼光谱和光学吸收光谱法来证明中间体是六坐标,低旋转,水结合的物种。使用EPR,我们观察到H4B·+自由基的种群与中间种群相关。最后,我们测量了W188H突变体和两个新突变体W188Y和W188F的Fe-Cys拉伸模式(v Fe-Cys)。 W188H vFe-Cys与野生型相似,而W188Y和W188F突变体与P450 vF6Cys更相似,表明氢键断裂或减弱。在每种突变体和野生型中,NOHA均会增加vFe-Cys,表明底物(Arg或NORA)决定了氧化机理。

著录项

  • 作者

    Sabat, Joseph Edward.;

  • 作者单位

    Yeshiva University.;

  • 授予单位 Yeshiva University.;
  • 学科 Biophysics.;Physiology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 239 p.
  • 总页数 239
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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