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通过电子顺磁共振对L-精氨酸和L-硫代瓜氨酸与一氧化氮合酶血红素辅因子区域相互作用的表征。

Characterization by electron paramagnetic resonance of the interactions of L-arginine and L-thiocitrulline with the heme cofactor region of nitric oxide synthase.

作者信息

Salerno J C, Frey C, McMillan K, Williams R F, Masters B S, Griffith O W

机构信息

Department of Biology, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.

出版信息

J Biol Chem. 1995 Nov 17;270(46):27423-8. doi: 10.1074/jbc.270.46.27423.

Abstract

Nitric oxide synthase (NOS) catalyzes sequential NADPH- and O2-dependent mono-oxygenase reactions converting L-arginine to N omega-hydroxy-L-arginine and N omega-hydroxy-L-arginine to citrulline and nitric oxide. The homodimeric enzyme contains one heme/monomer, and that cofactor is thought to mediate both partial reactions. Here we show by electron paramagnetic resonance spectroscopy that binding of substrate L-arginine to neuronal NOS perturbs the heme cofactor binding pocket without directly interacting as a sixth axial heme ligand; heme iron is exclusively high spin. In contrast, binding of L-thiocitrulline, a NOS inhibitor, produces both high and low spin iron spectra; L-thiocitrulline sulfur is a sixth axial heme ligand in one, but not all, of the low spin forms. The high spin forms of the L-thiocitrulline NOS complex display a distortion in the opposite direction to that caused by L-arginine binding. The findings elucidate the binding interactions of L-arginine and L-thiocitrulline to neuronal NOS and demonstrate that each causes a unique perturbation to the heme cofactor pocket of NOS.

摘要

一氧化氮合酶(NOS)催化一系列依赖于NADPH和O₂的单加氧酶反应,将L-精氨酸转化为Nω-羟基-L-精氨酸,再将Nω-羟基-L-精氨酸转化为瓜氨酸和一氧化氮。该同二聚体酶每个单体含有一个血红素,并且认为该辅因子介导这两个部分反应。在这里,我们通过电子顺磁共振光谱表明,底物L-精氨酸与神经元型NOS的结合会扰乱血红素辅因子结合口袋,而不会作为第六个轴向血红素配体直接相互作用;血红素铁完全是高自旋的。相比之下,NOS抑制剂L-硫代瓜氨酸的结合会产生高自旋和低自旋铁光谱;L-硫代瓜氨酸的硫在一种低自旋形式中是第六个轴向血红素配体,但不是所有低自旋形式。L-硫代瓜氨酸-NOS复合物的高自旋形式显示出与L-精氨酸结合引起的扭曲方向相反的扭曲。这些发现阐明了L-精氨酸和L-硫代瓜氨酸与神经元型NOS的结合相互作用,并证明它们各自对NOS的血红素辅因子口袋产生独特的扰动。

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