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利用磁圆二色光谱法鉴定一氧化氮合酶为硫醇盐连接的血红素蛋白。与细胞色素P-450-CAM和氯过氧化物酶的比较。

Identification of nitric oxide synthase as a thiolate-ligated heme protein using magnetic circular dichroism spectroscopy. Comparison with cytochrome P-450-CAM and chloroperoxidase.

作者信息

Sono M, Stuehr D J, Ikeda-Saito M, Dawson J H

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia 29208, USA.

出版信息

J Biol Chem. 1995 Aug 25;270(34):19943-8. doi: 10.1074/jbc.270.34.19943.

DOI:10.1074/jbc.270.34.19943
PMID:7544348
Abstract

Nitric oxide (NO) has recently been recognized as an important biomolecule playing diverse physiological roles. It is synthesized in several different tissues from L-Arg and O2, using NADPH as an electron donor, by a family of heme-containing catalytically self-sufficient monooxygenases known as nitric oxide synthases (NOS). Recently, the CO complex of reduced NOS has been shown to exhibit an absorption maximum near 450 nm, a characteristic spectral feature of cytochrome P-450 (P-450). Yet, the amino acid sequences of NOS and P-450 have no homology. To further probe the active site heme coordination structure and the heme environment of NOS, we have employed magnetic circular dichroism (MCD) and CD spectroscopy in the present study. MCD spectra of several derivatives of rat brain neuronal NOS strikingly resemble those of analogous derivatives of bacterial P-450-CAM and fungal chloroperoxidase, two known thiolate-ligated heme proteins. Given the proven fingerprinting capability of MCD spectroscopy, this provides convincing evidence for endogenous thiolate (cysteinate) ligation to the heme iron of NOS. Furthermore, the heme-related Soret CD bands of NOS (positive) and P-450s (negative), as represented by P-450-CAM, are almost mirror images, whereas chloroperoxidase exhibits totally different CD band shapes. This suggests that the active sites of NOS and P-450 may share some common structural features, but significant distinctions exist between their heme environments in certain aspects such as hydrophobicity or size.

摘要

一氧化氮(NO)最近被公认为是一种发挥多种生理作用的重要生物分子。它由一氧化氮合酶(NOS)家族在几种不同组织中,以L-精氨酸和氧气为原料,利用NADPH作为电子供体合成。NOS是一族含血红素、催化自足的单加氧酶。最近,还原型NOS的一氧化碳复合物已被证明在450nm附近有一个吸收最大值,这是细胞色素P-450(P-450)的特征光谱特征。然而,NOS和P-450的氨基酸序列没有同源性。为了进一步探究NOS活性位点的血红素配位结构和血红素环境,我们在本研究中采用了磁圆二色性(MCD)和圆二色性(CD)光谱技术。大鼠脑神经元NOS的几种衍生物的MCD光谱与细菌P-450-CAM和真菌氯过氧化物酶(两种已知的硫醇盐连接血红素蛋白)的类似衍生物的MCD光谱惊人地相似。鉴于MCD光谱已证实的指纹识别能力,这为内源性硫醇盐(半胱氨酸盐)与NOS的血红素铁连接提供了令人信服的证据。此外,以P-450-CAM为代表的NOS(正)和P-450s(负)的血红素相关Soret CD带几乎是镜像关系,而氯过氧化物酶则表现出完全不同的CD带形状。这表明NOS和P-450的活性位点可能具有一些共同的结构特征,但在某些方面,如疏水性或大小,它们的血红素环境存在显著差异。

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