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关于与全酶神经元型一氧化氮合酶结合的Nω-羟基-L-精氨酸的位置和结构的电子顺磁共振光谱证据。

ENDOR spectroscopic evidence for the position and structure of NG-hydroxy-L-arginine bound to holo-neuronal nitric oxide synthase.

作者信息

Tierney D L, Huang H, Martasek P, Masters B S, Silverman R B, Hoffman B M

机构信息

Department of Chemistry and Department of Biochemistry, Molecular Biology, and Cell Biology, Northwestern University, Evanston, Illinois 60208-3113, USA.

出版信息

Biochemistry. 1999 Mar 23;38(12):3704-10. doi: 10.1021/bi982904r.

Abstract

Recently, we used 35 GHz pulsed 15N ENDOR spectroscopy to determine the position of the reactive guanidino nitrogen of substrate L-arginine relative to the high-spin ferriheme iron of holo-neuronal nitric oxide synthase (nNOS) [Tierney, D. L., et al. (1998) J. Am. Chem. Soc. 120, 2983-2984]. Analogous studies of the enzyme-bound reaction intermediate, NG-hydroxy-L-arginine (NOHA), singly labeled with 15N at the hydroxylated nitrogen (denoted NR), show that NR is held 3.8 A from the Fe, closer than the corresponding guanidino N of L-Arg (4.05 A). 1,2H ENDOR of NOHA bound to holo-nNOS in H2O and D2O discloses the presence of a single resolved exchangeable proton (H1) 4.8 A from Fe and very near the heme normal. The ENDOR data indicate that NOHA does not bind as the resonance-stabilized cation in which the terminal nitrogens share a positive charge. ENDOR-determined structural constraints permit two alternate structural models for the interaction of NOHA with the high-spin heme iron. In one model, H1 is assigned to the O-H proton; in the other, it is the NR-H proton. However, the alternatives differ in the placement of the N-O bond relative to the heme iron. Thus, a combination of the ENDOR data with appropriate diffraction studies can achieve a definitive determination of the protonation state of NR and thus of the tautomeric form that is present in the enzyme-NOHA complex. The mechanistic implications of this result are further discussed.

摘要

最近,我们使用35吉赫兹脉冲15N电子核双共振光谱来确定底物L-精氨酸的反应性胍基氮相对于全神经元型一氧化氮合酶(nNOS)的高自旋高铁血红素铁的位置[蒂尔尼,D.L.等人(1998年)《美国化学会志》120,2983 - 2984]。对酶结合反应中间体NG-羟基-L-精氨酸(NOHA)进行的类似研究,其在羟基化氮处单标记15N(表示为NR),结果表明NR距离铁为3.8埃,比L-精氨酸相应的胍基氮更近(4.05埃)。在H2O和D2O中与全nNOS结合的NOHA的1,2H电子核双共振揭示存在一个单一分辨的可交换质子(H1),距离铁4.8埃且非常靠近血红素法线。电子核双共振数据表明NOHA并非以共振稳定阳离子的形式结合,在该阳离子中末端氮共享正电荷。电子核双共振确定的结构限制允许两种关于NOHA与高自旋血红素铁相互作用的替代结构模型。在一种模型中,H1被指定为O - H质子;在另一种模型中,它是NR - H质子。然而,这两种替代模型在N - O键相对于血红素铁的位置上有所不同。因此,将电子核双共振数据与适当的衍射研究相结合可以明确确定NR的质子化状态,进而确定酶 - NOHA复合物中存在的互变异构形式。进一步讨论了该结果的机制意义。

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