Keller R, Groudinsky O, Wüthrich K
Biochim Biophys Acta. 1976 Apr 14;427(2):497-511. doi: 10.1016/0005-2795(76)90192-6.
This paper describes the identification of some of the contact-shifted resonances in the 1H NMR spectrum of low spin ferric cytochrome b5. In these experiments comparison with cytochrome b5 which had been reconstituted with deuteroheme IX played an important role. NMR techniques used include double resonance experiments, line width analyses, and studies of the pH-dependence of the 1H NMR chemical shifts. The electronic heme structure derived from these resonance assignments is characterized by a highly anisotropic spin density distribution. This anisotropy is most strikingly manifested in the resonances of the vinyl and propionic acid substituents of the protoheme IX. The experiments described in this paper further revealed the coexistence in aqueous solutions of two different molecular species of cytochrome b5, which can be simultaneously observed in the regions of the 1H NMR spectrum which contain the largely contact-shifted resonances.
本文描述了低自旋铁细胞色素b5的1H NMR谱中一些接触位移共振峰的鉴定。在这些实验中,与用氘代血红素IX重构的细胞色素b5进行比较起到了重要作用。所使用的NMR技术包括双共振实验、线宽分析以及1H NMR化学位移的pH依赖性研究。从这些共振归属推导得出的电子血红素结构的特征是具有高度各向异性的自旋密度分布。这种各向异性在原血红素IX的乙烯基和丙酸取代基的共振中表现得最为显著。本文所述的实验进一步揭示了细胞色素b5的两种不同分子物种在水溶液中共存,这两种物种可在1H NMR谱中包含大量接触位移共振峰的区域同时观察到。