Suppr超能文献

顺磁性肌红蛋白衍生物中标记乙烯基的13C-核磁共振研究。

13C-NMR study of labeled vinyl groups in paramagnetic myoglobin derivatives.

作者信息

Sankar S S, La Mar G N, Smith K M, Fujinari E M

出版信息

Biochim Biophys Acta. 1987 Apr 8;912(2):220-9. doi: 10.1016/0167-4838(87)90092-6.

Abstract

The 13C-NMR spectra of high-spin met-aquo myoglobin, spin-equilibrium met-azido myoglobin, low-spin met-cyano myoglobin, deoxy myoglobin and carbonmonoxy myoglobin from sperm whale reconstituted with hemin 13C enriched at both vinyl alpha or beta positions have been recorded. In all cases the labeled vinyl 13C signals are clearly resolved and useful spectra could be obtained within approx. 15 minutes. The decoupling of multiplet structure due to attached proton(s) has led to the specific assignment of vinyl 13C alpha signals in all paramagnetic derivatives and the 13C beta signals in met-cyano myoglobin. In all other cases, the collapse of the proton multiplet structure as a function of 1H decoupling frequency has located, but not assigned, the attached 1H resonance positions which are obscured by the intense diamagnetic envelope in the 1H-NMR spectrum. The resulting vinyl 13C hyperfine shifts follow Curie behavior, and the patterns closely resemble those in the appropriate model complexes in the same oxidation/spin/ligation state, except that the protein exhibits more in-plane asymmetry. The hyperfine shift patterns are indicative of dominant pi contact shifts for all ferric complexes. Deoxy myoglobin vinyl 13C and 1H contact shifts provide little evidence for pi bonding.

摘要

已记录了来自抹香鲸的高自旋高铁水合肌红蛋白、自旋平衡高铁叠氮肌红蛋白、低自旋高铁氰基肌红蛋白、脱氧肌红蛋白和用在乙烯基α或β位置均富集了13C的血红素重构的一氧化碳肌红蛋白的13C-NMR光谱。在所有情况下,标记的乙烯基13C信号都能清晰分辨,并且大约在15分钟内就能获得有用的光谱。由于连接的质子导致的多重峰结构去耦,使得在所有顺磁衍生物中都能对乙烯基13Cα信号进行特定归属,并对高铁氰基肌红蛋白中的13Cβ信号进行了归属。在所有其他情况下,质子多重峰结构随1H去耦频率的变化而坍塌,确定了连接的1H共振位置,但未进行归属,这些位置在1H-NMR光谱中被强烈的抗磁包络所掩盖。由此产生的乙烯基13C超精细位移遵循居里行为,其模式与处于相同氧化/自旋/配位状态的适当模型配合物中的模式非常相似,只是蛋白质表现出更多的面内不对称性。超精细位移模式表明所有铁配合物中主要是π接触位移。脱氧肌红蛋白的乙烯基13C和1H接触位移几乎没有提供π键合的证据。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验