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金属取代血红蛋白的三重态磁共振和荧光光谱学。

Triplet state magnetic resonance and fluorescence spectroscopy of metal-substituted hemoglobins.

作者信息

Polm M W, Schaafsma T J

机构信息

Department of Molecular Physics, Agricultural University, Wageningen, The Netherlands.

出版信息

Biophys J. 1997 Jan;72(1):373-82. doi: 10.1016/S0006-3495(97)78676-4.

Abstract

Fluorescence detected magnetic resonance (FDMR) spectra detected at 596 nm of zinc-substituted hemoglobins at 4.2 K show a split D-E transition, which is not observed for zinc protoporphyrins ligated by methylimidazole in glasses. Incorporation of the zinc heme into the globin pocket is also accompanied by a blue shift of the fluorescence of 20 nm at 4.2 K. FDMR spectra recorded at 576 nm do not show the D-E splitting. The D-E splitting and the huge blue shift are not observed for the magnesium-substituted hemoglobins. Fluorescence measurements at 4.2 K and 77 K, and EPR measurements at 110 K, were carried out to obtain information about the ligation states of the zinc and magnesium protoporphyrins in glasses and in hemoglobin. The results are explained by considering ligation effects and distortion of the porphyrin plane.

摘要

在4.2 K下对锌取代血红蛋白在596 nm处检测到的荧光检测磁共振(FDMR)光谱显示出分裂的D - E跃迁,而在玻璃中由甲基咪唑连接的锌原卟啉则未观察到这种跃迁。将锌血红素掺入球蛋白口袋中还伴随着在4.2 K下荧光发生20 nm的蓝移。在576 nm处记录的FDMR光谱未显示D - E分裂。对于镁取代的血红蛋白,未观察到D - E分裂和巨大的蓝移。在4.2 K和77 K下进行荧光测量,并在110 K下进行电子顺磁共振(EPR)测量,以获取有关玻璃中和血红蛋白中锌和镁原卟啉连接状态的信息。通过考虑连接效应和卟啉平面的畸变来解释这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/804e/1184326/2bb03ab56483/biophysj00039-0383-a.jpg

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