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细胞质肌纤维蛋白的拉曼光谱。取向有序性。

Raman spectroscopy of cytoplasmic muscle fiber proteins. Orientational order.

作者信息

Pézolet M, Pigeon M, Ménard D, Caillé J P

机构信息

Département de Chimie, Faculté des Sciences et de Génie, Université Laval, Sainte-Foy, Québec, Canada.

出版信息

Biophys J. 1988 Mar;53(3):319-25. doi: 10.1016/S0006-3495(88)83109-6.

Abstract

The polarized Raman spectra of glycerinated and intact single muscle fibers of the giant barnacle were obtained. These spectra show that the conformation-sensitive amide I, amide III, and C-C stretching vibrations give Raman bands that are stronger when the electric field of both the incident and scattered radiation is parallel to the fiber axis (Izz). The detailed analysis of the amide I band by curve fitting shows that approximately 50% of the alpha-helical segments of the contractile proteins are oriented along the fiber axis, which is in good agreement with the conformation and composition of muscle fiber proteins. Difference Raman spectroscopy was also used to highlight the Raman bands attributed to the oriented segments of the alpha-helical proteins. The difference spectrum, which is very similar to the spectrum of tropomyosin, displays amide I and amide III bands at 1,645 and 1,310 cm-1, respectively, the bandwidth of the amide I line being characteristic of a highly alpha-helical biopolymer with a small dispersion of dihedral angles. A small dichroic effect was also observed for the band due to the CH2 bending mode at 1,450 cm-1 and on the 1,340 cm-1 band. In the C-C stretching mode region, two bands were detected at 902 and 938 cm-1 and are both assigned to the alpha-helical conformation.

摘要

获得了甘油处理的和完整的巨藤壶单根肌纤维的偏振拉曼光谱。这些光谱表明,对构象敏感的酰胺I、酰胺III和C-C伸缩振动产生的拉曼带,当入射辐射和散射辐射的电场都与纤维轴(Izz)平行时更强。通过曲线拟合对酰胺I带进行详细分析表明,收缩蛋白的α-螺旋片段中约50%沿纤维轴取向,这与肌纤维蛋白的构象和组成非常一致。差分拉曼光谱也被用于突出归因于α-螺旋蛋白取向片段的拉曼带。该差谱与原肌球蛋白的光谱非常相似,分别在1645和1310 cm-1处显示酰胺I和酰胺III带,酰胺I线的带宽是二面角分散小的高度α-螺旋生物聚合物的特征。在1450 cm-1处由于CH2弯曲模式产生的带以及在1340 cm-1处的带也观察到了小的二向色性效应。在C-C伸缩模式区域,在902和938 cm-1处检测到两条带,它们都归属于α-螺旋构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fde/1330200/df107c800232/biophysj00155-0025-a.jpg

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