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酶溶性胶原蛋白中胶原蛋白-明胶转变的13C核磁共振和圆二色性研究。

A 13C nuclear magnetic resonance and circular dichroism study of the collagen-gelatin transformation in enzyme solubilized collagen.

作者信息

Chien J C, Wise W B

出版信息

Biochemistry. 1975 Jun 17;14(12):2786-92. doi: 10.1021/bi00683a036.

Abstract

Natural abundance Fourier transform 13C nuclear magnetic resonance (13C NMR) were obtained for enzyme solubilized collagen at 1 degrees intervals through the transition region. The transition of collagen molecules from the rigid triple helical state to single-stranded, random-coil state is accompanied by a change from broadened carbon resonances unobservable under high-resolution conditions to narrow line spectra. Thus distinction can be made between helical and random-coil states of individual residues. The transition is monophasic, as determined by examination of 14 different carbon resonances, and the entire structure is found to melt cooperatively over a temperature interval of 5 +/- 1 degrees. All the residues seem to be involved in the unfolding process concurrently. The transition was also studied by examining the changes in the circular dichroism spectrum brought about by heating. The experiments corroborated the observation that the transition proceeded cooperatively over a temperature interval of 4 degrees. Enzyme soluble collagen is seen to melt less cooperatively than native collagen. The enthalpy change was determined by assuming an equilibrium between three random coil gelatin chains and tropocollogen molecules. From the enthalpy, the average length of the tripeptide sequences (70-85) involved in the transition can be estimated. The shortening of the cooperative unit could arise as a result of some alteration of the native conformation through proctase treatment.

摘要

通过过渡区域,以1度的间隔对酶溶性胶原蛋白进行了自然丰度傅里叶变换13C核磁共振(13C NMR)测定。胶原蛋白分子从刚性三螺旋状态转变为单链无规卷曲状态,伴随着碳共振从高分辨率条件下不可观测的宽峰向窄线谱的变化。因此,可以区分单个残基的螺旋态和无规卷曲态。通过检查14种不同的碳共振确定该转变是单相的,并且发现整个结构在5±1度的温度区间内协同解链。似乎所有残基都同时参与了展开过程。还通过检查加热引起的圆二色光谱变化来研究该转变。实验证实了该转变在4度的温度区间内协同进行的观察结果。可以看出,酶溶性胶原蛋白的解链协同性比天然胶原蛋白低。通过假设三条无规卷曲明胶链和原胶原蛋白分子之间的平衡来确定焓变。根据焓变,可以估计参与转变的三肽序列(70 - 85)的平均长度。协同单元的缩短可能是由于通过蛋白酶处理使天然构象发生了一些改变所致。

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