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通过圆二色光谱和红外光谱测定温度对pH 6.7条件下β-乳球蛋白二级结构的影响:对熔球态假说的验证

Effect of temperature on the secondary structure of beta-lactoglobulin at pH 6.7, as determined by CD and IR spectroscopy: a test of the molten globule hypothesis.

作者信息

Qi X L, Holt C, McNulty D, Clarke D T, Brownlow S, Jones G R

机构信息

Hannah Research Institute, Ayr KA6 5HL, U.K.

出版信息

Biochem J. 1997 May 15;324 ( Pt 1)(Pt 1):341-6. doi: 10.1042/bj3240341.

Abstract

Previous CD measurements of changes in the conformation of beta-lactoglobulin at neutral pH as a function of temperature indicated the formation of a molten globule state above approx. 70 degrees C. New CD measurements are reported at temperatures up to 80 degrees C with an instrument on the Daresbury synchrotron radiation source which gives spectra of good signal-to-noise ratio down to 170 nm. IR spectra were recorded up to 94.8 degrees C with a ZnSe circle cell and a single simplified model of the substructure of the amide I' band was used to give the fractional contents of beta-sheet structure unambiguously and independently of the CD spectroscopy. The results of both techniques, however, were in agreement in showing a progressive loss of beta-sheet structure with increasing temperature, beginning below the denaturation temperature. Nevertheless, the CD spectroscopy showed a fairly abrupt loss of virtually all the helical conformation at approx. 65 degrees C. Comparison of the present results with other studies on the molten globule formed at acid pH in the lipocalin family suggests that above 65 degrees C a partly unfolded state is formed, possibly by destabilization of the intermolecular beta-strand I and the loss of the main helix, but it is not a classical molten globule transition.

摘要

先前在中性pH条件下,β-乳球蛋白构象随温度变化的圆二色性(CD)测量结果表明,在约70摄氏度以上会形成熔球态。本文报道了在达累斯伯里同步辐射源上使用一台仪器,在高达80摄氏度的温度下进行的新CD测量,该仪器能给出低至170纳米的高信噪比光谱。使用ZnSe圆形样品池记录了高达94.8摄氏度的红外光谱,并使用酰胺I'带亚结构的单一简化模型,独立于CD光谱法明确给出β-折叠结构的分数含量。然而,两种技术的结果都一致表明,随着温度升高,β-折叠结构逐渐丧失,且在变性温度以下就开始了。尽管如此,CD光谱显示在约65摄氏度时几乎所有螺旋构象都相当突然地丧失。将本研究结果与脂钙蛋白家族中在酸性pH下形成的熔球态的其他研究进行比较表明,在65摄氏度以上会形成部分解折叠状态,可能是由于分子间β-链I的不稳定和主螺旋的丧失,但这不是经典的熔球态转变。

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