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配体结合对人血浆维生素D结合蛋白(群体特异性成分)构象的影响。

Effect of ligand binding on the conformation of human plasma vitamin D binding protein (group-specific component).

作者信息

Surarit R, Svasti J

出版信息

Biochem J. 1980 Nov 1;191(2):401-10. doi: 10.1042/bj1910401.

Abstract

Several techniques have been used to demonstrate that the binding of specific ligands to human plasma vitamin D binding protein induces a change in protein conformation. Apoprotein and holoprotein show circular dichroism spectra of similar form in the peptide region with double minima at 207 and 218 nm. The minimum mean residue ellipticity of apoprotein (20.6 X 10(3) degrees.cm2.dmol-1) is decreased by about 8% after vitamin D3 binding, suggesting a small change in the backbone conformation. Spectrofluorimetric studies showed that 25-hydroxycholecalciferol causes a saturable enhancement of intrinsic fluorescence of human vitamin D binding protein and alters the pH profile of protein fluorescence, suggesting that there are alterations in the local environment of tryptophan residue(s) after ligand binding. Furthermore, in the presence of 25-hydroxycholecalciferol, the rate of chemical modification of the amino groups in human vitamin D binding protein is decreased and the susceptibility of intact vitamin D binding protein to proteolytic degradation is reduced, suggesting that some surface sites in the vitamin D binding protein molecule are less accessible to external agents. In addition, although the absorbance of vitamin made if difficult to interpret the ultraviolet spectra of holoprotein and apoprotein, the presence of vitamin D binding protein appears to stabilize the vitamin in an aqueous environment, a phenomenon that may be of physiological importance.

摘要

已经使用了几种技术来证明特定配体与人血浆维生素D结合蛋白的结合会诱导蛋白质构象的变化。脱辅基蛋白和全蛋白在肽区域显示出相似形式的圆二色性光谱,在207和218nm处有双最小值。维生素D3结合后,脱辅基蛋白的最小平均残基椭圆率(20.6×10³度·厘米²·摩尔⁻¹)降低了约8%,表明主链构象有微小变化。荧光光谱研究表明,25-羟基胆钙化醇会导致人维生素D结合蛋白的固有荧光出现可饱和增强,并改变蛋白质荧光的pH谱,这表明配体结合后色氨酸残基的局部环境发生了变化。此外,在25-羟基胆钙化醇存在的情况下,人维生素D结合蛋白中氨基的化学修饰速率降低,完整的维生素D结合蛋白对蛋白水解降解的敏感性降低,这表明维生素D结合蛋白分子中的一些表面位点对外部试剂的可及性降低。此外,虽然维生素的吸光度使得难以解释全蛋白和脱辅基蛋白的紫外光谱,但维生素D结合蛋白的存在似乎能在水性环境中稳定维生素,这一现象可能具有生理重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e57/1162230/5ccc5fe08f70/biochemj00413-0124-a.jpg

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