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来自小鼠精囊的自身抗原的蛋白质构象和锌结合结构域。

The protein conformation and a zinc-binding domain of an autoantigen from mouse seminal vesicle.

作者信息

Huang Y H, Luo C W, Yu L C, Chu S T, Chen Y H

机构信息

Institute of Biochemical Sciences, College of Science, National Taiwan University, Taipei, Republic of China.

出版信息

Biophys J. 1995 Nov;69(5):2084-9. doi: 10.1016/S0006-3495(95)80079-2.

Abstract

The protein conformation of a mouse seminal vesicle autoantigen was studied by circular dichroism spectroscopy. At pH 7.4, the spectrum in the UV region appears as one negative band at 217 nm and one positive band at 200 nm. This together with the predicted secondary structures indicates no helices but a mixture of beta form, beta turn, and unordered form in the protein molecule. The conformation is stable even at pH 10.5 or 3.0. The spectrum in the near-UV region consists of fine structures that are disturbed in acidic or alkaline solution. The environments around Trp2 and Trp82 of this protein were studied by intrinsic fluorescence and solute quenching. They give an emission peak at 345 nm, and about 87% of them are accessible to quenching by acrylamide. Correlating the quenching effect of CsCl and Kl on the protein fluorescence to the charged groups along the polypeptide chain suggests the difference in the "local charge" around the two tryptophan residues. The presence of ZnCl2 in the protein solution effects no change in the circular dichroism but perturbs the fluorescence due to Trp82. Analysis of the fluorescence data suggests a Zn(2+)-binding site on the protein, which cannot coordinate with both Ca2+ and Mg2+. The association constant for the complex formation is 1.35 x 10(5) +/- 0.04 x 10(5) M-1 at pH 7.4.

摘要

通过圆二色光谱法研究了小鼠精囊自身抗原的蛋白质构象。在pH 7.4时,紫外区域的光谱在217 nm处呈现一个负峰,在200 nm处呈现一个正峰。这与预测的二级结构一起表明,该蛋白质分子中不存在螺旋结构,而是β折叠、β转角和无规结构的混合体。即使在pH 10.5或3.0时,该构象也是稳定的。近紫外区域的光谱由在酸性或碱性溶液中会受到干扰的精细结构组成。通过内源荧光和溶质猝灭研究了该蛋白质中Trp2和Trp82周围的环境。它们在345 nm处给出一个发射峰,其中约87%可被丙烯酰胺猝灭。将CsCl和Kl对蛋白质荧光的猝灭效应与多肽链上的带电基团相关联,表明两个色氨酸残基周围“局部电荷”存在差异。蛋白质溶液中ZnCl2的存在对圆二色性没有影响,但会干扰Trp82的荧光。对荧光数据的分析表明该蛋白质上存在一个Zn(2+)结合位点,它不能与Ca2+和Mg2+同时配位。在pH 7.4时,复合物形成的缔合常数为1.35×10(5)±0.04×10(5) M-1。

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