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亨廷顿相互作用蛋白HYPK本质上是无序的。

Huntingtin interacting protein HYPK is intrinsically unstructured.

作者信息

Raychaudhuri Swasti, Majumder Pritha, Sarkar Somosree, Giri Kalyan, Mukhopadhyay Debashis, Bhattacharyya Nitai P

机构信息

Crystallography and Molecular Biology Division, Saha Institute of Nuclear Physics, 1/AF Bidhan Nagar, Kolkata 700 064, India.

出版信息

Proteins. 2008 Jun;71(4):1686-98. doi: 10.1002/prot.21856.

Abstract

To characterize HYPK, originally identified as a novel huntingtin (Htt) interacting partner by yeast two hybrid assay, we used various biophysical and biochemical techniques. The molecular weight of the protein, determined by gel electrophoresis, was found to be about 1.3-folds ( approximately 22 kDa) higher than that obtained from mass spectrometric analysis (16.9 kDa). In size exclusion chromatography experiment, HYPK was eluted in three fractions, the hydrodynamic radii for which were calculated to be approximately 1.5-folds (23.06 A) higher than that expected for globular proteins of equivalent mass (17.3 A). The protein exhibited predominantly (63%) random coil characteristics in circular dichroism spectroscopy and was highly sensitive to limited proteolysis by trypsin and papain, indicating absence of any specific domain. Experimental evidences with theoretical analyses of amino acids composition of HYPK and comparison with available published data predicts that HYPK is an intrinsically unstructured protein (IUP) with premolten globule like conformation. In presence of increasing concentration of Ca(2+), HYPK showed conformational alterations as well as concomitant reduction of hydrodynamic radius. Even though any link between the natively unfolded nature of HYPK, its conformational sensitivity towards Ca(2+) and interaction with Htt is yet to be established, its possible involvement in Huntington's disease pathogenesis is discussed.

摘要

为了表征最初通过酵母双杂交实验鉴定为一种新型亨廷顿蛋白(Htt)相互作用伴侣的HYPK,我们使用了各种生物物理和生化技术。通过凝胶电泳测定的该蛋白质分子量,比质谱分析得到的分子量(16.9 kDa)高约1.3倍(约22 kDa)。在尺寸排阻色谱实验中,HYPK以三个组分洗脱,其流体力学半径经计算比同等质量的球状蛋白质预期的流体力学半径高约1.5倍(23.06 Å)。在圆二色光谱中,该蛋白质主要表现出(63%)无规卷曲特征,并且对胰蛋白酶和木瓜蛋白酶的有限蛋白水解高度敏感,表明不存在任何特定结构域。对HYPK氨基酸组成进行理论分析并与已发表的可用数据进行比较的实验证据预测,HYPK是一种具有类前熔融球状构象的内在无序蛋白(IUP)。在Ca(2+)浓度增加时,HYPK表现出构象改变以及流体力学半径随之减小。尽管HYPK的天然未折叠性质、其对Ca(2+)的构象敏感性与它和Htt的相互作用之间的任何联系尚未确立,但本文讨论了其可能参与亨廷顿病发病机制的情况。

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