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质子-质子奥弗豪泽效应增强与距离几何算法联用测定多肽构象。应用于胶束结合的胰高血糖素。

Combined use of proton-proton Overhauser enhancements and a distance geometry algorithm for determination of polypeptide conformations. Application to micelle-bound glucagon.

作者信息

Braun W, Bösch C, Brown L R, Go N, Wüthrich K

出版信息

Biochim Biophys Acta. 1981 Feb 27;667(2):377-96. doi: 10.1016/0005-2795(81)90205-1.

Abstract

In a new approach for the determination of polypeptide conformation, experimental data on intramolecular distances between pairs of hydrogen atoms obtained from nuclear Overhauser enhancement studies are used as input for a distance geometry algorithm. The algorithm determines the limits of the conformation space occupied by the polypeptide chain. The experimental data are used in such a way that the real conformation should in all cases be within these limits. Two important features of the method are that the results do not depend critically on the accuracy of the distance measurements by nuclear Overhauser enhancement studies and that internal mobility of the polypeptide conformation is explicitly taken into consideration. The use of this new procedure is illustrated with a structural study of the region 19-27 of glucagon bound to perdeuterated dodecylphosphocholine micelles.

摘要

在一种确定多肽构象的新方法中,从核Overhauser效应增强研究中获得的关于氢原子对之间分子内距离的实验数据被用作距离几何算法的输入。该算法确定多肽链所占据的构象空间的界限。实验数据的使用方式使得真实构象在所有情况下都应在这些界限之内。该方法的两个重要特征是结果并不严重依赖于核Overhauser效应增强研究中距离测量的准确性,并且明确考虑了多肽构象的内部流动性。通过对与全氘代十二烷基磷酸胆碱胶束结合的胰高血糖素19 - 27区域的结构研究来说明这种新方法的应用。

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