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血凝素两个抗原环的结构与动力学研究:一种弛豫矩阵方法

Structural and dynamic studies of two antigenic loops from haemagglutinin: a relaxation matrix approach.

作者信息

Kieffer B, Koehl P, Plaue S, Lefèvre J F

机构信息

IBMC du CNRS, Strasbourg, France.

出版信息

J Biomol NMR. 1993 Jan;3(1):91-112. doi: 10.1007/BF00242478.

Abstract

We have investigated the dynamics and structural behaviour of two antigenic peptides using 1H NMR. The two cyclic peptides mimic the antigenic site A of influenza haemagglutinin protein; they only differ in the way they were cyclized and in the size of their respective linkers. Homonuclear relaxation parameters extracted from a complete NOE matrix were interpreted in terms of local dynamics. A set of distance constraints was deduced from these parameters which allowed 3D models to be constructed using distance geometry. NOE back-calculation was used to check the validity of the final models. Strong variations of internal motion amplitude have been found in both peptides along their backbone. Motions with high amplitudes have been localized in the Gly-Pro-Gly sequence which forms a beta-turn in both structures.

摘要

我们利用1H NMR研究了两种抗原肽的动力学和结构行为。这两种环肽模拟了流感血凝素蛋白的抗原位点A;它们仅在环化方式和各自连接子的大小上有所不同。从完整的NOE矩阵中提取的同核弛豫参数根据局部动力学进行了解释。从这些参数推导出一组距离约束,从而可以使用距离几何方法构建三维模型。利用NOE反计算来检验最终模型的有效性。在两种肽的主链上均发现内部运动幅度有很大变化。高幅度运动集中在Gly-Pro-Gly序列中,该序列在两种结构中均形成β-转角。

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