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肝细胞生长因子/散射因子(HGF/SF)的NK1剪接变体的一种新晶体形式显示出广泛的铰链运动,并表明NK1二聚体起源于结构域交换。

A new crystal form of the NK1 splice variant of HGF/SF demonstrates extensive hinge movement and suggests that the NK1 dimer originates by domain swapping.

作者信息

Watanabe Keiichi, Chirgadze Dimitri Y, Lietha Daniel, de Jonge Hugo, Blundell Tom L, Gherardi Ermanno

机构信息

Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge CB2 1GA, UK.

出版信息

J Mol Biol. 2002 May 31;319(2):283-8. doi: 10.1016/S0022-2836(02)00199-7.

Abstract

NK1 is a splice variant of the polypeptide growth factor HGF/SF that consists of the N terminal (N) and first kringle (K) domains and retains receptor binding and signalling. While NK1 behaves as a monomer in solution, two independent crystallographic structures have previously shown an identical, tightly packed dimer. Here we report a novel orthorhombic crystal form of NK1 at 2.5 A resolution in which four NK1 protomers are packed in two distinct dimers in the asymmetric unit. Although the basic architecture of the new NK1 dimers is similar to the two described earlier, the new crystal form demonstrates extensive hinge movement between the N and K domain that leads to re-orientation of the receptor-binding sites. The hinge bending is evidence of the paucity of strong interactions between domains within the protomer, in contrast to the extensive interactions between protomers in the dimer. These observations are consistent with domain swapping in the dimer, such that the interdomain interactions of the monomer are replaced by equivalent interprotomer interactions in the dimer and offer a route for protein engineering of NK1 variants which may act as receptor antagonists.

摘要

NK1是多肽生长因子HGF/SF的一种剪接变体,由N端(N)和第一个kringle(K)结构域组成,并保留受体结合和信号传导功能。虽然NK1在溶液中表现为单体,但先前的两个独立晶体结构显示出相同的紧密堆积二聚体。在这里,我们报告了一种分辨率为2.5埃的NK1新正交晶型,其中四个NK1原体以两种不同的二聚体形式堆积在不对称单元中。尽管新的NK1二聚体的基本结构与之前描述的两种相似,但新的晶型显示出N和K结构域之间广泛的铰链运动,导致受体结合位点重新定向。铰链弯曲证明原体中结构域之间缺乏强相互作用,这与二聚体中原体之间广泛的相互作用形成对比。这些观察结果与二聚体中的结构域交换一致,即单体的结构域间相互作用被二聚体中同等的原体间相互作用所取代,并为可能作为受体拮抗剂的NK1变体的蛋白质工程提供了一条途径。

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