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VEK-30 与人纤溶酶原kringle 2 结构域结合的 NMR 骨架动力学。

NMR backbone dynamics of VEK-30 bound to the human plasminogen kringle 2 domain.

机构信息

W. M. Keck Center for Transgene and the Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana, USA.

出版信息

Biophys J. 2010 Jul 7;99(1):302-12. doi: 10.1016/j.bpj.2010.04.019.

Abstract

To gain insights into the mechanisms for the tight and highly specific interaction of the kringle 2 domain of human plasminogen (K2(Pg)) with a 30-residue internal peptide (VEK-30) from a group A streptococcal M-like protein, the dynamic properties of free and bound K2(Pg) and VEK-30 were investigated using backbone amide (15)N-NMR relaxation measurements. Dynamic parameters, namely the generalized order parameter, S(2), the local correlation time, tau(e), and the conformational exchange contribution, R(ex), were obtained for this complex by Lipari-Szabo model-free analysis. The results show that VEK-30 displays distinctly different dynamic behavior as a consequence of binding to K2(Pg), manifest by decreased backbone flexibility, particularly at the binding region of the peptide. In contrast, the backbone dynamics parameters of K2(Pg) displayed similar patterns in the free and bound forms, but, nonetheless, showed interesting differences. Based on our previous structure-function studies of this interaction, we also made comparisons of the VEK-30/K2(Pg) dynamics results from different kringle modules complexed with small lysine analogs. The differences in dynamics observed for kringles with different ligands provide what we believe to be new insights into the interactions responsible for protein-ligand recognition and a better understanding of the differences in binding affinity and binding specificity of kringle domains with various ligands.

摘要

为了深入了解人纤溶酶原kringle 2 结构域(K2(Pg))与 A 族链球菌 M 样蛋白内部 30 残基肽(VEK-30)紧密且高度特异相互作用的机制,使用 backbone amide (15)N-NMR relaxation measurements 研究了游离和结合态 K2(Pg)和 VEK-30 的动态特性。通过 Lipari-Szabo 无模型分析获得了该复合物的动态参数,包括广义有序参数 S(2)、局部相关时间 tau(e)和构象交换贡献 R(ex)。结果表明,VEK-30 与 K2(Pg)结合后表现出明显不同的动态行为,表现为肽结合区域的骨架灵活性降低。相比之下,K2(Pg)的骨架动力学参数在游离和结合形式中表现出相似的模式,但仍存在有趣的差异。基于我们之前对这种相互作用的结构-功能研究,我们还比较了与不同赖氨酸类似物结合的不同 kringle 模块的 VEK-30/K2(Pg)动力学结果。具有不同配体的 kringles 观察到的动力学差异为我们提供了对负责蛋白质-配体识别的相互作用的新见解,并更好地理解了各种配体的 kringle 结构域的结合亲和力和结合特异性的差异。

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Solution structure of the complex of VEK-30 and plasminogen kringle 2.VEK-30 与纤溶酶原kringle2 复合物的溶液结构。
J Struct Biol. 2010 Mar;169(3):349-59. doi: 10.1016/j.jsb.2009.09.011. Epub 2009 Sep 30.

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1
Solution structure and functional characterization of human plasminogen kringle 5.
Biochemistry. 2009 Nov 3;48(43):10208-19. doi: 10.1021/bi901433n.
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Solution structure of the complex of VEK-30 and plasminogen kringle 2.VEK-30 与纤溶酶原kringle2 复合物的溶液结构。
J Struct Biol. 2010 Mar;169(3):349-59. doi: 10.1016/j.jsb.2009.09.011. Epub 2009 Sep 30.

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