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人纤溶酶原kringle 5结构域片段的分离、纯化及¹H-NMR表征

Isolation, purification and 1H-NMR characterization of a kringle 5 domain fragment from human plasminogen.

作者信息

Thewes T, Ramesh V, Simplaceanu E L, Llinás M

出版信息

Biochim Biophys Acta. 1987 Apr 8;912(2):254-69. doi: 10.1016/0167-4838(87)90096-3.

DOI:10.1016/0167-4838(87)90096-3
PMID:3030435
Abstract

A scheme is proposed for generating the intact Val-448-Phe-545 polypeptide of human plasminogen which contains the fifth kringle domain of the plasmin heavy chain. The procedure is based on a pepsin fragmentation of miniplasminogen and involves the purification of the kringle 5-containing fragment by gel filtration and ion-exchange chromatography. The final product is characterized by amino acid analysis, N- and C-terminal analyses, and high-resolution 1H-NMR spectroscopy at both 300 MHz and 611 MHz. We detect a (40:60%) Asp/Asn heterogeneity at site 452 of the Glu-plasminogen molecule. In the conventional kringle numbering system, the kringle 5 domain extends from Cys-1 to Cys-80, which corresponds to Cys-461 to Cys-540 in plasminogen. A preliminary 1H-NMR characterization of kringle 5 focuses on the global conformational features of the polypeptide. Assignments are given for a number of resonances, including the Tyr-72, the His imidazoles' and the Trp indoles' spin systems. Comparison with human plasminogen kringles 1 and 4 shows that the kringle 5 conformation is highly structured and very similar to that of the homologous domains. This conservancy is particularly striking in the environment surrounding Leu-46 and in the overall features of the aromatic spectrum. There are some differences, particularly in the buried His-33 imidazole group, whose H2 resonance is shifted to 9.67 ppm. A preliminary study of benzamidine-binding shows that the ligand interacts weakly (Ka approximately equal to 1.7 mM -1) mainly through the amidino functional group. Trp-62 and Tyr-72 are significantly perturbed by benzamidine, suggesting that these residues are part of the ligand-binding site.

摘要

本文提出了一种生成人纤溶酶原完整的Val-448-Phe-545多肽的方案,该多肽包含纤溶酶重链的第五个kringle结构域。该方法基于微纤溶酶原的胃蛋白酶裂解,并通过凝胶过滤和离子交换色谱法纯化含kringle 5的片段。最终产物通过氨基酸分析、N端和C端分析以及300 MHz和611 MHz的高分辨率1H-NMR光谱进行表征。我们在Glu-纤溶酶原分子的452位点检测到(40:60%)的Asp/Asn异质性。在传统的kringle编号系统中,kringle 5结构域从Cys-1延伸至Cys-80,这对应于纤溶酶原中的Cys-461至Cys-540。kringle 5的初步1H-NMR表征聚焦于多肽的整体构象特征。给出了一些共振的归属,包括Tyr-72、His咪唑环和Trp吲哚环的自旋系统。与人纤溶酶原kringle 1和4的比较表明,kringle 5构象高度结构化,与同源结构域非常相似。这种保守性在Leu-46周围的环境和芳香族光谱的整体特征中尤为显著。存在一些差异,特别是在埋藏的His-33咪唑基团中,其H2共振移至9.67 ppm。苯甲脒结合的初步研究表明,配体主要通过脒基官能团进行弱相互作用(Ka约等于1.7 mM-1)。Trp-62和Tyr-72受到苯甲脒的显著扰动,表明这些残基是配体结合位点的一部分。

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Binding of a substrate analogue can induce co-operative structure in the plasmin serine-proteinase domain.底物类似物的结合可诱导纤溶酶丝氨酸蛋白酶结构域中的协同结构。
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