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人纤溶酶原kringle 4和kringle 5区域的功能独立性

Functional independence of the kringle 4 and kringle 5 regions of human plasminogen.

作者信息

Menhart N, McCance S G, Sehl L C, Castellino F J

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Indiana 46556.

出版信息

Biochemistry. 1993 Aug 31;32(34):8799-806. doi: 10.1021/bi00085a010.

Abstract

As part of continuing studies to evaluate whether the kringle domain regions of human plasminogen (HPg) exhibit independent conformational properties, simple model systems are required. Toward this end, we have constructed cDNA regions of HPg encoding its kringle 4 ([K4HPg]) and kringle 4-5 ([K4HPgK5HPg]) regions, expressed these gene fragments in bacterial cells, and purified the recombinant (r) products. The resulting r-[K4HPgK5HPg] was also employed to obtain the r-[K5HPg] domain of HPg by limited elastolytic digestion of this double-kringle polypeptide. The omega-amino acid ligand binding properties and thermal denaturation characteristics of r-[K4HPg], r-[K5HPg], and r-[K4HPgK5HPg] were determined, along with those for the [K5HPg] domain linked to the protease (P) region of HPg ([K5HPg]P). This allowed us to evaluate whether the conformational properties of the [K5HPg] module were influenced by the presence of its neighboring domains in HPg. The temperature midpoint of maximum heat capacity, Tm (and calorimetric enthalpy, delta H), for thermal denaturation of r-[K4HPg] was 57.8 degrees C (79.8 kcal/mol) in the absence of epsilon-aminocaproic acid (EACA) and 70.8 degrees C (93.7 kcal/mol) in the presence of that ligand. The corresponding values for isolated r-[K5HPg] were 50.4 degrees C (78.4 kcal/mol) and 61.0 degrees C (89.8 kcal/mol), respectively. These parameters for the isolated kringles were essentially unchanged when these same kringle domains were present in the r-[K4HPgK5HPg] and [K5HPg]P covalently linked pairs. Similarly, the thermodynamic characteristics (delta G, delta H, and delta S) that describe the binding energy of EACA to r-[K4HPg] at 25 degrees C were -6.3 kcal/mol, -4.5 kcal/mol, and 6.0 eu, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

作为持续研究的一部分,以评估人纤溶酶原(HPg)的kringle结构域区域是否具有独立的构象特性,需要简单的模型系统。为此,我们构建了编码其kringle 4([K4HPg])和kringle 4-5([K4HPgK5HPg])区域的HPg cDNA区域,在细菌细胞中表达这些基因片段,并纯化重组(r)产物。所得的r-[K4HPgK5HPg]也用于通过对这种双kringle多肽进行有限的弹性蛋白酶消化来获得HPg的r-[K5HPg]结构域。测定了r-[K4HPg]、r-[K5HPg]和r-[K4HPgK5HPg]以及与HPg蛋白酶(P)区域相连的[K5HPg]结构域([K5HPg]P)的ω-氨基酸配体结合特性和热变性特征。这使我们能够评估[K5HPg]模块的构象特性是否受到其在HPg中相邻结构域的存在的影响。在不存在ε-氨基己酸(EACA)的情况下,r-[K4HPg]热变性的最大热容量温度中点Tm(和量热焓,ΔH)为57.8℃(79.8千卡/摩尔),在存在该配体的情况下为70.8℃(93.7千卡/摩尔)。分离的r-[K5HPg]的相应值分别为50.4℃(78.4千卡/摩尔)和61.0℃(89.8千卡/摩尔)。当这些相同的kringle结构域存在于r-[K4HPgK5HPg]和[K5HPg]P共价连接对中时,分离的kringles的这些参数基本不变。同样,在25℃下描述EACA与r-[K4HPg]结合能的热力学特征(ΔG、ΔH和ΔS)分别为-6.3千卡/摩尔、-4.5千卡/摩尔和6.0 eu。(摘要截断于250字)

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