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来自小扁豆(兵豆属,L)种子的一种强效鲍曼-伯克蛋白酶抑制剂的抑制特性及溶液结构

Inhibitory properties and solution structure of a potent Bowman-Birk protease inhibitor from lentil (Lens culinaris, L) seeds.

作者信息

Ragg Enzio M, Galbusera Valerio, Scarafoni Alessio, Negri Armando, Tedeschi Gabriella, Consonni Alessandro, Sessa Fabio, Duranti Marcello

机构信息

Department of Agri-Food Molecular Sciences, Università degli Studi, Milano, Italy.

出版信息

FEBS J. 2006 Sep;273(17):4024-39. doi: 10.1111/j.1742-4658.2006.05406.x. Epub 2006 Aug 2.

Abstract

Bowman-Birk serine protease inhibitors are a family of small plant proteins, whose physiological role has not been ascertained as yet, while chemopreventive anticarcinogenic properties have repeatedly been claimed. In this work we present data on the isolation of a lentil (Lens culinaris, L., var. Macrosperma) seed trypsin inhibitor (LCTI) and its functional and structural characterization. LCTI is a 7448 Da double-headed trypsin/chymotrypsin inhibitor with dissociation constants equal to 0.54 nM and 7.25 nM for the two proteases, respectively. The inhibitor is, however, hydrolysed by trypsin in a few minutes timescale, leading to a dramatic loss of its affinity for the enzyme. This is due to a substantial difference in the kon and k*on values (1.1 microM-1.s-1 vs. 0.002 microM-1.s-1), respectively, for the intact and modified inhibitor. A similar behaviour was not observed with chymotrypsin. The twenty best NMR structures concurrently showed a canonical Bowman-Birk inhibitor (BBI) conformation with two antipodal beta-hairpins containing the inhibitory domains. The tertiary structure is stabilized by ion pairs and hydrogen bonds involving the side chain and backbone of Asp10-Asp26-Arg28 and Asp36-Asp52 residues. At physiological pH, the final structure results in an asymmetric distribution of opposite charges with a negative electrostatic potential, centred on the C-terminus, and a highly positive potential, surrounding the antitryptic domain. The segment 53-55 lacks the anchoring capacity found in analogous BBIs, thus rendering the protein susceptible to hydrolysis. The inhibitory properties of LCTI, related to the simultaneous presence of two key amino acids (Gln18 and His54), render the molecule unusual within the natural Bowman-Birk inhibitor family.

摘要

鲍曼-伯克丝氨酸蛋白酶抑制剂是一类小的植物蛋白家族,其生理作用尚未确定,但其化学预防抗癌特性却屡有报道。在这项工作中,我们展示了关于从扁豆(Lens culinaris, L., var. Macrosperma)种子中分离出胰蛋白酶抑制剂(LCTI)及其功能和结构表征的数据。LCTI是一种7448道尔顿的双头胰蛋白酶/胰凝乳蛋白酶抑制剂,对这两种蛋白酶的解离常数分别为0.54纳摩尔和7.25纳摩尔。然而,该抑制剂在几分钟内就会被胰蛋白酶水解,导致其对该酶的亲和力急剧丧失。这是由于完整抑制剂和修饰后抑制剂的正向速率常数(kon)和逆向速率常数(k*on)值存在显著差异(分别为1.1微摩尔-1·秒-1和0.002微摩尔-1·秒-1)。用胰凝乳蛋白酶未观察到类似行为。同时得到的二十个最佳核磁共振结构显示出典型的鲍曼-伯克抑制剂(BBI)构象,有两个包含抑制域的对映β-发夹结构。三级结构通过涉及Asp10-Asp26-Arg28和Asp36-Asp52残基侧链和主链的离子对和氢键得以稳定。在生理pH值下,最终结构导致相反电荷的不对称分布,在C端有负静电势,而在抗胰蛋白酶域周围有高度正电势。53-55片段缺乏类似BBI中发现的锚定能力,因此使该蛋白易于水解。LCTI的抑制特性与两个关键氨基酸(Gln18和His54)的同时存在有关,这使得该分子在天然鲍曼-伯克抑制剂家族中与众不同。

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