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重组人唾液胱抑素SN及其杆状病毒系统产生的变体对木瓜蛋白酶和组织蛋白酶C抑制作用的差异效应。

Differential effect toward inhibition of papain and cathepsin C by recombinant human salivary cystatin SN and its variants produced by a baculovirus system.

作者信息

Tseng C C, Tseng C P, Levine M J, Bobek L A

机构信息

Divisions of Basic Sciences and of Restorative and Prosthodontic Sciences, Room 1027 S, College of Dentistry, New York University, 345 East 24th Street, New York, New York 10010-4086, USA.

出版信息

Arch Biochem Biophys. 2000 Aug 1;380(1):133-40. doi: 10.1006/abbi.2000.1909.

Abstract

Human salivary cystatin SN (CsnSN) is a member of the cystatin superfamily of cysteine proteinase inhibitors. In this study we used a baculovirus expression system to produce a full-length unaltered CsnSN and its variants. The variants were constructed with the changes in the three predicted proteinase-binding regions: the N-terminus (variant N(12-13), G12A-G13A), beta-hairpin loop I (variant L(56-58), Q56G-T57G-V58G) and beta-hairpin loop II (variant L(106-107), P106G-W107G). The secreted CsnSNs were purified using sequential spiral cartridge ultrafiltration and DE-52 radial flow chromatography. The purified proteins were examined for papain- and cathepsin C-inhibition. The wild-type CsnSN, and variants N(12-13) and L(106-107) bound tightly to papain (K(i) < 10 pM), whereas mutation in the loop I reduced binding affinity 5700-fold (K(i) = 57 nM). On the other hand, the wild-type CsnSN bound to cathepsin C less tightly (K(i) = 100 nM). The mutation in the N-terminus or loop I reduced binding affinity by 16 (K(i) = 1.6 microM)- and 19-fold (K(i) = 1.9 microM), respectively, while mutation in loop II resulted in an ineffective cathepsin C inhibitor (K(i) = 14 microM). Collectively, these results suggest that the N-terminal G12-G13 residues of CsnSN are not essential for papain inhibition but play a role in cathepsin C inhibition; residues Q56-T57-V58 in the loop I are essential for both papain and cathepsin C inhibitions, and residues P106-W107 in the loop II are not important for papain inhibition but essential for cathepsin C inhibition. These results demonstrated that CsnSN variants have different effects toward different cysteine proteinases.

摘要

人唾液胱抑素SN(CsnSN)是半胱氨酸蛋白酶抑制剂胱抑素超家族的成员。在本研究中,我们使用杆状病毒表达系统生产全长未改变的CsnSN及其变体。这些变体是通过改变三个预测的蛋白酶结合区域构建的:N端(变体N(12 - 13),G12A - G13A)、β-发夹环I(变体L(56 - 58),Q56G - T57G - V58G)和β-发夹环II(变体L(106 - 107),P106G - W107G)。分泌的CsnSNs使用连续螺旋柱超滤和DE - 52径向流色谱法进行纯化。对纯化的蛋白质进行木瓜蛋白酶和组织蛋白酶C抑制作用检测。野生型CsnSN以及变体N(12 - 13)和L(106 - 107)与木瓜蛋白酶紧密结合(K(i) < 10 pM),而环I中的突变使结合亲和力降低了5700倍(K(i) = 57 nM)。另一方面,野生型CsnSN与组织蛋白酶C的结合较弱(K(i) = 100 nM)。N端或环I中的突变分别使结合亲和力降低了16倍(K(i) = 1.6 μM)和19倍(K(i) = 1.9 μM),而环II中的突变导致产生无效的组织蛋白酶C抑制剂(K(i) = 14 μM)。总体而言,这些结果表明CsnSN的N端G12 - G13残基对于木瓜蛋白酶抑制并非必需,但在组织蛋白酶C抑制中起作用;环I中的Q56 - T57 - V58残基对于木瓜蛋白酶和组织蛋白酶C抑制均至关重要,而环II中的P106 - W107残基对于木瓜蛋白酶抑制不重要,但对于组织蛋白酶C抑制至关重要。这些结果表明CsnSN变体对不同的半胱氨酸蛋白酶具有不同的作用。

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