Suppr超能文献

氯甲基酮底物类似物与结晶木瓜蛋白酶的结合。

Binding of chloromethyl ketone substrate analogues to crystalline papain.

作者信息

Drenth J, Kalk K H, Swen H M

出版信息

Biochemistry. 1976 Aug 24;15(17):3731-8. doi: 10.1021/bi00662a014.

Abstract

Papain (EC 3.4.22.2) is a proteolytic enzyme, the three-dimensional structure of which has been determined by x-ray diffraction at 2.8 A resolution (Drenth, J., Jansonius, J.N., Koekoek, R., Swen, H. M., and Wothers, B.G. (1968), Nature (London) 218, 929-932). The active site is a groove on the molecular surface in which the essential sulfhydryl group of cysteine-25 is situated next to the imidazole ring of histidine-159. The main object of this study was to determine by the difference-Fourier technique the binding mode for the substrate in the groove in order to explain the substrate specificity of the enzyme (P2 should have a hydrophobic side chain (Berger and Schechter, 1970) and to contribute to an elucidation of the catalytic mechanism. To this end, three chloromethyl ketone substrate analogues were reacted with the enzyme by covalent attachment to the sulfur atom of cysteine-25. The products crystallized isomorphously with the parent structure that is not the native, active enzyme but a mixture of oxidized papain (probably papain-SO2-) and papain with an extra cysteine attached to cysteine-25. Although this made the interpretation of the difference electron density maps less easy, it provided us with a clear picture of the way in which the acyl part of the substrate binds in the active site groove. The carbonyl oxygen of the P1 residue is near two potential hydrogen-bond donating groups, the backbone NH of cysteine-25 and the NH2 of glutamine-19. Valine residues 133 and 157 are responsible for the preference of papain in its substrate splitting. By removing the methylene group that covalently attaches the inhibitor molecules to the sulfur atom of cysteine-25 we obtained acceptable models for the acyl-enzyme structure and for the tetrahedral intermediate. The carbonyl oxygen of the P1 residue, carrying a formal negative charge in the tetrahedral intermediate, is stabilized by formation of two hydrogen bonds with the backbone NH of cysteine-25 and the NH2 group of glutamine-19. This situation resembles that suggested for the proteolytic serine enzymes (Henderson, R., Wright, C. S., Hess, G. P., and Blow, D. M. (1971), Cold Spring Harbor Symp. Quant. Biol. 36, 63-70; Robertus, J. D., Kraut, J., Alden, R. A., and Birktoft, J. J. (1972b), Biochemistry 11, 4293-4303). The nitrogen atom of the scissile peptide bond was found close to the imidazole ring of histidine-159, suggesting a role for this ring in protonating the N atom of the leaving group (Lowe, 1970). This proton transfer would be facilitated by a 30 degrees rotation of the ring around the C beta-Cgamma bond from an in-plane position with the sulfur atom to an in-plane position with the N atom. The possibility of this rotation is derived from a difference electron-density map for fully oxidizied papain vs. the parent protein.

摘要

木瓜蛋白酶(EC 3.4.22.2)是一种蛋白水解酶,其三维结构已通过分辨率为2.8埃的X射线衍射确定(德伦特,J.,扬松纽斯,J.N.,科克克,R.,斯文,H.M.,和沃瑟斯,B.G.(1968年),《自然》(伦敦)218,929 - 932)。活性位点是分子表面的一条凹槽,半胱氨酸 - 25的必需巯基位于组氨酸 - 159的咪唑环旁边。本研究的主要目的是通过差值傅里叶技术确定底物在凹槽中的结合模式,以解释该酶的底物特异性(P2应该有一个疏水侧链(伯杰和谢赫特,1970年),并有助于阐明催化机制。为此,三种氯甲基酮底物类似物通过共价连接到半胱氨酸 - 25的硫原子上与该酶反应。产物与母体结构同晶型结晶,母体结构不是天然的活性酶,而是氧化木瓜蛋白酶(可能是木瓜蛋白酶 - SO2 - )和半胱氨酸 - 25连接有额外半胱氨酸的木瓜蛋白酶的混合物。尽管这使得差值电子密度图的解释不那么容易,但它为我们提供了底物的酰基部分在活性位点凹槽中结合方式的清晰图像。P1残基的羰基氧靠近两个潜在的氢键供体基团,半胱氨酸 - 25的主链NH和谷氨酰胺 - 19的NH2。缬氨酸残基133和157决定了木瓜蛋白酶在底物切割方面的偏好。通过去除将抑制剂分子共价连接到半胱氨酸 - 25硫原子上的亚甲基,我们获得了酰基酶结构和四面体中间体的可接受模型。在四面体中间体中带有形式负电荷的P1残基的羰基氧,通过与半胱氨酸 - 25的主链NH和谷氨酰胺 - 19的NH2基团形成两个氢键而得到稳定。这种情况类似于蛋白水解丝氨酸酶的情况(亨德森,R.,赖特,C.S.,赫斯,G.P.,和布洛,D.M.(1971年),《冷泉港定量生物学研讨会》36,63 - 70;罗伯特斯,J.D.,克劳特,J.,奥尔登,R.A.,和伯克托夫特,J.J.(1972b年),《生物化学》11,4293 - 4303)。发现可裂解肽键的氮原子靠近组氨酸 - 159的咪唑环,表明该环在使离去基团的N原子质子化方面起作用(洛,1970年)。该环围绕Cβ - Cγ键从与硫原子共面的位置旋转30度到与N原子共面的位置将有助于这种质子转移。这种旋转的可能性来自完全氧化的木瓜蛋白酶与母体蛋白质的差值电子密度图。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验