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证明反式-环氧琥珀酰-L-亮氨酰胺基-(4-胍基)丁烷(E-64)是胰蛋白酶催化水解作用最有效的低分子量抑制剂之一。通过动力学分析以及对E-64-β-胰蛋白酶复合物进行能量最小化和分子动力学模拟进行表征。

Demonstration that 1-trans-epoxysuccinyl-L-leucylamido-(4-guanidino) butane (E-64) is one of the most effective low Mr inhibitors of trypsin-catalysed hydrolysis. Characterization by kinetic analysis and by energy minimization and molecular dynamics simulation of the E-64-beta-trypsin complex.

作者信息

Sreedharan S K, Verma C, Caves L S, Brocklehurst S M, Gharbia S E, Shah H N, Brocklehurst K

机构信息

Department of Biochemistry, Queen Mary and Westfield College, University of London, U.K.

出版信息

Biochem J. 1996 Jun 15;316 ( Pt 3)(Pt 3):777-86. doi: 10.1042/bj3160777.

Abstract

1-trans-Epoxysuccinyl-L-leucylamido(4-guanidino)butane (E-64) was shown to inhibit beta-trypsin by a reversible competitive mechanism; this contrasts with the widely held view that E-64 is a class-specific inhibitor of the cysteine proteinases and reports in the literature that it does not inhibit a number of other enzymes including, notably, trypsin. The K1, value (3 x 10(-5) M) determined by kinetic analysis of the hydrolysis of N alpha-benzoyl-L-arginine 4-nitroanilide in Tris/HCl buffer, pH 7.4, at 25 degrees C, I = 0.1, catalysed by beta-trypsin is comparable with those for the inhibition of trypsin by benzamidine and 4-aminobenzamidine, which are widely regarded as the most effective low Mr inhibitors of this enzyme. Computer modelling of the beta-trypsin-E64 adsorptive complex, by energy minimization, molecular dynamics simulation and Poisson-Boltzmann electrostatic-potential calculations, was used to define the probable binding mode of E-64; the ligand lies parallel to the active-centre cleft, anchored principally by the dominant electrostatic interaction of the guanidinium cation at one end of the E-64 molecule with the carboxylate anion of Asp-171 (beta-trypsin numbering from Ile-1) in the S1-subsite, and by the interaction of the carboxylate substituent on C-2 of the epoxide ring at the other end of the molecule with Lys-43; the epoxide ring of E-64 is remote from the catalytic site serine hydroxy group. The possibility that E-64 might bind to the cysteine proteinases clostripain (from Clostridium histolyticum) and alpha-gingivain (one of the extracellular enzymes from phyromonas gingivalis) in a manner analogous to that deduced for the beta-trypsin-E-64 complex is discussed.

摘要

1-反式-环氧琥珀酰-L-亮氨酰胺基(4-胍基)丁烷(E-64)被证明通过可逆竞争机制抑制β-胰蛋白酶;这与普遍认为E-64是半胱氨酸蛋白酶的类别特异性抑制剂的观点形成对比,并且文献报道它不抑制许多其他酶,尤其是胰蛋白酶。在25℃、pH 7.4、I = 0.1的Tris/HCl缓冲液中,由β-胰蛋白酶催化水解Nα-苯甲酰-L-精氨酸4-硝基苯胺,通过动力学分析确定的K1值(3×10^(-5) M)与苯甲脒和4-氨基苯甲脒抑制胰蛋白酶的值相当,苯甲脒和4-氨基苯甲脒被广泛认为是该酶最有效的低分子量抑制剂。通过能量最小化、分子动力学模拟和泊松-玻尔兹曼静电势计算对β-胰蛋白酶-E64吸附复合物进行计算机建模,以确定E-64可能的结合模式;配体平行于活性中心裂隙,主要通过E-64分子一端的胍阳离子与S1亚位点中Asp-171(β-胰蛋白酶编号从Ile-1开始)的羧酸根阴离子之间的主要静电相互作用以及分子另一端环氧环C-2上的羧酸取代基与Lys-43之间的相互作用固定;E-64的环氧环远离催化位点丝氨酸羟基。讨论了E-64可能以类似于推导的β-胰蛋白酶-E-64复合物的方式与半胱氨酸蛋白酶梭菌蛋白酶(来自溶组织梭菌)和α-牙龈蛋白酶(牙龈卟啉单胞菌的细胞外酶之一)结合的可能性。

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