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首页> 外文期刊>Journal of Molecular Biology >HUMAN ALPHA-THROMBIN INHIBITION BY THE HIGHLY SELECTIVE COMPOUNDS N-ETHOXYCARBONYL-D-PHE-PRO-ALPHA-AZALYS P-NITROPHENYL ESTER AND N-CARBOBENZOXY-PRO-ALPHA-AZALYS P-NITROPHENYL ESTER - A KINETIC, THERMODYNAMIC AND X-RAY CRYSTALLOGRAPHIC STUDY
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HUMAN ALPHA-THROMBIN INHIBITION BY THE HIGHLY SELECTIVE COMPOUNDS N-ETHOXYCARBONYL-D-PHE-PRO-ALPHA-AZALYS P-NITROPHENYL ESTER AND N-CARBOBENZOXY-PRO-ALPHA-AZALYS P-NITROPHENYL ESTER - A KINETIC, THERMODYNAMIC AND X-RAY CRYSTALLOGRAPHIC STUDY

机译:高选择性化合物N-乙氧基羰基-D-PHE-原α-氮杂的对硝基苯酚酯和N-羰基-原α-氮杂的对苯二酚-磷酸酯对人体的α-凝血酶的抑制作用晶体学研究

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Kinetics, thermodynamics and structural aspects of human alpha-thrombin (thrombin) inhibition by newly synthesized low molecular weight derivatives of alpha-azalysine have been investigated. The thrombin catalyzed hydrolysis of N-ethoxycarbonyl-D-Phe-Pro-alpha-azaLys p-nitrophenyl ester (Eoc-D-Phe-Pro-azaLys-ONp) and N-carbobenzoxy-Pro-alpha-azaLys p-nitrophenyl ester (Cbz-Pro-azaLys-ONp) was investigated at pH 6.2 and 21.0 degrees C, and analyzed in parallel with that of N-alpha-(N,N-dimethylcarbamoyl)-alpha-azalysine p-nitrophenyl ester (Dmc-azaLys-ONp). Decarboxylation following the enzymatic hydrolysis of these p-nitrophenyl esters gave the corresponding 1-peptidyl-2(4-aminobutyl) hydrazines (peptidyl-Abh) showing properties of thrombin competitive inhibitors. Therefore, thermodynamics for the reversible binding of D-Phe-Pro-Abh, Cbz-Pro-Abh and Dmc-Abh to thrombin was examined. These results are consistent with the minimum four-step catalytic mechanism for product inhibition of serine proteinases. Eoc-D-Phe-Pro-azaLys-ONp and Eoc-D-Phe-Pro-Abh display a sub-micromolar affinity for thrombin together with a high selectivity versus homologous plasmatic and pancreatic serine proteinases acting on cationic substrates. The three-dimensional structures of the reversible non-covalent thrombin:Eoc-D-Phe-Pro-Abh and thrombin:Cbz-Pro-Abh complexes have been determined by X-ray crystallography at 2.0 A resolution (R-factor = 0.169 and 0.179, respectively), and analyzed in parallel with that of the thrombin:Dmc-azaLys acyl.enzyme adduct. Both Eoc-D-Phe-Pro-Abh and Cbz-Pro-Abh competitive inhibitors are accommodated in the thrombin active center, spanning the region between the aryl binding site and the S-1 primary specificity subsite. (C) 1997 Academic Press Limited. [References: 49]
机译:研究了新合成的低分子量α-氮杂赖氨酸衍生物对人α-凝血酶(凝血酶)抑制的动力学,热力学和结构方面。凝血酶催化的N-乙氧基羰基-D-Phe-Pro-α-氮杂Lys对硝基苯酯(Eoc-D-Phe-Pro-azaLys-ONp)和N-碳苯甲氧基-Pro-α-氮杂Lys对硝基苯酯( Cbz-Pro-azaLys-ONp在pH 6.2和21.0摄氏度下进行了研究,并与N-α-(N,N-二甲基氨基甲酰基)-α-氮杂赖氨酸对硝基苯酯(Dmc-azaLys-ONp)平行进行了分析)。这些对硝基苯基酯经酶促水解后的脱羧反应得到相应的1-肽基-2(4-氨基丁基)肼(肽基-Abh),显示出凝血酶竞争性抑制剂的特性。因此,研究了D-Phe-Pro-Abh,Cbz-Pro-Abh和Dmc-Abh与凝血酶可逆结合的热力学。这些结果与抑制丝氨酸蛋白酶的最小四步催化机理是一致的。 Eoc-D-Phe-Pro-azaLys-ONp和Eoc-D-Phe-Pro-Abh对凝血酶表现出亚微摩尔的亲和力,并且对阳离子底物上的同源血浆和胰丝氨酸蛋白酶具有高选择性。可逆的非共价凝血酶:Eoc-D-Phe-Pro-Abh和凝血酶:Cbz-Pro-Abh络合物的三维结构已通过X射线晶体学在2.0 A分辨率下测定(R因子= 0.169和0.179),并与凝血酶:Dmc-azaLys酰基酶加合物平行分析。 Eoc-D-Phe-Pro-Abh和Cbz-Pro-Abh竞争性抑制剂均位于凝血酶活性中心,跨越芳基结合位点和S-1主要特异性亚位点之间的区域。 (C)1997 Academic Press Limited。 [参考:49]

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