Wieczerzak Ewa, Drabik Piotr, Łankiewicz Leszek, Ołdziej Stanisław, Grzonka Zbigniew, Abrahamson Magnus, Grubb Anders, Brömme Dieter
Faculty of Chemistry, University of Gdańsk, Gdańsk, Poland.
J Med Chem. 2002 Sep 12;45(19):4202-11. doi: 10.1021/jm020850k.
A series of azapeptides as potential inhibitors of cysteine proteases were synthesized. Their structures, based on the binding center of cystatins, contain an azaglycine residue (Agly) in place of the evolutionarily conserved glycine residue in the N-terminal part of the enzyme binding region of cystatins. Incorporation of Agly should lead to deactivation of the acyl-enzyme complex formed against nucleophilic attack by water molecules in the final step of peptide bond hydrolysis. The majority of synthesized azapeptides shows high inhibitory potency toward the investigated cysteine proteases, papain, cathepsin B, and cathepsin K. One of them, Z-Arg-Leu-Val-Agly-Ile-Val-OMe (compound 17), which contains in its sequence the amino acid residues from the N-terminal binding segment as well as the hydrophobic residues from the first binding loop of human cystatin C, proved to be a highly potent and selective inhibitor of cathepsin B. It inhibits cathepsin B with a K(i) value of 0.088 nM. To investigate the influence of the structure of compound 17 for its inhibitory properties, we determined its conformation by means of NMR studies and theoretical calculations. The Z-Arg-Leu-Val-Agly fragment, covalently linked to Cys29 of cathepsin B, was also developed and modeled, in the catalytic pocket of the enzyme, through a molecular dynamics approach, to analyze ligand-protein interactions in detail. Analysis of the simulation trajectories generated using the AMBER force field provided us with atomic-level understanding of the conformational variability of this inhibitor, which is discussed in the context of other experimental and theoretical data.
合成了一系列作为半胱氨酸蛋白酶潜在抑制剂的氮杂肽。基于胱抑素的结合中心,它们的结构在胱抑素酶结合区域N端部分含有一个氮杂甘氨酸残基(Agly),取代了进化上保守的甘氨酸残基。引入Agly应导致在肽键水解的最后一步中形成的酰基 - 酶复合物失活,该复合物会受到水分子的亲核攻击。大多数合成的氮杂肽对所研究的半胱氨酸蛋白酶、木瓜蛋白酶、组织蛋白酶B和组织蛋白酶K表现出高抑制效力。其中之一,Z - Arg - Leu - Val - Agly - Ile - Val - OMe(化合物17),其序列中包含来自人胱抑素C N端结合段的氨基酸残基以及来自第一个结合环的疏水残基,被证明是组织蛋白酶B的高效和选择性抑制剂。它抑制组织蛋白酶B的K(i)值为0.088 nM。为了研究化合物17的结构对其抑制特性的影响,我们通过核磁共振研究和理论计算确定了其构象。还通过分子动力学方法在酶的催化口袋中对与组织蛋白酶B的Cys29共价连接的Z - Arg - Leu - Val - Agly片段进行了开发和建模,以详细分析配体 - 蛋白质相互作用。使用AMBER力场生成的模拟轨迹分析为我们提供了对该抑制剂构象变异性的原子水平理解,并结合其他实验和理论数据进行了讨论。