Graf von Roedern E, Brandstetter H, Engh R A, Bode W, Grams F, Moroder L
Max-Planck-Institut für Biochemie, Am Klopferspitz 18A, D-82152 Martinsried, Germany, Department of Biotechnology, Boehringer Mannheim GmbH, D-82372 Penzberg, Germany.
J Med Chem. 1998 Jul 30;41(16):3041-7. doi: 10.1021/jm980112p.
Malonic acid hydroxamate derivatives bis-substituted at the methylene group were synthesized as potential nonpeptidic inhibitors of human neutrophil collagenase (MMP8). The presence of an aromatic residue both at the C2 malonic acid position and in the C-terminal tail for hydrophobic interactions with the surface-exposed S1 binding site and the S1' pocket of the enzyme, respectively, was found to be sufficient for submicromolar inhibition potencies. For optimal insertion of the aryl amide group into the hydrophobic S1' pocket, spacing of the C-terminal phenyl group by at least a 3C-chain was required. In view of these results the achiral indan-2, 2-dicarboxylic acid was used to mimic the 2-benzyl-2-methylmalonic acid residue, and its derivatization to the 3-phenylpropyl amide hydroxamate produced a potent, achiral, low-mass inhibitor of MMP8 (Ki = 0.3 microM), the binding mode of which was unambiguously determined by X-ray crystallographic analysis.
合成了在亚甲基处双取代的丙二酸异羟肟酸酯衍生物,作为人中性粒细胞胶原酶(MMP8)潜在的非肽类抑制剂。研究发现,在丙二酸的C2位置和C末端尾部均存在芳香族残基,分别与酶的表面暴露的S1结合位点和S1'口袋进行疏水相互作用,足以产生亚微摩尔级的抑制效力。为了使芳基酰胺基团最佳地插入疏水的S1'口袋,C末端苯基至少需要间隔3个碳链。鉴于这些结果,使用非手性茚-2,2-二羧酸模拟2-苄基-2-甲基丙二酸残基,将其衍生为3-苯基丙基酰胺异羟肟酸酯,得到了一种有效的、非手性的、低质量的MMP8抑制剂(Ki = 0.3 microM),其结合模式通过X射线晶体学分析明确确定。