CEA, Service d'Ingénierie Moléculaire des Protéines (SIMOPRO), iBiTecS, Gif sur Yvette 91191, France.
Biochimie. 2010 Nov;92(11):1501-8. doi: 10.1016/j.biochi.2010.07.017. Epub 2010 Aug 7.
Following the disappointment of clinical trials with early broad-spectrum synthetic inhibitors of matrix metalloproteases (MMPs), the field is now resurging with a new focus on the development of more selective inhibitors. Compounds able to fully discriminate between different members of the MMP family are sorely needed for therapeutic applications. Chemical efforts over the past years have led to very few selective inhibitors of MMPs. The over-exploitation of the hydroxamate function, or other strong zinc-binding groups, might be responsible for this failure. By resorting to weaker zinc-chelating groups, like phosphoryl or carboxylic groups, inhibitors with improved selectivity profiles have been developed. However, the most encouraging results have been obtained with compounds that avoid targeting the zinc but gain their affinity from plunging deeper into the MMP S(1)' cavity. Analyses of the crystal structures of MMP-13 and MMP-8 complexes with such compounds provide novel insights for the design of more selective inhibitors for other members of the MMP family.
在早期广谱基质金属蛋白酶(MMPs)合成抑制剂的临床试验令人失望之后,该领域现在重新聚焦于更具选择性抑制剂的开发。对于治疗应用,非常需要能够在 MMP 家族的不同成员之间完全区分的化合物。在过去的几年中,化学方面的努力只导致了极少数 MMP 的选择性抑制剂。这种失败可能是由于过度利用了羟胺功能或其他强锌结合基团。通过采用较弱的锌螯合基团,如磷酸基或羧基,已经开发出具有改善选择性特征的抑制剂。然而,最令人鼓舞的结果是用那些避免针对锌但通过更深入潜入 MMP S(1)'腔来获得亲和力的化合物获得的。对 MMP-13 和 MMP-8 与这些化合物形成的复合物的晶体结构的分析为设计其他 MMP 家族成员的更具选择性的抑制剂提供了新的见解。