Sperandio Olivier, Miteva Maria A, Segers Kenneth, Nicolaes Gerry A F, Villoutreix Bruno O
Inserm U648, University of Paris 5, 45 rue des Sts Peres, 75006 Paris, France.
Open Biochem J. 2008;2:29-37. doi: 10.2174/1874091X00802010029. Epub 2008 Mar 10.
During these last 15 years, drug discovery strategies have essentially focused on identifying small molecules able to inhibit catalytic sites. However, other mechanisms could be targeted. Protein-protein interactions play crucial roles in a number of biological processes, and, as such, their disruption or stabilization is becoming an area of intense activity. Along the same line, inhibition of protein-membrane could be of major importance in several disease indications. Despite the many challenges associated with the development of such classes of interaction modulators, there has been considerable success in the recent years. Importantly, through the existence of protein hot-spots and the presence of druggable pockets at the macromolecular interfaces or in their vicinities, it has been possible to find small molecule effectors using a variety of screening techniques, including combined virtual ligand-in vitro screening strategy. Indeed such in silico-in vitro protocols emerge as the method of choice to facilitate our quest of novel drug-like compounds or of mechanistic probes aiming at facilitating the understanding of molecular reactions involved in the Health and Disease process. In this review, we comment recent successes of combined in silico-in vitro screening methods applied to modulating macromolecular interactions with a special emphasis on protein-membrane interactions.
在过去的15年里,药物发现策略主要集中在识别能够抑制催化位点的小分子上。然而,其他机制也可以成为靶点。蛋白质-蛋白质相互作用在许多生物过程中起着关键作用,因此,对它们的破坏或稳定正成为一个活跃的研究领域。同样,抑制蛋白质-膜相互作用在几种疾病适应症中可能具有重要意义。尽管开发这类相互作用调节剂面临诸多挑战,但近年来已取得了相当大的成功。重要的是,通过蛋白质热点的存在以及在大分子界面或其附近存在可成药口袋,利用包括虚拟配体与体外筛选相结合的策略等多种筛选技术,已经有可能找到小分子效应物。事实上,这种计算机辅助体外实验方案已成为促进我们寻找新型类药物化合物或旨在促进对健康和疾病过程中涉及的分子反应理解之机制探针的首选方法。在本综述中,我们评论了计算机辅助体外筛选方法在调节大分子相互作用方面的最新成功,特别强调了蛋白质-膜相互作用。