Murray Justin K, Gellman Samuel H
Department of Chemistry, University of Wisconsin, 1101 University Avenue, Madison, WI 53706, USA.
Biopolymers. 2007;88(5):657-86. doi: 10.1002/bip.20741.
The tremendous challenge of inhibiting therapeutically important protein-protein interactions has created the opportunity to extend traditional medicinal chemistry to a new class of targets and to explore nontraditional strategies. Here we review a widely studied system, the interaction between tumor suppressor p53 and its natural antagonist MDM2, for which both traditional and nontraditional approaches have been reported. This system has been a testing ground for novel proteomimetic scaffold-based strategies, i.e., for attempts to mimic the recognition surface displayed by a folded protein with unnatural oligomers. Retroinverso peptides, peptoids, terphenyls, beta-hairpins, p-oligobenzamides, beta-peptides, and miniproteins have all been explored as inhibitors of the p53/MDM2 interaction, and we focus on these oligomer-based efforts. Traditional approaches have been successful as well, and we briefly review small molecule inhibitors along with other strategies for reactivation of the p53 pathway, for comparison with oligomer- based approaches. We close with comments on an emerging dichotomy among protein-protein interaction targets.
抑制具有重要治疗意义的蛋白质-蛋白质相互作用这一巨大挑战,为将传统药物化学扩展到一类新靶点并探索非传统策略创造了机会。在此,我们综述一个被广泛研究的体系,即肿瘤抑制因子p53与其天然拮抗剂MDM2之间的相互作用,针对该体系已有传统和非传统方法的报道。这个体系一直是基于新型拟蛋白质支架策略的试验场,也就是尝试用非天然低聚物模拟折叠蛋白展示的识别表面。逆序肽、类肽、三联苯、β-发夹、对-低聚苯甲酰胺、β-肽和微型蛋白都已被探索作为p53/MDM2相互作用的抑制剂,我们将重点关注这些基于低聚物的研究成果。传统方法也取得了成功,我们简要综述小分子抑制剂以及其他重新激活p53通路的策略,以便与基于低聚物的方法进行比较。最后,我们对蛋白质-蛋白质相互作用靶点中正在出现的二分法发表评论。