School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332-0400, USA.
J Med Chem. 2010 Aug 26;53(16):6100-11. doi: 10.1021/jm100507q.
Inhibition of histone deacetylase (HDAC) function is a validated therapeutic strategy for cancer treatment. Of the several structurally distinct small molecule histone deacetylase inhibitors (HDACi) reported, macrocyclic depsipeptides possess the most complex cap groups and have demonstrated excellent HDAC inhibition potency and isoform selectivity. Unfortunately, the development of macrocyclic depsipeptides has been hampered in part because of development problems characteristic of large peptides and the complex reaction schemes required for their synthesis. Herein we report that tricyclic ketolide TE-802 is an excellent mimetic for the peptide backbone of macrocyclic HDACi. Compounds derived from this template are particularly selective against HDACs 1 and 2 with nanomolar inhibitory activity. Interrogation of the association between a subset of these compounds and key HDAC isoforms, using AutoDock, enables a molecular description of the interaction between the HDAC enzyme's outer rim and the inhibitors' macrocyclic cap group that are responsible for compound affinity and presumably isoform selectivity.
组蛋白去乙酰化酶 (HDAC) 功能的抑制是癌症治疗的一种有效的治疗策略。在报道的几种结构不同的小分子组蛋白去乙酰化酶抑制剂 (HDACi) 中,大环脂肽具有最复杂的帽基团,并表现出优异的 HDAC 抑制活性和同工酶选择性。不幸的是,大环脂肽的开发受到部分阻碍,部分原因是其开发过程中存在大肽特有的问题,以及其合成所需的复杂反应方案。本文报道了三环酮内酯 TE-802 是大环 HDACi 肽骨架的极好模拟物。源自该模板的化合物对 HDAC1 和 2 具有特别的选择性,抑制活性达到纳摩尔级。使用 AutoDock 对这些化合物中的一部分与关键 HDAC 同工酶之间的结合进行分析,使我们能够对 HDAC 酶外边缘与抑制剂的大环帽基团之间的相互作用进行分子描述,这是化合物亲和力的原因,可能也是同工酶选择性的原因。