Selcia Ltd. , Fyfield Business & Research Park, Fyfield Road, Ongar, Essex CM5 0GS, United Kingdom.
Cypralis Ltd. , Babraham Research Campus, Cambridge CB22 3AT, United Kingdom.
J Med Chem. 2017 Feb 9;60(3):1000-1017. doi: 10.1021/acs.jmedchem.6b01329. Epub 2017 Jan 31.
Cyclophilin inhibition has been a target for the treatment of hepatitis C and other diseases, but the generation of potent, drug-like molecules through chemical synthesis has been challenging. In this study, a set of macrocyclic cyclophilin inhibitors was synthesized based on the core structure of the natural product sanglifehrin A. Initial compound optimization identified the valine-m-tyrosine-piperazic acid tripeptide (Val-m-Tyr-Pip) in the sanglifehrin core, stereocenters at C14 and C15, and the hydroxyl group of the m-tyrosine (m-Tyr) residue as key contributors to compound potency. Replacing the C18-C21 diene unit of sanglifehrin with a styryl group led to potent compounds that displayed a novel binding mode in which the styrene moiety engaged in a π-stacking interaction with Arg55 of cyclophilin A (Cyp A), and the m-Tyr residue was displaced into solvent. This observation allowed further simplifications of the scaffold to generate new lead compounds in the search for orally bioavailable cyclophilin inhibitors.
亲环素抑制已成为治疗丙型肝炎和其他疾病的靶点,但通过化学合成生成有效、类似药物的分子一直具有挑战性。在这项研究中,基于天然产物桑弗林 A 的核心结构合成了一组大环亲环素抑制剂。初步的化合物优化确定了桑弗林核心中的缬氨酸- m -酪氨酸-哌嗪酸三肽(Val-m-Tyr-Pip)、C14 和 C15 处的立体中心以及 m -酪氨酸(m-Tyr)残基的羟基是化合物效力的关键贡献者。用苯乙烯基取代桑弗林的 C18-C21 二烯单元可得到有效化合物,这些化合物显示出一种新的结合模式,其中苯乙烯部分与亲环素 A(Cyp A)的 Arg55 发生π堆积相互作用,并且 m-Tyr 残基被置换到溶剂中。这一观察结果允许进一步简化支架,以在寻找口服生物可用的亲环素抑制剂时生成新的先导化合物。