Ghosh A K, Kincaid J F, Walters D E, Chen Y, Chaudhuri N C, Thompson W J, Culberson C, Fitzgerald P M, Lee H Y, McKee S P, Munson P M, Duong T T, Darke P L, Zugay J A, Schleif W A, Axel M G, Lin J, Huff J R
Department of Chemistry, University of Illinois at Chicago 60607, USA.
J Med Chem. 1996 Aug 16;39(17):3278-90. doi: 10.1021/jm960128k.
Design and synthesis of nonpeptidal bis-tetrahydrofuran ligands based upon the X-ray crystal structure of the HIV-1 protease-inhibitor complex 1 led to replacement of two amide bonds and a 10 pi-aromatic system of Ro 31-8959 class of HIV protease inhibitors. Detailed structure-activity studies have now established that the position of ring oxygens, ring size, and stereochemistry are all crucial to potency. Of particular interest, compound 49 with (3S,3aS,6aS)-bis-Thf is the most potent inhibitor (IC50 value 1.8 +/- 0.2 nM; CIC95 value 46 +/- 4 nM) in this series. The X-ray structure of protein-inhibitor complex 49 has provided insight into the ligand-binding site interactions. As it turned out, both oxygens in the bis-Thf ligands are involved in hydrogen-bonding interactions with Asp 29 and Asp 30 NH present in the S2 subsite of HIV-1 protease. Stereoselective routes have been developed to obtain these novel ligands in optically pure form.
基于HIV-1蛋白酶抑制剂复合物1的X射线晶体结构设计并合成非肽双四氢呋喃配体,导致HIV蛋白酶抑制剂Ro 31-8959类中的两个酰胺键和一个10π芳香体系被取代。详细的构效关系研究现已确定,环氧的位置、环大小和立体化学对活性均至关重要。特别值得关注的是,具有(3S,3aS,6aS)-双四氢呋喃的化合物49是该系列中最有效的抑制剂(IC50值为1.8±0.2 nM;CIC95值为46±4 nM)。蛋白质-抑制剂复合物49的X射线结构揭示了配体结合位点的相互作用。结果表明,双四氢呋喃配体中的两个氧原子都与HIV-1蛋白酶S2亚位点中的Asp 29和Asp 30 NH形成氢键相互作用。已开发出立体选择性路线以获得光学纯形式的这些新型配体。