Thompson S K, Murthy K H, Zhao B, Winborne E, Green D W, Fisher S M, DesJarlais R L, Tomaszek T A, Meek T D, Gleason J G
Department of Medicinal Chemistry, SmithKline Beecham Pharmaceuticals, King of Prussia, Pennsylvania 19406.
J Med Chem. 1994 Sep 16;37(19):3100-7. doi: 10.1021/jm00045a015.
The rational design and synthesis of a highly potent inhibitor of HIV-1 protease have been accomplished. The inhibitor, SB 206343, is based on a model derived from the structure of the MVT-101/HIV-1 protease complex and contains a 4(5)-acylimidazole ring as an isosteric replacement for the P1'--P2' amide bond. It is a competitive inhibitor with an apparent inhibition constant of 0.6 nM at pH 6.0. The three-dimensional structure of SB 206343 bound in the active site of HIV-1 protease has been determined at 2.3 A resolution by X-ray diffraction techniques and refined to a crystallographic discrepancy factor, R (= sigma parallel Fo magnitude of/Fc parallel/sigma magnitude of), of 0.194. The inhibitor is held in the enzyme by a set of hydrophobic and polar interactions. N-3 of the imidazole ring participates in a novel hydrogen-bonding interaction with the bound water molecule, demonstrating the effectiveness of the imidazole ring as an isosteric replacement for the P1'--P2' amide bond in hydroxyethylene-based HIV-1 protease inhibitors. Also present are hydrogen-bonding interactions between N-1 of the imidazole ring and the carbonyl of Gly-127 as well as between the imidazole acyl carbonyl oxygen and the amide nitrogen of Asp-129, exemplifying the peptidomimetic nature of the 4(5)-acylimidazole isostere. All of these interactions are in qualitative agreement with those predicted by the model.
已成功完成高效HIV-1蛋白酶抑制剂的合理设计与合成。该抑制剂SB 206343基于源自MVT-101/HIV-1蛋白酶复合物结构的模型,含有一个4(5)-酰基咪唑环作为P1'-P2'酰胺键的等排体替代物。它是一种竞争性抑制剂,在pH 6.0时的表观抑制常数为0.6 nM。通过X射线衍射技术以2.3 Å分辨率测定了结合在HIV-1蛋白酶活性位点的SB 206343的三维结构,并将其精修至晶体学差异因子R(=∑|Fo|-|Fc|/∑|Fc|)为0.194。该抑制剂通过一系列疏水和极性相互作用固定在酶中。咪唑环的N-3与结合的水分子参与了一种新型氢键相互作用,证明了咪唑环作为基于羟乙烯的HIV-1蛋白酶抑制剂中P1'-P2'酰胺键等排体替代物的有效性。还存在咪唑环的N-1与Gly-127的羰基之间以及咪唑酰基羰基氧与Asp-129的酰胺氮之间的氢键相互作用,例证了4(5)-酰基咪唑等排体的拟肽性质。所有这些相互作用在性质上与模型预测的一致。