Connolly P J, Westin C D, Loughney D A, Minor L K
R. W. Johnson Pharmaceutical Research Institute, Raritan, New Jersey 08869.
J Med Chem. 1993 Nov 12;36(23):3674-85. doi: 10.1021/jm00075a024.
Compounds comprising a series of 7-[2-(4-fluorophenyl)-4,5,6,7-tetrahydro-2H-indazol-3-yl]-3,5- dihydroxy-6-heptenoic acid sodium salts (18) were synthesized and tested for their ability to inhibit HMG-CoA reductase in a partially purified enzyme preparation and cholesterol biosynthesis from acetate in cultured HEP-G2 cells. Changing the size of the saturated ring of the tetrahydroindazole nucleus did not improve potency, but incorporation of substituents at the 7-position resulted in up to 1700-fold improvement in inhibitory potency. Structure-activity studies revealed that the most potent compounds possess a substituted benzyl group at the 7-position, with a preference for steric bulk at the para position of the benzene ring. The most potent enzyme inhibitor (18t, IC50 = 3.0 nM) is approximately 3-fold more potent than lovastin sodium salt (2). The most potent cholesterol biosynthesis inhibitor in HEP-G2 cells (18q, IC50 = 0.078 microM) is slightly less potent than 2 (sodium salt). Molecular modeling studies suggested that, when compared to the parent compound (18b) lacking the appropriate 7-substituent, 18t overlaps better with 2 and literature inhibitors 5 and 6 in a hydrophobic binding region adjacent to the enzyme active site.
合成了一系列包含7-[2-(4-氟苯基)-4,5,6,7-四氢-2H-吲唑-3-基]-3,5-二羟基-6-庚烯酸钠盐(18)的化合物,并在部分纯化的酶制剂中测试了它们抑制HMG-CoA还原酶的能力以及在培养的HEP-G2细胞中抑制由乙酸盐合成胆固醇的能力。改变四氢吲唑核饱和环的大小并不能提高效力,但在7位引入取代基可使抑制效力提高多达1700倍。构效关系研究表明,最有效的化合物在7位具有取代苄基,且苯环对位优先倾向于空间位阻较大的基团。最有效的酶抑制剂(18t,IC50 = 3.0 nM)的效力约为洛伐他汀钠盐(2)的3倍。HEP-G2细胞中最有效的胆固醇生物合成抑制剂(18q,IC50 = 0.078 microM)的效力略低于2(钠盐)。分子模拟研究表明,与缺乏合适7-取代基的母体化合物(18b)相比,18t在与酶活性位点相邻的疏水结合区域中与2以及文献报道的抑制剂5和6的重叠更好。