Viola F, Brusa P, Balliano G, Ceruti M, Boutaud O, Schuber F, Cattel L
Istituto di Chimica Farmaceutica Applicata, Università di Torino, Italy.
Biochem Pharmacol. 1995 Sep 7;50(6):787-96. doi: 10.1016/0006-2952(95)00201-a.
The inhibition of 2,3-oxidosqualene-lanosterol cyclase (EC 5.4.99.7) (OSC) by new azasqualene derivatives, mimicking the proC-8 and proC-20 carbocationic high-energy intermediates of the cyclization of 2,3-oxidosqualene to lanosterol, was studied using pig liver microsomes, partially purified preparations of OSC, and yeast microsomes. The azasqualene derivatives tested were: 6E- and 6Z-10aza-10,11-dihydrosqualene-2,3-epoxide 17 and 18, 19-aza-18,19,22,23-tetrahydrosqualene-2,3-epoxide 19 and its corresponding N-oxide 20, and 19-aza-18,19,22,23-tetrahydrosqualene 21. The compounds 17 and 19 (i.e. the derivatives bearing the 2,3-epoxide ring and the same geometrical configuration as the OSC substrate) were effective inhibitors, as shown by the Ki obtained using partially purified OSC: 2.67 microM and 2.14 microM, respectively. Compound 18, having an incorrect configuration and the 19-aza derivative 21, lacking the 2,3-epoxide ring, were poor inhibitors, with IC50 of 44 microM and 70 microM, respectively. Compound 21 was a competitive inhibitor of OSC, whereas 17 and 19 were noncompetitive inhibitors, and showed a biphasic time-dependent inactivation of OSC, their apparent binding constants being 250 microM and 213 microM, respectively. The inhibition of sterol biosynthesis was studied using human hepatoma HepG2 cells. The incorporation of [14C] acetate in the C27 sterols was reduced by 50% by 0.55 microM 17, 0.22 microM 19, and 0.45 microM 21, whereas 2 microM 18 did not affect sterol biosynthesis. In the presence of 17, 19 and 21, only the intermediate metabolites 2,3-oxidosqualene and 2,3,22,23-dioxidosqualene accumulated, demonstrating a very specific inhibition of OSC.
利用猪肝微粒体、部分纯化的2,3-氧化角鲨烯-羊毛甾醇环化酶(EC 5.4.99.7)(OSC)制剂以及酵母微粒体,研究了新型氮杂角鲨烯衍生物对2,3-氧化角鲨烯-羊毛甾醇环化酶的抑制作用。这些衍生物模拟了2,3-氧化角鲨烯环化为羊毛甾醇过程中C-8和C-20碳正离子高能中间体。所测试的氮杂角鲨烯衍生物有:6E-和6Z-10-氮杂-10,11-二氢角鲨烯-2,3-环氧化物17和18、19-氮杂-18,19,22,23-四氢角鲨烯-2,3-环氧化物19及其相应的N-氧化物20,以及19-氮杂-18,19,22,23-四氢角鲨烯21。化合物17和19(即带有2,3-环氧环且与OSC底物具有相同几何构型的衍生物)是有效的抑制剂,使用部分纯化的OSC测得的抑制常数(Ki)分别为2.67微摩尔/升和2.14微摩尔/升。构型错误的化合物18以及缺少2,3-环氧环的19-氮杂衍生物21是弱抑制剂,半数抑制浓度(IC50)分别为44微摩尔/升和70微摩尔/升。化合物21是OSC的竞争性抑制剂,而17和19是非竞争性抑制剂,并且对OSC表现出双相时间依赖性失活,它们的表观结合常数分别为250微摩尔/升和213微摩尔/升。利用人肝癌HepG2细胞研究了甾醇生物合成的抑制情况。0.55微摩尔/升的17、0.22微摩尔/升的19和0.45微摩尔/升的21可使[14C]乙酸掺入C27甾醇的量减少50%,而2微摩尔/升的18对甾醇生物合成没有影响。在存在17、19和21的情况下,仅中间代谢产物2,3-氧化角鲨烯和2,3,22,23-二氧化角鲨烯积累,表明对OSC有非常特异性的抑制作用。