Zheng Y F, Abe I, Prestwich G D
Department of Medicinal Chemistry, The University of Utah, Salt Lake City 84112-5820, USA.
Biochemistry. 1998 Apr 28;37(17):5981-7. doi: 10.1021/bi9727343.
Five sulfur-containing analogues of 2,3-oxidosqualene (OS) were evaluated as inhibitors of squalene:hopene cyclase (SHC) from Alicyclobacillus acidocaldarius. In these analogues, sulfur replaces carbons at C-6, C-10, C-14, C-18, or C-19 of OS. Each analogue was a submicromolar inhibitor of SHC with IC50 values ranging from 60 to 570 nM. Enzyme inhibition kinetic analysis was performed using homogeneous recombinant A. acidocaldarius SHC. While analogues 9 (S-14, Ki = 109 nM, kinact = 0.058 min-1) and 11 (S-19, Ki = 83 nM, kinact = 0.054 min-1) were time-dependent inhibitors of SHC, analogues 7 (S-6, Ki = 127 nM) and 8 (S-10, Ki = 971 nM) showed no time dependency with SHC. Analogue 10 (S-18) was the most potent inhibitor and showed time-dependent irreversible inhibition (Ki = 31 nM, kinact = 0.071 min-1). Kinetic analysis for the five analogues with purified rat liver OSLC was conducted to compare the vertebrate and prokaryotic enzymes. Affinity labeling experiments, using either [17-3H]10 or [22-3H]10 with crude and with pure recombinant SHC, clearly showed specific labeling. A single major radioactive band at 72 kDa on SDS-PAGE indicated that irreversible covalent modification of SHC had occurred. These results suggest that the presence of sulfur at C-18 of OS can interrupt the cyclization and that an intermediate partially cyclized cation may be captured by a nucleophilic residue of the SHC active site.
对2,3-氧化角鲨烯(OS)的五种含硫类似物作为嗜酸嗜热栖热放线菌鲨烯:霍烯环化酶(SHC)抑制剂进行了评估。在这些类似物中,硫取代了OS中C-6、C-10、C-14、C-18或C-19位的碳。每种类似物都是SHC的亚微摩尔抑制剂,IC50值在60至570 nM之间。使用同源重组嗜酸嗜热栖热放线菌SHC进行酶抑制动力学分析。虽然类似物9(S-14,Ki = 109 nM,kinact = 0.058 min-1)和11(S-19,Ki = 83 nM,kinact = 0.054 min-1)是SHC的时间依赖性抑制剂,但类似物7(S-6,Ki = 127 nM)和8(S-10,Ki = 971 nM)对SHC无时间依赖性。类似物10(S-18)是最有效的抑制剂,表现出时间依赖性不可逆抑制(Ki = 31 nM,kinact = 0.071 min-1)。对这五种类似物与纯化的大鼠肝脏OSLC进行动力学分析,以比较脊椎动物和原核生物的酶。使用[17-3H]10或[22-3H]10对粗制和纯重组SHC进行亲和标记实验,清楚地显示了特异性标记。SDS-PAGE上72 kDa处的单一主要放射性条带表明SHC发生了不可逆的共价修饰。这些结果表明,OS的C-18位存在硫可中断环化,并且部分环化的阳离子中间体可能被SHC活性位点的亲核残基捕获。