Siddiqui A U, Swaminathan S, Su X, Wilson W K, Schroepfer G J
Department of Biochemistry, Rice University, Houston, TX 77005, USA.
Chem Phys Lipids. 1997 Apr 25;86(2):95-119. doi: 10.1016/s0009-3084(97)02656-x.
3 beta-Hydroxy-25,26,26,26,27,27,27-heptafluoro-5 alpha-cholestan-15-one (4) has been prepared as part of a program to synthesize 15-ketosterols that are not readily metabolized to cholesterol or side-chain oxygenated species. Saponification of 3 beta-acetoxy-5 alpha-chola-8(14),23-dien-15-one (5) followed by lithium-ammonia reduction with a bromobenzene quench gave 3 beta-hydroxy-5 alpha-chol-23-en-15-one (6). Addition of (CF3)2CFI to 6 in the presence of triethylborane gave an iodide preparation, which was reduced to 4 with tributyltin hydride (71% overall yield of 4 from 5). The 23-iodide preparations consisted of 6:1 mixtures of (23R)-3 beta-hydroxy-23-iodo-25,26,26,26,27,27,27-heptafluoro-5 alpha-cholestan-15-one (9a) and its C-23 epimer 9b with variable amounts of 4. Compound 4 was also prepared by lithium-ammonia reduction of the delta 8(14) analogs of 4 and iodides 9a and 9b. The presence of small amounts of 6 in the latter product suggested a side reaction involving cleavage of the C24-C25 bond with loss of a (CF3)2CF radical. Also prepared were 25,26,26,26,27,27,27-heptafluoro-5 alpha-cholestane-3 beta, 15 alpha-diol, its 15 beta epimer, the 7 alpha-methyl analog of 4, 3 beta-hydroxy-7 alpha-methyl-5 alpha-cholestan-15-one (16), and (25R)-3 beta,26-dihydroxy-5 alpha-cholestan-15-one. Full 1H and 13C-NMR data of high precision with complete signal assignments are given for all new compounds. Definitive 1H-NMR stereochemical assignments of the C-24 protons were established for most sterols with a C8H17 side chain based on analysis of the downfield H-24 resonance in a 750-MHz spectrum of 16. Detailed electron-impact mass spectral data are presented together with a summary of major fragmentation patterns for 15-hydroxy- and 15-ketosteroids with and without a delta 8(14) bond.
3β-羟基-25,26,26,26,27,27,27-七氟-5α-胆甾烷-15-酮(4)的制备是合成不易代谢为胆固醇或侧链氧化产物的15-酮甾醇计划的一部分。3β-乙酰氧基-5α-胆甾-8(14),23-二烯-15-酮(5)经皂化反应,随后用溴苯淬灭进行锂-氨还原反应,得到3β-羟基-5α-胆甾-23-烯-15-酮(6)。在三乙基硼烷存在下,将(CF3)2CFI加入到6中得到碘化物制剂,该碘化物制剂用三丁基氢化锡还原为4(以5为原料,4的总收率为71%)。23-碘化物制剂由(23R)-3β-羟基-23-碘-25,26,26,26,27,27,27-七氟-5α-胆甾烷-15-酮(9a)及其C-23差向异构体9b与不同量的4组成的6:1混合物。化合物4也可通过对4的δ8(14)类似物以及碘化物9a和9b进行锂-氨还原反应来制备。后一种产物中存在少量的6,这表明存在一种涉及C24-C25键断裂并失去(CF3)2CF自由基的副反应。还制备了25,26,26,26,27,27,27-七氟-5α-胆甾烷-3β,15α-二醇、其15β差向异构体、4的7α-甲基类似物、3β-羟基-7α-甲基-5α-胆甾烷-15-酮(16)以及(25R)-3β,26-二羟基-5α-胆甾烷-15-酮。给出了所有新化合物高精度的完整1H和13C-NMR数据以及完整的信号归属。基于对16在750-MHz谱图中低场H-24共振的分析,确定了大多数具有C8H17侧链的甾醇中C-24质子的明确1H-NMR立体化学归属。详细给出了电子轰击质谱数据以及具有和不具有δ8(14)键的15-羟基和15-酮甾类化合物主要裂解模式的总结。