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烟草天蛾中4-去甲基、4-单甲基和4,4-二甲基甾醇代谢的比较研究。

Comparative studies of metabolism of 4-desmethyl, 4-monomethyl and 4,4-dimethyl sterols in Manduca sexta.

作者信息

Svoboda J A, Ross S A, Nes W D

机构信息

Insect Neurobiology & Hormone Laboratory, ARS, USDA, Beltsville, Maryland 20705, USA.

出版信息

Lipids. 1995 Jan;30(1):91-4. doi: 10.1007/BF02537047.

Abstract

To investigate the metabolism and possible deleterious effects of 4-methyl and 4,4-dimethyl steroids in Manduca sexta, the 4,4-dimethyl sterols lanosterol and cycloartenol, the 4-methyl sterol obtusifoliol and the 4,4-dimethyl pentacyclic triterpenoid alpha-amyrin were fed in an artificial agar-based diet at various concentrations. Utilization and metabolism of these four compounds were compared with sitosterol, stigmasterol, brassicasterol, ergosterol and 24-methylenecholesterol, 24-alkyl sterols that are readily dealkylated and converted to cholesterol in Manduca and in most phytophagous insects. None of the 4-methylated compounds significantly inhibited development except at very high dietary concentrations. The delta 24-bonds of lanosterol and cycloartenol were effectively reduced by the Manduca delta 24-sterol reductase enzyme, as is the delta 24-bond of desmosterol which, in most phytophagous insects, is an intermediate in the conversion of sitosterol, stigmasterol and other C28 and C29 phytosterols to cholesterol. On the other hand, the 24-methylene substituent of obtusifoliol was not dealkylated. Each of the 4-desmethyl C28 and C29 sterols was readily converted to cholesterol, and a significant amount of 7-dehydrocholesterol was derived from ergosterol metabolism. The reason for the differences in substrate specificity of these sterols is not clear, but the information may be useful in the development of new, specific, mechanism-based inhibitors of sterol metabolism.

摘要

为了研究烟草天蛾中4-甲基和4,4-二甲基甾体的代谢及可能的有害影响,将4,4-二甲基甾醇羊毛甾醇和环阿屯醇、4-甲基甾醇钝叶醇以及4,4-二甲基五环三萜α-香树脂醇以不同浓度添加到基于琼脂的人工饲料中进行投喂。将这四种化合物的利用和代谢情况与谷甾醇、豆甾醇、油菜甾醇、麦角甾醇以及24-亚甲基胆固醇进行比较,24-烷基甾醇在烟草天蛾和大多数植食性昆虫中很容易脱烷基并转化为胆固醇。除了在非常高的饲料浓度下,4-甲基化的化合物均未显著抑制发育。羊毛甾醇和环阿屯醇的δ24键能被烟草天蛾δ24-甾醇还原酶有效还原,就像在大多数植食性昆虫中,去氢胆甾醇的δ24键一样,它是谷甾醇、豆甾醇和其他C28和C29植物甾醇转化为胆固醇过程中的一个中间体。另一方面,钝叶醇的24-亚甲基取代基未发生脱烷基反应。每种4-去甲基C28和C29甾醇都很容易转化为胆固醇,并且大量的7-脱氢胆固醇源自麦角甾醇的代谢。这些甾醇底物特异性差异的原因尚不清楚,但这些信息可能有助于开发新型、特异性的基于机制的甾醇代谢抑制剂。

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