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降胆固醇药物三氟哌多对酿酒酵母固醇、甾醇酯和脂肪酸代谢的影响。

Effects of the hypocholesteremic agent trifluperidol on the sterol, steryl ester, and fatty acid metabolism of Saccharomyces cerevisiae.

作者信息

Sobus M T, Holmlund C E, Whittaker N F

出版信息

J Bacteriol. 1977 Jun;130(3):1310-6. doi: 10.1128/jb.130.3.1310-1316.1977.

Abstract

Trifluperidol (TFP), at a concentration of 100 muM, inhibited the 24-h growth of Saccharomyces cerevisiae by about 30%. Effects on lipid metabolism were investigated by monitoring the incorporation of [1-14C]sodium acetate into various lipid fractions after 4 and 24 h of growth in the presence of several concentrations of TFP. Although little effect was noted on the amount of free sterols, 24-h incorporation of label into steryl esters was increased two- to fourfold by 100 muM TFP. Major sterol components of the steryl ester fraction isolated from an untreated culture were zymosterol (48%) and ergosterol (24%), whereas from the TFP-treated culture delta8,24(28)-ergostadienol (66.6%) and delta8-ergostenol (14.7%) were most abundant. Free sterols present in the highest concentration in the untreated culture were ergosterol (78.2%) and lanosterol (13%); whereas delta8,22-ergostadienol (38.5%), delta8-ergostenol (35.4%), and delta8,24(28)-ergostadienol (25.4%) were the most abundant free sterols obtained from the TFP-treated culture. Thus, the major block in the sterol biosynthetic pathway in yeast appears to be delta8 leads to delta7 isomerization. In these same cultures the relative amounts of C12 and C14 acids isolated from both steryl ester and miscellaneous lipid fractions were increased more than threefold over controls.

摘要

三氟哌啶醇(TFP)在浓度为100μM时,可抑制酿酒酵母24小时的生长约30%。通过监测在几种浓度的TFP存在下生长4小时和24小时后[1-14C]醋酸钠掺入各种脂质组分的情况,研究了其对脂质代谢的影响。虽然对游离甾醇的量影响不大,但100μM的TFP使甾醇酯中24小时的标记掺入量增加了两到四倍。从未经处理的培养物中分离出的甾醇酯组分的主要甾醇成分是酵母甾醇(48%)和麦角甾醇(24%),而从经TFP处理的培养物中分离出的δ8,24(28)-麦角二烯醇(66.6%)和δ8-麦角甾烯醇(14.7%)最为丰富。未经处理的培养物中浓度最高的游离甾醇是麦角甾醇(78.2%)和羊毛甾醇(13%);而从经TFP处理的培养物中获得的最丰富的游离甾醇是δ8,22-麦角二烯醇(38.5%)、δ8-麦角甾烯醇(35.4%)和δ8,24(28)-麦角二烯醇(25.4%)。因此,酵母中甾醇生物合成途径中的主要阻断似乎是δ8向δ7异构化。在这些相同的培养物中,从甾醇酯和其他脂质组分中分离出的C12和C14酸的相对量比对照增加了三倍多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7b0/235355/7efaa3d714eb/jbacter00307-0355-a.jpg

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