首页> 外文期刊>Acta Chimica Slovenica >High-fat Medium and Circadian Transcription Factors(Cryptochrome and Clock)Contribute to the Regulation of Cholesterogenic Cyp51 and Hmgcr Genes in Mouse Embryonic Fibroblasts
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High-fat Medium and Circadian Transcription Factors(Cryptochrome and Clock)Contribute to the Regulation of Cholesterogenic Cyp51 and Hmgcr Genes in Mouse Embryonic Fibroblasts

机译:高脂培养基和昼夜节律转录因子(隐色和时钟)有助于调节小鼠胚胎成纤维细胞中胆源性Cyp51和Hmgcr基因。

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摘要

The aim of our research was to investigate how cholesterol,unsaturated fatty acids and circadian genes affect the expression of cholesterogenic genes,Cyp51 and Hmgcr,in somatic and in embryonic fibroblast cell lines.We found that in immortal Hepal-6 cells cholesterol represses the transcription of Hmgcr and Cyp51 for 80%,while unsaturated fatty acids have different effects:Hmgcr was repressed for 50%,but Cyp51 was unaffected by the presence of linoloeic acid.In embryonic fibroblasts the abundance of cholesterol in the media did not repress the expression of Cyp51 and Hmgcr,while the presence of linoleic acid repressed transcription of both genes for 40%.Mutation of the Clock gene activated the basal transcription of Cyp51 and Hmgcr and also reconstituted the cholesterol feedback loop,that was lacking in the wild type embryonic fibroblasts.Deletion of repressor genes Cry1 and Cry2 resulted in activated transcription of cholesterogenic genes after addition of linoleic acid,while response to cholesterol was unchanged compared to wild type embryonic fibroblasts.Our results indicate that cholesterol,unsaturated fatty acids and the circadian transcription factors participate in the regulation of cholesterogenesis through different molecular mechanisms,presumably using different SREBP transcription factors and their coregulatory proteins.
机译:我们的研究目的是研究胆固醇,不饱和脂肪酸和昼夜节律基因如何影响体细胞和胚胎成纤维细胞系中胆固醇生成基因,Cyp51和Hmgcr的表达。我们发现,在永生的Hepal-6细胞中,胆固醇会抑制转录Hmgcr和Cyp51的80%含量,而不饱和脂肪酸有不同的作用:Hmgcr被抑制50%,但Cyp51不受亚油酸的影响。在胚胎成纤维细胞中,培养基中胆固醇的丰富并未抑制Cyp51和Hmgcr,而亚油酸的存在抑制了这两个基因的转录达40%。Clock基因的突变激活了Cyp51和Hmgcr的基础转录,并重建了胆固醇反馈回路,这是野生型胚胎成纤维细胞所缺乏的。添加亚油酸后,阻遏基因Cry1和Cry2的缺失导致胆甾醇生成基因的激活转录,而应答结果表明,胆固醇,不饱和脂肪酸和昼夜节律转录因子通过不同的分子机制参与胆固醇生成的调节,大概是使用不同的SREBP转录因子及其调节蛋白。

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