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首页> 外文期刊>Biochemical and Biophysical Research Communications >The mitochondrial fatty acid synthesis (mtFASII) pathway is capable of mediating nuclear-mitochondrial cross talk through the PPAR system of transcriptional activation
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The mitochondrial fatty acid synthesis (mtFASII) pathway is capable of mediating nuclear-mitochondrial cross talk through the PPAR system of transcriptional activation

机译:线粒体脂肪酸合成(mtFASII)途径能够通过转录激活的PPAR系统介导核线粒体串扰

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摘要

Mammalian cells contain two fatty acid synthesis pathways, the cytosolic FASI pathway, and the mitochondrial FASII pathway. The selection behind the conservation of the mitochondrial pathway is not completely understood, given the presence of the cytosolic FAS pathway. In this study, we show through heterologous gene reporter systems and PCR-based arrays that overexpression of MECR, the last step in the mtFASII pathway, causes modulation of gene expression through the PPAR pathway. Electromobility shift assays (EMSAs) demonstrate that overexpression of MECR causes increased binding of PPARs to DNA, while cell fractionation and imaging studies show that MECR remains localized to the mitochondria. Interestingly, knock down of the mtFASII pathway lessens the effect of MECR on this transcriptional modulation. Our data are most consistent with MECR-mediated transcriptional activation through products of the mtFASII pathway, although we cannot rule out MECR acting as a coactivator. Further investigation into the physiological relevance of this communication will be necessary to better understand some of the phenotypic consequences of deficits in this pathway observed in animal models and human disease.
机译:哺乳动物细胞包含两个脂肪酸合成途径,即胞质FASI途径和线粒体FASII途径。鉴于存在胞质FAS途径,对线粒体途径保守性背后的选择尚不完全了解。在这项研究中,我们通过异源基因报告系统和基于PCR的阵列显示,MECR的过度表达是mtFASII途径的最后一步,可通过PPAR途径调节基因表达。电动迁移分析(EMSA)表明MECR的过表达导致PPAR与DNA的结合增加,而细胞分级分离和成像研究表明MECR仍位于线粒体。有趣的是,敲低mtFASII途径可减轻MECR对这种转录调节的影响。我们的数据与通过mtFASII途径的产物通过MECR介导的转录激活最一致,尽管我们不能排除MECR作为辅助激活剂的作用。为了更好地了解在动物模型和人类疾病中观察到的该途径缺陷的某些表型后果,有必要进一步研究这种交流的生理相关性。

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