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饮食转换揭示了黑腹果蝇中快速协调的基因表达变化。

Dietary switch reveals fast coordinated gene expression changes in Drosophila melanogaster.

作者信息

Whitaker Rachel, Gil M Pilar, Ding Feifei, Tatar Marc, Helfand Stephen L, Neretti Nicola

机构信息

Department of Molecular Biology, Cell Biology, and Biochemistry, Brown University, Providence RI, 02912, USA.

出版信息

Aging (Albany NY). 2014 May;6(5):355-68. doi: 10.18632/aging.100662.

Abstract

Dietary restriction (DR) reduces age-specific mortality and increases lifespan in many organisms. DR elicits a large number of physiological changes, however many are undoubtedly not related to longevity. Whole-genome gene expression studies have typically revealed hundreds to thousands of differentially expressed genes in response to DR, and a key open question is which subset of genes mediates longevity. Here we performed transcriptional profiling of fruit flies in a closely spaced time series immediately following a switch to the DR regime and identified four patterns of transcriptional dynamics. Most informatively we find 144 genes rapidly switched to the same level observed in the DR cohort and are hence strong candidates as proximal mediators of reduced mortality upon DR. This class was enriched for genes involved in carbohydrate and fatty acid metabolism. Folate biosynthesis was the only pathway enriched for gene up- regulated upon DR. Four among the down-regulated genes are involved in key regulatory steps within the pentose phosphate pathway, which has been previously associated with lifespan extension in Drosophila. Combined analysis of dietary switch with whole-genome time-course profiling can identify transcriptional responses that are closely associated with and perhaps causal to longevity assurance conferred by dietary restriction.

摘要

饮食限制(DR)可降低许多生物体的特定年龄死亡率并延长寿命。DR会引发大量生理变化,然而许多变化无疑与长寿无关。全基因组基因表达研究通常显示,响应DR会有数百至数千个差异表达基因,一个关键的开放性问题是哪些基因子集介导了长寿。在此,我们在切换到DR方案后立即以紧密间隔的时间序列对果蝇进行了转录谱分析,并确定了四种转录动力学模式。最具信息量的是,我们发现144个基因迅速切换到DR组中观察到的相同水平,因此作为DR时降低死亡率的近端介质,它们是强有力的候选基因。该类别富含参与碳水化合物和脂肪酸代谢的基因。叶酸生物合成是DR时上调基因唯一富集的途径。下调基因中有四个参与磷酸戊糖途径中的关键调节步骤,该途径先前已与果蝇的寿命延长相关。饮食切换与全基因组时间进程谱分析的联合分析可以识别与饮食限制赋予的长寿保证密切相关且可能具有因果关系的转录反应。

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