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Comparative transcriptional pathway bioinformatic analysis of dietary restriction, Sir2, p53 and resveratrol life span extension in Drosophila

机译:果蝇饮食限制,Sir2,p53和白藜芦醇寿命延长的比较转录途径生物信息学分析

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摘要

A multiple comparison approach using whole genome transcriptional arrays was used to identify genes and pathways involved in calorie restriction/dietary restriction (DR) life span extension in Drosophila. Starting with a gene centric analysis comparing the changes in common between DR and two DR related molecular genetic life span extending manipulations, Sir2 and p53, lead to a molecular confirmation of Sir2 and p53's similarity with DR and the identification of a small set of commonly regulated genes. One of the identified upregulated genes, takeout, known to be involved in feeding and starvation behavior, and to have sequence homology with Juvenile Hormone (JH) binding protein, was shown to directly extend life span when specifically overexpressed. Here we show that a pathway centric approach can be used to identify shared physiological pathways between DR and Sir2, p53 and resveratrol life span extending interventions. The set of physiological pathways in common among these life span extending interventions provides an initial step toward defining molecular genetic and physiological changes important in life span extension. The large overlap in shared pathways between DR, Sir2, p53 and resveratrol provide strong molecular evidence supporting the genetic studies linking these specific life span extending interventions.
机译:使用全基因组转录阵列的多重比较方法用于鉴定果蝇中与卡路里限制/饮食限制(DR)寿命延长有关的基因和途径。从以基因为中心的分析开始,比较DR和两个DR相关的分子遗传学寿命延长操作Sir2和p53之间的共同变化,从而得出Sir2和p53与DR相似性的分子确认,并鉴定出一小部分共同调控的基因基因。已表明,已鉴定出的一种上调基因,即外显基因,与进食和饥饿行为有关,并且与少年激素(JH)结合蛋白具有序列同源性,被证明可以在特异表达时直接延长寿命。在这里,我们表明以路径为中心的方法可用于确定DR与Sir2,p53和白藜芦醇寿命之间的共享生理路径,从而延长干预措施。这些延长寿命的干预措施中共有的一组生理途径为确定延长寿命的重要分子遗传和生理变化提供了第一步。 DR,Sir2,p53和白藜芦醇之间共享途径的大量重叠为分子生物学研究提供了强有力的分子证据,这些基因研究将这些特定的寿命延长了干预措施。

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