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Healthspan pathway maps in C. elegans and humans highlight transcription proliferation/biosynthesis and lipids

机译:C.杆杆线虫和人类的卫生座途径地图突出了转录增殖/生物合成和脂质

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摘要

The molecular basis of aging and of aging-associated diseases is being unraveled at an increasing pace. An extended healthspan, and not merely an extension of lifespan, has become the aim of medical practice. Here, we define health based on the absence of diseases and dysfunctions. Based on an extensive review of the literature, in particular for humans and , we compile a list of features of health and of the genes associated with them. These genes may or may not be associated with survival/lifespan. In turn, survival/lifespan genes that are not known to be directly associated with health are not considered. Clusters of these genes based on molecular interaction data give rise to maps of healthspan pathways for humans and for . Overlaying healthspan-related gene expression data onto the healthspan pathway maps, we observe the downregulation of (pro-inflammatory) Notch signaling in humans and of proliferation in . We identify transcription, proliferation/biosynthesis and lipids as a common theme on the annotation level, and proliferation-related kinases on the gene/protein level. Our literature-based data corpus, including visualization, should be seen as a pilot investigation of the molecular underpinnings of health in two different species. Web address: .
机译:衰老和衰老相关疾病的分子基础是在越来越慢的速度下解开的。延长的卫生斯斯钢,而不仅仅是寿命的延伸,已成为医疗实践的目的。在这里,我们基于没有疾病和功能障碍的情况来定义健康。基于对文献的广泛审查,特别是对于人类,我们编制了健康的特征列表和与他们相关的基因。这些基因可能与生存/寿命不相关。反过来,不考虑未被称为与健康联系的生存/寿命基因。基于分子相互作用数据的这些基因的簇引起了人类的卫生石途径的图。将Healthspan相关的基因表达数据覆盖到Healthspan途径地图上,我们观察人类和扩散中的(促炎)Notch信号传导的下调。我们鉴定转录,增殖/生物合成和脂质作为注释水平的常见主题,以及对基因/蛋白质水平的增殖相关激酶。我们基于文学的数据语料库,包括可视化,应该被视为两种不同物种中健康分子支撑的试点调查。网址:。

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