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Dynamic regulation of genetic pathways and targets during aging in Caenorhabditis elegans

机译:秀丽隐杆线虫衰老过程中遗传途径和靶标的动态调控

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摘要

Numerous genetic targets and some individual pathways associated with aging have been identified using the worm model. However, less is known about the genetic mechanisms of aging in genome wide, particularly at the level of multiple pathways as well as the regulatory networks during aging. Here, we employed the gene expression datasets of three time points during aging in Caenorhabditis elegans (C. elegans) and performed the approach of gene set enrichment analysis (GSEA) on each dataset between adjacent stages. As a result, multiple genetic pathways and targets were identified as significantly down- or up-regulated. Among them, 5 truly aging-dependent signaling pathways including MAPK signaling pathway, mTOR signaling pathway, Wnt signaling pathway, TGF-beta signaling pathway and ErbB signaling pathway as well as 12 significantly associated genes were identified with dynamic expression pattern during aging. On the other hand, the continued declines in the regulation of several metabolic pathways have been demonstrated to display age-related changes. Furthermore, the reconstructed regulatory networks based on three of aging related Chromatin immunoprecipitation experiments followed by sequencing (ChIP–seq) datasets and the expression matrices of 154 involved genes in above signaling pathways provide new insights into aging at the multiple pathways level. The combination of multiple genetic pathways and targets needs to be taken into consideration in future studies of aging, in which the dynamic regulation would be uncovered.
机译:使用蠕虫模型已经确定了许多遗传目标和与衰老相关的一些个体途径。然而,人们对全基因组中衰老的遗传机制知之甚少,尤其是在衰老过程中的多种途径以及调控网络方面。在这里,我们采用了秀丽隐杆线虫(C. elegans)衰老过程中三个时间点的基因表达数据集,并对相邻阶段之间的每个数据集进行了基因集富集分析(GSEA)的方法。结果,鉴定出多种遗传途径和靶标显着下调或上调。其中,通过衰老过程中的动态表达模式鉴定了5个真正的衰老依赖性信号通路,包括MAPK信号通路,mTOR信号通路,Wnt信号通路,TGF-β信号通路和ErbB信号通路,以及12个显着相关的基因。另一方面,已经证明几种代谢途径的调节的持续下降显示出与年龄有关的变化。此外,基于三个与衰老相关的染色质免疫沉淀实验,随后的测序(ChIP-seq)数据集以及上述信号传导途径中154个涉及基因的表达矩阵,重建的调控网络为多途径水平的衰老提供了新的见识。在以后的衰老研究中,需要考虑多种遗传途径和靶点的结合,在其中将发现动态调节。

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