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Induction of cell proliferation in old rat liver can reset certain gene expression levels characteristic of old liver to those associated with young liver.

机译:旧大鼠肝脏细胞增殖的诱导可以重置旧肝脏特征的某些基因表达水平与年轻肝脏相关的那些。

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During the past decade, it has become increasingly clear that consistent changes in the levels of expression of a small cohort of genes accompany the aging of mammalian tissues. In many cases, these changes have been shown to generate features that are characteristic of the senescent phenotype. Previously, a small pilot study indicated that some of these changes might be reversed in rat liver, if the liver cells became malignant and were proliferating. The present study has tested the hypothesis that inducing proliferation in old rat liver can reset the levels of expression of these age-related genes to that observed in young tissue. A microarray approach was used to identify genes that exhibited the greatest changes in their expression during aging. The levels of expression of these markers were then examined in transcriptomes of both proliferating hepatomas from old animals and old rat liver lobes that had regenerated after partial hepatectomy but were again quiescent. We have found evidence that over 20 % of the aging-related genes had their levels of expression reset to young levels by stimulating proliferation, even in cells that had undergone a limited number of cell cycles and then become quiescent again. Moreover, our network analysis indicated alterations in MAPK/ERK and Jun-N-terminal kinase pathways and the potential important role of PAX3, VCAN, ARRB2, NR1H2, and ITGA5 that may provide insights into mechanisms involved in longevity and regeneration that are distinct from cancer.
机译:在过去十年中,越来越清楚的是,哺乳动物组织老化的小群体表达水平的一致变化。在许多情况下,已经显示出这些变化来产生衰老表型特征的特征。此前,如果肝细胞变得恶性肿瘤,则小型试验研究表明,如果肝细胞变得恶性肿瘤,则可能在大鼠肝脏中逆转一些变化。本研究已经测试了诱导旧大鼠肝脏增殖的假设可以将这些年龄相关基因的表达水平重置为在年轻组织中观察到的。使用微阵列方法来鉴定在老化期间表现出最大变化的基因。然后将这些标志物的表达水平在来自旧动物和老鼠肝裂解的转化肝癌的转录组中检查,所述老鼠肝脏裂隙在部分肝切除术后再生,但再次静止。我们发现证据表明,即使在经历过有限数量的细胞周期的细胞中,超过20%的衰老相关基因的表达将其表达对年轻水平重置为年轻水平,然后再次成为静态。此外,我们的网络分析表明MAPK / ERK和JUN-N-末端激酶途径的改变以及PAX3,VCAN,ARRB2,NR1H2和ITGA5可能提供洞察中所涉及的机制的潜在重要作用癌症。

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