Identification of new genes associated to senescent and tumorigenic phenotypes in mesenchymal stem cells

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作者
Joana Cristina Medeiros Tavares Marques
Déborah Afonso Cornélio
Vivian Nogueira Silbiger
André Ducati Luchessi
Sandro de Souza
Silvia Regina Batistuzzo de Medeiros
机构
[1] Faculdade de Ciências da Saúde do Trairi (FACISA),Departamento de Análises Clínicas e Toxicológicas
[2] Universidade Federal do Rio Grande do Norte (UFRN),undefined
[3] Laboratório de Biologia Molecular e Genômica,undefined
[4] Centro de Biociências,undefined
[5] UFRN,undefined
[6] Campus Universitário,undefined
[7] Centro de Ciências da Saúde,undefined
[8] CCS/UFRN,undefined
[9] Instituto do Cérebro,undefined
[10] Instituto de Metrópole Digital,undefined
[11] UFRN,undefined
来源
Scientific Reports | / 7卷
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摘要
Although human mesenchymal stem cells (hMSCs) are a powerful tool for cell therapy, prolonged culture times result in replicative senescence or acquisition of tumorigenic features. To identify a molecular signature for senescence, we compared the transcriptome of senescent and young hMSCs with normal karyotype (hMSCs/n) and with a constitutional inversion of chromosome 3 (hMSC/inv). Senescent and young cells from both lineages showed differentially expressed genes (DEGs), with higher levels in senescent hMSCs/inv. Among the 30 DEGs in senescent hMSC/inv, 11 are new candidates for biomarkers of cellular senescence. The functional categories most represented in senescent hMSCs were related to cellular development, cell growth/proliferation, cell death, cell signaling/interaction, and cell movement. Mapping of DEGs onto biological networks revealed matrix metalloproteinase-1, thrombospondin 1, and epidermal growth factor acting as topological bottlenecks. In the comparison between senescent hMSCs/n and senescent hMSCs/inv, other functional annotations such as segregation of chromosomes, mitotic spindle formation, and mitosis and proliferation of tumor lines were most represented. We found that many genes categorized into functional annotations related to tumors in both comparisons, with relation to tumors being highest in senescent hMSCs/inv. The data presented here improves our understanding of the molecular mechanisms underlying the onset of cellular senescence as well as tumorigenesis.
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