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Updated: Jun 20, 2026

Induction and Validation of Cellular Senescence in Primary Human Cells
Published on: June 20, 2018
RelA/p65 functions to maintain cellular senescence by regulating genomic stability and DNA repair
Jingxin Wang1, Naduparambil K Jacob, Katherine J Ladner
1Human Cancer Genetics Program, The Ohio State University, Columbus, Ohio 43210, USA.
Abstract:
Nuclear factor (NF)-kappaB is a positive regulator of tumour development and progression, but how it functions in normal cells leading to oncogenesis is not clear. As cellular senescence has proven to be an intrinsic tumour suppressor mechanism that cells must overcome to establish deregulated growth, we used primary fibroblasts to follow NF-kappaB function in cells transitioning from senescence to subsequent immortalization. Our findings show that RelA/p65(-/-) murine fibroblasts immortalize at considerably faster rates than RelA/p65(+/+) cells. The ability of RelA/p65(-/-) fibroblasts to escape senescence earlier is due to their genomic instability, characterized by high frequencies of DNA mutations, gene deletions and gross chromosomal translocations. This increase in genomic instability is closely related to a compromised DNA repair that occurs in both murine RelA/p65(-/-) fibroblasts and tissues. Significantly, these results can also be duplicated in human fibroblasts lacking NF-kappaB. Altogether, our findings present a fresh perspective on the role of NF-kappaB as a tumour suppressor, which acts in pre-neoplastic cells to maintain cellular senescence by promoting DNA repair and genomic stability.
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