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Repression of YEATS2 induces cellular senescence in hepatocellular carcinoma and inhibits tumor growth.

Authors :
Wu, Qi
Zheng, Quan
Yuan, Lei
Gao, Dandan
Hu, Yabing
Jiang, Xinqing
Zhai, Qiaocheng
Liu, Ming
Xu, Lifeng
Xu, Heng
Ye, Jinlin
Zhang, Feng
Source :
Cell Cycle; Feb2024, Vol. 23 Issue 4, p478-494, 17p
Publication Year :
2024

Abstract

Hepatocellular carcinoma (HCC) stands as the third leading cause of cancer-related fatalities globally. In this study, we observed a significant increase in the expression level of the YEATS2 gene in HCC patients, and it is negatively correlated with the patients' survival rate. While we have previously identified the association between YEATS2 and the survival of pancreatic cancer cells, the regulatory mechanisms and significance in HCC are still to be fully elucidated. Our study shows that knockdown (KD) of YEATS2 expression leads to DNA damage, which in turn results in an upregulation of γ-H2A.X expression and activation of the canonical senescence-related pathway p53/p21Cip1. Moreover, our transcriptomic analysis reveals that YEATS2 KD cells can enhance the expression of p21Cip1 via the c-Myc/miR-93-5p pathway, consequently fostering the senescence of HCC cells. The initiation of cellular senescence through dual-channel activation suggests that YEATS2 plays a pivotal regulatory role in the process of cell proliferation. Ultimately, our in vivo research utilizing a nude mouse tumor model revealed a notable decrease in both tumor volume and weight after the suppression of YEATS2 expression. This phenomenon is likely attributable to the attenuation of proliferative cell activity, coupled with a concurrent augmentation in the population of natural killer (NK) cells. In summary, our research results have supplemented the understanding of the regulatory mechanisms of HCC cell proliferation and indicated that targeting YEATS2 may potentially inhibit liver tumor growth. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15384101
Volume :
23
Issue :
4
Database :
Complementary Index
Journal :
Cell Cycle
Publication Type :
Academic Journal
Accession number :
177320226
Full Text :
https://doi.org/10.1080/15384101.2024.2342714