4.7 Article

PATZ1 (MAZR) Co-occupies Genomic Sites With p53 and Inhibits Liver Cancer Cell Proliferation via Regulating p27

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.586150

关键词

PATZ1; liver cancer proliferation; CDKN1B; p27; p53; ChIP-seq

资金

  1. National Medical Research Council Singapore [R-183-000-317-511]
  2. Macau Science and Technology Development Fund [FDCT-17029-SKL]

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The study revealed that PATZ1 regulates cell proliferation in hepatocellular carcinoma by directly controlling CDKN1B expression, leading to increased colony formation and elevated Ki-67 expression. Additionally, PATZ1 depletion was associated with a higher rate of S phase entry. Further findings highlighted the interaction between PATZ1 and p53 in regulating CDKN1B expression.
Liver cancer is the third most common cause of cancer death in the world. POZ/BTB and AT-hook-containing zinc finger protein 1 (PATZ1/MAZR) is a transcription factor associated with various cancers. However, the role of PATZ1 in cancer progression remains controversial largely due to lack of genome-wide studies. Here we report that PATZ1 regulates cell proliferation by directly regulating CDKN1B (p27) in hepatocellular carcinoma cells. Our PATZ1 ChIP-seq and gene expression microarray analyses revealed that PATZ1 is strongly related to cancer signatures and cellular proliferation. We further discovered that PATZ1 depletion led to an increased rate of colony formation, elevated Ki-67 expression and greater S phase entry. Importantly, the increased cancer cell proliferation was accompanied with suppressed expression of the cyclin-dependent kinase inhibitor CDKN1B. Consistently, we found that PATZ1 binds to the genomic loci flanking the transcriptional start site of CDKN1B and positively regulates its transcription. Notably, we demonstrated that PATZ1 is a p53 partner and p53 is essential for CDKN1B regulation. In conclusion, our study provides novel mechanistic insights into the inhibitory role of PATZ1 in liver cancer progression, thereby yielding a promising therapeutic intervention to alleviate tumor burden.

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