4.4 Article

Drosophila p53 directs nonapoptotic programs in postmitotic tissue

期刊

MOLECULAR BIOLOGY OF THE CELL
卷 30, 期 11, 页码 1339-1351

出版社

AMER SOC CELL BIOLOGY
DOI: 10.1091/mbc.E18-12-0791

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资金

  1. Neurovisualization core at Baylor College of Medicine (IDDRC from the Eunice Kennedy Shriver National Institute of Child Health and Human Development) [1U54 HD083092]
  2. FlyBase [NIH-5U41HG000739-24]
  3. FlyBase (British Medical Research Council) [MR/N030117/1]
  4. Bloomington Drosophila Stock Center [NIH-P40OD018537]
  5. National Institutes of Health [1F31GM108472-04, 4T32CA124334-10, F32NS092270, 1F31CA189691-01, R01GM120196, R01EY010199, R01GM072124, R01GM115682]
  6. American Cancer Society [128847-PF-15-160-01-DDC]
  7. Cancer Prevention and Research Institute of Texas [RP170086]
  8. Welch Foundation [I-1865]

向作者/读者索取更多资源

TP53 is the most frequently mutated gene in human cancers, and despite intensive research efforts, genome-scale studies of p53 function in whole animal models are rare. The need for such in vivo studies is underscored by recent challenges to established paradigms, indicating that unappreciated p53 functions contribute to cancer prevention. Here we leveraged the Drosophila system to interrogate p53 function in a postmitotic context. In the developing embryo, p53 robustly activates important apoptotic genes in response to radiation- induced DNA damage. We recently showed that a p53 enhancer (p53RE(rpr)) near the cell death gene reaper forms chromatin contacts and enables p53 target activation across long genomic distances. Interestingly, we found that this canonical p53 apoptotic program fails to activate in adult heads. Moreover, this failure to exhibit apoptotic responses was not associated with altered chromatin contacts. Instead, we determined that p53 does not occupy the p53RE(rpr) enhancer in this postmitotic tissue as it does in embryos. Through comparative RNA-seq and chromatin immunoprecipitation-seq studies of developing and postmitotic tissues, we further determined that p53 regulates distinct transcriptional programs in adult heads, including DNA repair, metabolism, and proteolysis genes. Strikingly, in the postmitotic context, p53-binding landscapes were poorly correlated with nearby transcriptional effects, raising the possibility that p53 enhancers could be generally acting through long distances.

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