AI Article Synopsis

  • - The tumor suppressor PML plays a crucial role in regulating cellular senescence and terminal differentiation, pushing cells to permanently exit the cell cycle by activating the p53 pathway and recruiting E2F transcription factors along with retinoblastoma (Rb) proteins to specific nuclear bodies.
  • - Disruption of Rb functions or reintroducing E2Fs in cells expressing PML can reverse the senescence-related defects, enhancing E2F-dependent gene expression and cell proliferation.
  • - In benign prostatic hyperplasia, PML levels are increased and form nuclear bodies, unlike in prostate cancers, indicating that the identified PML/Rb/E2F pathway could help differentiate benign tumors from malignancies and highlight E2F target genes as potential

Article Abstract

The tumor suppressor PML (promyelocytic leukemia protein) regulates cellular senescence and terminal differentiation, two processes that implicate a permanent exit from the cell cycle. Here, we show that the mechanism by which PML induces a permanent cell cycle exit and activates p53 and senescence involves a recruitment of E2F transcription factors bound to their promoters and the retinoblastoma (Rb) proteins to PML nuclear bodies enriched in heterochromatin proteins and protein phosphatase 1α. Blocking the functions of the Rb protein family or adding back E2Fs to PML-expressing cells can rescue their defects in E2F-dependent gene expression and cell proliferation, inhibiting the senescent phenotype. In benign prostatic hyperplasia, a neoplastic disease that displays features of senescence, PML was found to be up-regulated and forming nuclear bodies. In contrast, PML bodies were rarely visualized in prostate cancers. The newly defined PML/Rb/E2F pathway may help to distinguish benign tumors from cancers, and suggest E2F target genes as potential targets to induce senescence in human tumors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3012935PMC
http://dx.doi.org/10.1101/gad.1975111DOI Listing

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