4.7 Article

Monitoring Spontaneous Quiescence and Asynchronous Proliferation-Quiescence Decisions in Prostate Cancer Cells

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.728663

关键词

quiescence; dormancy; prostate cancer; cell cycle; live imaging

资金

  1. American Cancer Society [RSG-15-161-01-DDC]
  2. Dept. of Defense [W81XWH1510413]
  3. National Science Foundation [1553031, 1817909]
  4. National Institutes of Health [MIRA GM119688, K08-DE026500, U01-CA243075, 3P01CA093900-06, R01CA203810]
  5. Prostate Cancer Foundation Challenge award
  6. University of Michigan Prostate Cancer S.P.O.R.E. [5 P50CA18678605]
  7. Prostate Cancer Foundation Young Investigator Award [18YOUN04]
  8. Department of Defense Prostate Cancer Research Program Physician Research Award [W81XWH2010394]
  9. University of Michigan
  10. Karmanos Cancer Institute
  11. Prostate Cancer Foundation [16CHAL05]
  12. Career Enhancement sub-award [F048931]
  13. U.S. Department of Defense (DOD) [W81XWH2010394, W81XWH1510413] Funding Source: U.S. Department of Defense (DOD)
  14. Direct For Biological Sciences
  15. Div Of Molecular and Cellular Bioscience [1817909] Funding Source: National Science Foundation

向作者/读者索取更多资源

The decision between proliferation and quiescence in the cell cycle is a dynamic process with high heterogeneity, even among clonal cell lines. Spontaneous entry into G0 states, which can lead to tumor dormancy and cancer recurrence, is influenced by both intrinsic and extrinsic signals, including asymmetric proliferation-quiescence decisions after mitosis. Dormant cancer cells exhibit altered expression of certain pathways and stem cell markers, potentially increasing the risk of cancer recurrence.
The proliferation-quiescence decision is a dynamic process that remains incompletely understood. Live-cell imaging with fluorescent cell cycle sensors now allows us to visualize the dynamics of cell cycle transitions and has revealed that proliferation-quiescence decisions can be highly heterogeneous, even among clonal cell lines in culture. Under normal culture conditions, cells often spontaneously enter non-cycling G0 states of varying duration and depth. This also occurs in cancer cells and G0 entry in tumors may underlie tumor dormancy and issues with cancer recurrence. Here we show that a cell cycle indicator previously shown to indicate G0 upon serum starvation, mVenus-p27K-, can also be used to monitor spontaneous quiescence in untransformed and cancer cell lines. We find that the duration of spontaneous quiescence in untransformed and cancer cells is heterogeneous and that a portion of this heterogeneity results from asynchronous proliferation-quiescence decisions in pairs of daughters after mitosis, where one daughter cell enters or remains in temporary quiescence while the other does not. We find that cancer dormancy signals influence both entry into quiescence and asynchronous proliferation-quiescence decisions after mitosis. Finally, we show that spontaneously quiescent prostate cancer cells exhibit altered expression of components of the Hippo pathway and are enriched for the stem cell markers CD133 and CD44. This suggests a hypothesis that dormancy signals could promote cancer recurrence by increasing the proportion of quiescent tumor cells poised for cell cycle re-entry with stem cell characteristics in cancer.

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