Osteoblast-secreted factors mediate dormancy of metastatic prostate cancer in the bone via activation of the TGFbRIII–p38MAPK–pS249/ T252RB pathway

Li Yuan Yu-Lee, Guoyu Yu, Yu Chen Lee, Song Chang Lin, Jing Pan, Tianhong Pan, Kai Jie Yu, Bin Liu, Chad J. Creighton, Jaime Rodriguez-Canales, Pamela A. Villalobos, Ignacio I. Wistuba, Eulalia de Nadal, Francesc Posas, Gary E. Gallick, Sue Hwa Lin

Research output: Contribution to journalArticlepeer-review

106 Scopus citations

Abstract

Bone metastasis from prostate cancer can occur years after prostatectomy, due to reactivation of dormant disseminated tumor cells (DTC) in the bone, yet the mechanism by which DTCs are initially induced into a dormant state in the bone remains to be elucidated. We show here that the bone microenvironment confers dormancy to C4-2B4 prostate cancer cells, as they become dormant when injected into mouse femurs but not under the skin. Live-cell imaging of dormant cells at the single-cell level revealed that conditioned medium from differentiated, but not undifferentiated, osteoblasts induced C4-2B4 cellular quiescence, suggesting that differentiated osteoblasts present locally around the tumor cells in the bone conferred dormancy to prostate cancer cells. Gene array analyses identified GDF10 and TGFb2 among osteoblast-secreted proteins that induced quiescence of C4-2B4, C4-2b, and PC3-mm2, but not 22RV1 or BPH-1 cells, indicating prostate cancer tumor cells differ in their dormancy response. TGFb2 and GDF10 induced dormancy through TGFbRIII to activate phospho-p38MAPK, which phosphorylates retinoblas-toma (RB) at the novel N-terminal S249/T252 sites to block prostate cancer cell proliferation. Consistently, expression of dominant-negative p38MAPK in C4-2b and C4-2B4 prostate cancer cell lines abolished tumor cell dormancy both in vitro and in vivo. Lower TGFbRIII expression in patients with prostate cancer correlated with increased metastatic potential and decreased survival rates. Together, our results identify a dormancy mechanism by which DTCs are induced into a dormant state through TGFbRIII–p38MAPK–pS249/pT252–RB signaling and offer a rationale for developing strategies to prevent prostate cancer recurrence in the bone. Significance: These findings provide mechanistic insights into the dormancy of metastatic prostate cancer in the bone and offer a rationale for developing strategies to prevent prostate cancer recurrence in the bone. Cancer Res; 78(11); 2911–24. 2018 AACR.

Original languageEnglish (US)
Pages (from-to)2911-2924
Number of pages14
JournalCancer Research
Volume78
Issue number11
DOIs
StatePublished - Jun 1 2018

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

Fingerprint

Dive into the research topics of 'Osteoblast-secreted factors mediate dormancy of metastatic prostate cancer in the bone via activation of the TGFbRIII–p38MAPK–pS249/ T252RB pathway'. Together they form a unique fingerprint.

Cite this