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The bone microenvironment invigorates metastatic seeds for further dissemination
Author(s) -
Weijie Zhang,
Igor Bado,
Jingyuan Hu,
Ying-Wooi Wan,
Ling Wu,
Hai Wang,
Yang Gao,
Hyun-Hwan Jeong,
Zhan Xu,
Xiaoxin Hao,
Bree M. Lege,
Rami AlOuran,
Lucian Li,
Jiasong Li,
Liqun Yu,
Swarnima Singh,
Hin Ching Lo,
Muchun Niu,
Jun Liu,
Weiyu Jiang,
Yi Li,
Stephen T.C. Wong,
Chonghui Cheng,
Zhandong Liu,
Xiang H.-F. Zhang
Publication year - 2021
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2021.03.011
Subject(s) - biology , metastasis , reprogramming , tumor microenvironment , epigenomics , bone metastasis , intravasation , epigenetics , cancer research , cancer , cell , dna methylation , tumor cells , genetics , gene expression , gene
Metastasis has been considered as the terminal step of tumor progression. However, recent genomic studies suggest that many metastases are initiated by further spread of other metastases. Nevertheless, the corresponding pre-clinical models are lacking, and underlying mechanisms are elusive. Using several approaches, including parabiosis and an evolving barcode system, we demonstrated that the bone microenvironment facilitates breast and prostate cancer cells to further metastasize and establish multi-organ secondary metastases. We uncovered that this metastasis-promoting effect is driven by epigenetic reprogramming that confers stem cell-like properties on cancer cells disseminated from bone lesions. Furthermore, we discovered that enhanced EZH2 activity mediates the increased stemness and metastasis capacity. The same findings also apply to single cell-derived populations, indicating mechanisms distinct from clonal selection. Taken together, our work revealed an unappreciated role of the bone microenvironment in metastasis evolution and elucidated an epigenomic reprogramming process driving terminal-stage, multi-organ metastases.

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