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A Runx1-enhancer Element eR1 Identified Lineage Restricted Mammary Luminal Stem Cells

Authors :
Junichi Matsuo
Naing Naing Mon
Daisuke Douchi
Akihiro Yamamura
Madhura Kulkarni
Dede Liana Heng
Sabirah Chen
Napat Nuttonmanit
Ying Li
Henry Yang
May Yin Lee
Wai Leong Tam
Motomi Osato
Linda Shyue Huey Chuang
Yoshiaki Ito
Source :
Stem Cells. 40:112-122
Publication Year :
2022
Publisher :
Oxford University Press (OUP), 2022.

Abstract

Mammary gland homeostasis is maintained by adult tissue stem-progenitor cells residing within the luminal and basal epithelia. Dysregulation of mammary stem cells is a key mechanism for cancer development. However, stem cell characterization is challenging because reporter models using cell-specific promoters do not fully recapitulate the mammary stem cell populations. We previously found that a 270-basepair Runx1 enhancer element, named eR1, marked stem cells in the blood and stomach. Here, we identified eR1 activity in a rare subpopulation of the ERα-negative luminal epithelium in mouse mammary glands. Lineage-tracing using an eR1-CreERT2 mouse model revealed that eR1+ luminal cells generated the entire luminal lineage and milk-secreting alveoli—eR1 therefore specifically marks lineage-restricted luminal stem cells. eR1-targeted-conditional knockout of Runx1 led to the expansion of luminal epithelial cells, accompanied by elevated ERα expression. Our findings demonstrate a definitive role for Runx1 in the regulation of the eR1-positive luminal stem cell proliferation during mammary homeostasis. Our findings identify a mechanistic link for Runx1 in stem cell proliferation and its dysregulation in breast cancer. Runx1 inactivation is therefore likely to be an early hit in the cell-of-origin of ERα+ luminal type breast cancer.

Details

ISSN :
15494918 and 10665099
Volume :
40
Database :
OpenAIRE
Journal :
Stem Cells
Accession number :
edsair.doi.dedup.....07193a5ca3598320fdd7b3454a600f42
Full Text :
https://doi.org/10.1093/stmcls/sxab009