4.6 Article

Histone Demethylase Jumonji AT-rich Interactive Domain 1B (JARID1B) Controls Mammary Gland Development by Regulating Key Developmental and Lineage Specification Genes

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 289, Issue 25, Pages 17620-17633

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M114.570853

Keywords

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Funding

  1. Alexander and Margaret Stewart Trust fellowship
  2. Breast Cancer Alliance young investigator grant
  3. Melanoma Research Foundation career development award
  4. United States Department of Defense Peer-reviewed Cancer Research Program Career Development Award [W81XWH-13-1-0235]
  5. American Cancer Society Research Scholar Grant [RSG-13-384-01-DMC]
  6. National Institutes of Health from the NCI [R01 CA076120, P01 CA080111]
  7. NCI fellowship [F32 CA156991]

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The JmjC domain-containing H3K4 histone demethylase jumonji AT-rich interactive domain 1B (JARID1B) (also known as KDM5B and PLU1) is overexpressed in breast cancer and is a potential target for breast cancer treatment. To investigate the in vivo function of JARID1B, we developed Jarid1b(-/-) mice and characterized their phenotypes in detail. Unlike previously reported Jarid1b(-/-) strains, the majority of these Jarid1b(-/-) mice were viable beyond embryonic and neonatal stages. This allowed us to further examine phenotypes associated with the loss of JARID1B in pubertal development and pregnancy. These Jarid1b(-/-) mice exhibited decreased body weight, premature mortality, decreased female fertility, and delayed mammary gland development. Related to these phenotypes, JARID1B loss decreased serum estrogen level and reduced mammary epithelial cell proliferation in early puberty. In mammary epithelial cells, JARID1B loss diminished the expression of key regulators for mammary morphogenesis and luminal lineage specification, including FOXA1 and estrogen receptor alpha. Mechanistically, JARID1B was required for GATA3 recruitment to the Foxa1 promoter to activate Foxa1 expression. These results indicate that JARID1B positively regulates mammary ductal development through both extrinsic and cell-autonomous mechanisms.

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