PER2 regulation of mammary gland development.
Cole M McQueenEmily E SchmittTapasree R SarkarJessica ElswoodRichard P MetzDavid EarnestMonique RijnkelsWeston W PorterPublished in: Development (Cambridge, England) (2018)
The molecular clock plays key roles in daily physiological functions, development and cancer. Period 2 (PER2) is a repressive element, which inhibits transcription activated by positive clock elements, resulting in diurnal cycling of genes. However, there are gaps in our understanding of the role of the clock in normal development outside of its time-keeping function. Here, we show that PER2 has a noncircadian function that is crucial to mammalian mammary gland development. Virgin Per2-deficient mice, Per2-/- , have underdeveloped glands, containing fewer bifurcations and terminal ducts than glands of wild-type mice. Using a transplantation model, we show that these changes are intrinsic to the gland and further identify changes in cell fate commitment. Per2-/- mouse mammary glands have a dual luminal/basal phenotypic character in cells of the ductal epithelium. We identified colocalization of E-cadherin and keratin 14 in luminal cells. Similar results were demonstrated using MCF10A and shPER2 MCF10A human cell lines. Collectively this study reveals a crucial noncircadian function of PER2 in mammalian mammary gland development, validates the Per2-/- model, and describes a potential role for PER2 in breast cancer.
Keyphrases
- induced apoptosis
- wild type
- endothelial cells
- type diabetes
- gene expression
- cell cycle arrest
- squamous cell carcinoma
- adipose tissue
- genome wide
- transcription factor
- insulin resistance
- skeletal muscle
- cell death
- young adults
- dna methylation
- bone marrow
- breast cancer cells
- induced pluripotent stem cells
- pi k akt
- breast cancer risk