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  • Alveolar progenitor differentiation and lactation depends on paracrine inhibition of notch via ROBO1/CTNNB1/JAG1.

Alveolar progenitor differentiation and lactation depends on paracrine inhibition of notch via ROBO1/CTNNB1/JAG1.

Development (Cambridge, England) (2021-11-11)
Oscar Cazares, Sharmila Chatterjee, Pinky Lee, Catherine Strietzel, J W Bubolz, Gwyndolen Harburg, Jon Howard, Sol Katzman, Jeremy Sanford, Lindsay Hinck
ABSTRACT

In the mammary gland, how alveolar progenitor cells are recruited to fuel tissue growth with each estrus cycle and pregnancy remains poorly understood. Here, we identify a regulatory pathway that controls alveolar progenitor differentiation and lactation by governing Notch activation in mouse. Loss of Robo1 in the mammary gland epithelium activates Notch signaling, which expands the alveolar progenitor cell population at the expense of alveolar differentiation, resulting in compromised lactation. ROBO1 is expressed in both luminal and basal cells, but loss of Robo1 in basal cells results in the luminal differentiation defect. In the basal compartment, ROBO1 inhibits the expression of Notch ligand Jag1 by regulating β-catenin (CTNNB1), which binds the Jag1 promoter. Together, our studies reveal how ROBO1/CTTNB1/JAG1 signaling in the basal compartment exerts paracrine control of Notch signaling in the luminal compartment to regulate alveolar differentiation during pregnancy.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Insulin from bovine pancreas, powder, BioReagent, suitable for cell culture
Sigma-Aldrich
TRI Reagent®, LS, For processing fluid samples such as cell suspensions, CSF, and amniotic fluid.
Sigma-Aldrich
Donkey serum
Millipore
ProteoExtract® Subcellular Proteome Extraction Kit