Author:
Llobet-Navas David,Rodríguez-Barrueco Ruth,Castro Verónica,Ugalde Alejandro P.,Sumazin Pavel,Jacob-Sendler Damian,Demircan Berna,Castillo-Martín Mireia,Putcha Preeti,Marshall Netonia,Villagrasa Patricia,Chan Joseph,Sanchez-Garcia Félix,Pe’er Dana,Rabadán Raul,Iavarone Antonio,Cordón-Cardó Carlos,Califano Andrea,López-Otín Carlos,Ezhkova Elena,Silva Jose M.
Abstract
The mammary gland is a very dynamic organ that undergoes continuous remodeling. The critical regulators of this process are not fully understood. Here we identify the microRNA cluster miR-424(322)/503 as an important regulator of epithelial involution after pregnancy. Through the generation of a knockout mouse model, we found that regression of the secretory acini of the mammary gland was compromised in the absence of miR-424(322)/503. Mechanistically, we show that miR-424(322)/503 orchestrates cell life and death decisions by targeting BCL-2 and IGF1R (insulin growth factor-1 receptor). Furthermore, we demonstrate that the expression of this microRNA cluster is regulated by TGF-β, a well-characterized regulator of mammary involution. Overall, our data suggest a model in which activation of the TGF-β pathway after weaning induces the transcription of miR-424(322)/503, which in turn down-regulates the expression of key genes. Here, we unveil a previously unknown, multilayered regulation of epithelial tissue remodeling coordinated by the microRNA cluster miR-424(322)/503.
Publisher
Cold Spring Harbor Laboratory
Subject
Developmental Biology,Genetics
Cited by
65 articles.
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