EGF-mediated induction of Mcl-1 at the switch to lactation is essential for alveolar cell survival
Expansion and remodelling of the mammary epithelium requires a tight balance between cellular proliferation, differentiation and death. To explore cell survival versus cell death decisions in this organ, we deleted the pro-survival gene Mcl-1 in the mammary epithelium. Mcl-1 was found to be essentia...
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Veröffentlicht in: | Nature cell biology 2015-04, Vol.17 (4), p.365-375 |
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Sprache: | eng |
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Zusammenfassung: | Expansion and remodelling of the mammary epithelium requires a tight balance between cellular proliferation, differentiation and death. To explore cell survival versus cell death decisions in this organ, we deleted the pro-survival gene
Mcl-1
in the mammary epithelium.
Mcl-1
was found to be essential at multiple developmental stages including morphogenesis in puberty and alveologenesis in pregnancy. Moreover,
Mcl-1
-deficient basal cells were virtually devoid of repopulating activity, suggesting that this gene is required for stem cell function. Profound upregulation of the Mcl-1 protein was evident in alveolar cells at the switch to lactation, and
Mcl-1
deficiency impaired lactation. Interestingly,
EGF
was identified as one of the most highly upregulated genes on lactogenesis and inhibition of EGF or mTOR signalling markedly impaired lactation, with concomitant decreases in Mcl-1 and phosphorylated ribosomal protein S6. These data demonstrate that Mcl-1 is essential for mammopoiesis and identify EGF as a critical trigger of Mcl-1 translation to ensure survival of milk-producing alveolar cells.
Visvader and colleagues report that in the mouse mammary gland, EGF and mTOR signalling induce expression of the anti-apoptotic Bcl2 family member Mcl-1 and show that this is required for the survival of milk-producing mammary epithelial cells. |
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ISSN: | 1465-7392 1476-4679 |
DOI: | 10.1038/ncb3117 |