Loss of protein kinase C delta alters mammary gland development and apoptosis
As apoptotic pathways are commonly deregulated in breast cancer, exploring how mammary gland cell death is regulated is critical for understanding human disease. We show that primary mammary epithelial cells from protein kinase C delta (PKC δ ) −/− mice have a suppressed response to apoptotic agents...
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Veröffentlicht in: | Cell death & disease 2010-01, Vol.1 (1), p.e17-e17 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | As apoptotic pathways are commonly deregulated in breast cancer, exploring how mammary gland cell death is regulated is critical for understanding human disease. We show that primary mammary epithelial cells from protein kinase C delta (PKC
δ
) −/− mice have a suppressed response to apoptotic agents
in vitro
. In the mammary gland
in vivo
, apoptosis is critical for ductal morphogenesis during puberty and involution following lactation. We have explored mammary gland development in the PKC
δ
−/− mouse during these two critical windows. Branching morphogenesis was altered in 4- to 6-week-old PKC
δ
−/− mice as indicated by reduced ductal branching; however, apoptosis and proliferation in the terminal end buds was unaltered. Conversely, activation of caspase-3 during involution was delayed in PKC
δ
−/− mice, but involution proceeded normally. The thymus also undergoes apoptosis in response to physiological signals. A dramatic suppression of caspase-3 activation was observed in the thymus of PKC
δ
−/− mice treated with irradiation, but not mice treated with dexamethasone, suggesting that there are both target- and tissue-dependent differences in the execution of apoptotic pathways
in vivo
. These findings highlight a role for PKC
δ
in both apoptotic and nonapoptotic processes in the mammary gland and underscore the redundancy of apoptotic pathways
in vivo
. |
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ISSN: | 2041-4889 2041-4889 |
DOI: | 10.1038/cddis.2009.20 |