FB2026_03 , released September 17, 2026
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Citation
Iampietro, C., Bergalet, J., Wang, X., Cody, N.A., Chin, A., Lefebvre, F.A., Douziech, M., Krause, H.M., Lécuyer, E. (2014). Developmentally regulated elimination of damaged nuclei involves a chk2-dependent mechanism of mRNA nuclear retention.  Dev. Cell 29(4): 468--481.
FlyBase ID
FBrf0225165
Publication Type
Research paper
Abstract
The faithful execution of embryogenesis relies on the ability of organisms to respond to genotoxic stress and to eliminate defective cells that could otherwise compromise viability. In syncytial-stage Drosophila embryos, nuclei with excessive DNA damage undergo programmed elimination through an as-yet poorly understood process of nuclear fallout at the midblastula transition. We show that this involves a Chk2-dependent mechanism of mRNA nuclear retention that is induced by DNA damage and prevents the translation of specific zygotic mRNAs encoding key mitotic, cytoskeletal, and nuclear proteins required to maintain nuclear viability. For histone messages, we show that nuclear retention involves Chk2-mediated inactivation of the Drosophila stem loop binding protein (SLBP), the levels of which are specifically depleted in damaged nuclei following Chk2 phosphorylation, an event that contributes to nuclear fallout. These results reveal a layer of regulation within the DNA damage surveillance systems that safeguard genome integrity in eukaryotes.
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Obtained with permission from Cell Press.
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PubMed Central ID
Related Publication(s)
Note

Genome stress response in early development.
Marzluff and Duronio, 2014, Dev. Cell 29(4): 375--376 [FBrf0225225]

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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Dev. Cell
    Title
    Developmental Cell
    Publication Year
    2001-
    ISBN/ISSN
    1534-5807 1878-1551
    Data From Reference
    Aberrations (1)
    Alleles (13)
    Genes (15)
    Natural transposons (1)
    Experimental Tools (3)
    Transgenic Constructs (5)