Loss of Paip1 causes translation reduction and induces apoptotic cell death through ISR activation and Xrp1
Regulation of protein translation initiation is tightly associated with cell growth and survival. Here, we identify Paip1 , the Drosophila homolog of the translation initiation factor PAIP1 , and analyze its role during development. Through genetic analysis, we find that loss of Paip1 causes reduced...
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Veröffentlicht in: | Cell death discovery 2023-08, Vol.9 (1), p.288-288, Article 288 |
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Sprache: | eng |
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Zusammenfassung: | Regulation of protein translation initiation is tightly associated with cell growth and survival. Here, we identify
Paip1
, the
Drosophila
homolog of the translation initiation factor
PAIP1
, and analyze its role during development. Through genetic analysis, we find that loss of
Paip1
causes reduced protein translation and pupal lethality. Furthermore, tissue specific knockdown of
Paip1
results in apoptotic cell death in the wing imaginal disc.
Paip1
depletion leads to increased proteotoxic stress and activation of the integrated stress response (ISR) pathway. Mechanistically, we show that loss of
Paip1
promotes phosphorylation of eIF2α via the kinase PERK, leading to apoptotic cell death. Moreover,
Paip1
depletion upregulates the transcription factor gene
Xrp1
, which contributes to apoptotic cell death and eIF2α phosphorylation. We further show that loss of
Paip1
leads to an increase in
Xrp1
translation mediated by its 5’UTR. These findings uncover a novel mechanism that links translation impairment to tissue homeostasis and establish a role of ISR activation and
Xrp1
in promoting cell death. |
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ISSN: | 2058-7716 2058-7716 |
DOI: | 10.1038/s41420-023-01587-8 |