Plant PAXX has an XLF-like function and stimulates DNA end-joining by the Ku-DNA ligase IV-XRCC4 complex
Hira Khan, Takashi Ochi
Abstract
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Hira Khan, Takashi Ochi
Abstract
Open-access reader
Abstract Non-homologous end joining (NHEJ) plays a major role in repairing DNA double-strand breaks (DSBs) and is key to genome stability and editing. The minimal core NHEJ proteins, namely Ku70, Ku80, DNA ligase IV and XRCC4, are conserved, but other factors vary in different eukaryotes groups. In plants, known NHEJ proteins are the core factors only, and the molecular mechanism of plant NHEJ remains unclear. Here, we report a previously unidentified plant ortholog of PAXX, the crystal structure of which showed a similar fold to human PAXX. However, plant PAXX has similar molecular functions to human XLF, by directly interacting with Ku70/80 and XRCC4. This suggests that plant PAXX combines the roles of mammalian PAXX and XLF and that these functions merged into a single protein during evolution. This is consistent with a redundant function of PAXX and XLF in mammals.
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Abstract Non-homologous end joining (NHEJ) plays a major role in repairing DNA double-strand breaks (DSBs) and is key to genome stability and editing. The minimal core NHEJ proteins, namely Ku70, Ku80, DNA ligase IV and XRCC4, are conserved, but other factors vary in different eukaryotes groups. In plants, known NHEJ proteins are the core factors only, and the molecular mechanism of plant NHEJ remains unclear. Here, we report a previously unidentified plant ortholog of PAXX, the crystal structure of which showed a similar fold to human PAXX. However, plant PAXX has similar molecular functions to human XLF, by directly interacting with Ku70/80 and XRCC4. This suggests that plant PAXX combines the roles of mammalian PAXX and XLF and that these functions merged into a single protein during evolution. This is consistent with a redundant function of PAXX and XLF in mammals.
Key concepts: Ku70, Ku80, DNA repair protein XRCC4, DNA ligase, Biology, Non-homologous end joining, DNA repair, Genetics