4.8 Article

The conserved Tpk1 regulates non-homologous end joining double-strand break repair by phosphorylation of Nej1, a homolog of the human XLF

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NUCLEIC ACIDS RESEARCH
卷 49, 期 14, 页码 8145-8160

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OXFORD UNIV PRESS
DOI: 10.1093/nar/gkab585

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资金

  1. CIHR [MSH-130178]
  2. Saskatchewan Health Research Foundation Postdoctoral Fellowship
  3. Natural Sciences and Engineering Research Council
  4. Canadian Institutes of Health Research [MOP-125952, RSN-124512, 132191, FDN-154318]

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The deletion of the yeast PKA catalytic subunit Tpk1 reduces NHEJ efficiency by phosphorylating Nej1 to influence repair protein recruitment and DNA resection. In mammalian cells, the PRKACB homolog also plays a similar role in NHEJ repair by phosphorylating XLF.
The yeast cyclic AMP-dependent protein kinase A (PKA) is a ubiquitous serine-threonine kinase, encompassing three catalytic (Tpk1-3) and one regulatory (Bcy1) subunits. Evidence suggests PKA involvement in DNA damage checkpoint response, but how DNA repair pathways are regulated by PKA subunits remains inconclusive. Here, we report that deleting the tpk1 catalytic subunit reduces non-homologous end joining (NHEJ) efficiency, whereas tpk2-3 and bcy1 deletion does not. Epistatic analyses revealed that tpk1, as well as the DNA damage checkpoint kinase (dunt) and NHEJ factor (nej1), co-function in the same pathway, and parallel to the NHEJ factor yku80. Chromatin immunoprecipitation and resection data suggest that tpk1 deletion influences repair protein recruitments and DNA resection. Further, we show that Tpk1 phosphorylation of Nej1 at S298 (a Duni phosphosite) is indispensable for NHEJ repair and nuclear targeting of Nej1 and its binding partner Lift. In mammalian cells, loss of PRKACB (human homolog of Tpk1) also reduced NHEJ efficiency, and similarly, PRKACB was found to phosphorylate XLF (a Nej1 human homolog) at S263, a corresponding residue of the yeast Nej1 S298. Together, our results uncover a new and conserved mechanism for Tpk1 and PRKACB in phosphorylating Nej1 (or XLF), which is critically required for NHEJ repair. [GRAPHICS] .

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