XLF and APLF bind Ku80 at two remote sites to ensure DNA repair by non-homologous end joining
The Ku70–Ku80 (Ku) heterodimer binds rapidly and tightly to the ends of DNA double-strand breaks and recruits factors of the non-homologous end-joining (NHEJ) repair pathway through molecular interactions that remain unclear. We have determined crystal structures of the Ku-binding motifs (KBM) of th...
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Veröffentlicht in: | Nature structural & molecular biology 2018-10, Vol.25 (10), p.971-980 |
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Sprache: | eng |
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Zusammenfassung: | The Ku70–Ku80 (Ku) heterodimer binds rapidly and tightly to the ends of DNA double-strand breaks and recruits factors of the non-homologous end-joining (NHEJ) repair pathway through molecular interactions that remain unclear. We have determined crystal structures of the Ku-binding motifs (KBM) of the NHEJ proteins APLF (A-KBM) and XLF (X-KBM) bound to a Ku–DNA complex. The two KBM motifs bind remote sites of the Ku80 α/β domain. The X-KBM occupies an internal pocket formed by an unprecedented large outward rotation of the Ku80 α/β domain. We observe independent recruitment of the APLF-interacting protein XRCC4 and of XLF to laser-irradiated sites via binding of A- and X-KBMs, respectively, to Ku80. Finally, we show that mutation of the X-KBM and A-KBM binding sites in Ku80 compromises both the efficiency and accuracy of end joining and cellular radiosensitivity. A- and X-KBMs may represent two initial anchor points to build the intricate interaction network required for NHEJ.
Crystal structures of the Ku70/80–DNA complex with Ku binding motifs of APLF and XLF reveal distinct interaction sites and an induced conformational change in Ku80 critical for function in NHEJ repair. |
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ISSN: | 1545-9993 1545-9985 |
DOI: | 10.1038/s41594-018-0133-6 |