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PAXX binding to the NHEJ machinery explains functional redundancy with XLF

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posted on 2023-11-02, 16:07 authored by M Seif-El-Dahan, A Kefala-Stavridi, P Frit, SW Hardwick, DY Chirgadze, TM De Oliviera, S Britton, N Barboule, M Bossaert, AP Pandurangan, K Meek, TL Blundell, V Ropars, P Calsou, JB Charbonnier, AK Chaplin

Nonhomologous end joining is a critical mechanism that repairs DNA double-strand breaks in human cells. In this work, we address the structural and functional role of the accessory protein PAXX [paralog of x-ray repair cross-complementing protein 4 (XRCC4) and XRCC4-like factor (XLF)] in this mechanism. Here, we report highresolution cryo-electron microscopy (cryo-EM) and x-ray crystallography structures of the PAXX C-terminal Kubinding motif bound to Ku70/80 and cryo-EM structures of PAXX bound to two alternate DNA-dependent protein kinase (DNA-PK) end-bridging dimers, mediated by either Ku80 or XLF. We identify residues critical for the Ku70/PAXX interaction in vitro and in cells. We demonstrate that PAXX and XLF can bind simultaneously to the Ku heterodimer and act as structural bridges in alternate forms of DNA-PK dimers. Last, we show that engagement of both proteins provides a complementary advantage for DNA end synapsis and end joining in cells.

History

Author affiliation

Leicester Institute for Structural and Chemical Biology, Department of Molecular and Cell Biology, University of Leicester

Version

  • VoR (Version of Record)

Published in

Science Advances

Volume

9

Issue

22

Pagination

eadg2834

Publisher

American Association for the Advancement of Science (AAAS)

issn

2375-2548

eissn

2375-2548

Copyright date

2023

Available date

2023-11-02

Spatial coverage

United States

Language

eng

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