bioRxiv · 10.64898/2026.09.11.750924
Temporal proximity proteomics reveals ANP32A roles in replication fork progression and end joining
Abstract
Acidic nuclear phosphoprotein 32 family member A (ANP32A) regulates chromatin and histone homeostasis, but its contribution to DNA replication and repair remains unclear. Time-resolved AirID proximity labeling with data-independent acquisition mass spectrometry revealed phased remodeling of the ANP32A proximal proteome during hydroxyurea-induced replication stress. Early stress enriched DNA replication and repair factors, including FEN1, XRCC5/Ku80, and XRCC6/Ku70, whereas prolonged exposure shifted the network towards checkpoint and cell-cycle regulators. Orthogonal proximity ligation assays revealed sustained ANP32A-FEN1 proximity and transiently increased ANP32A-XRCC5 proximity. ANP32A was dynamically recruited to {gamma}H2AX-marked lesions following laser microirradiation and showed increased proximity to {gamma}H2AX after hydroxyurea treatment. ANP32A loss impaired proliferation and G1/S progression and moderately reduced replication fork velocity. However, it did not promote nascent strand degradation at stalled forks or measurably alter homologous recombination reporter activity. In contrast, ANP32A loss reduced non-homologous end-joining reporter activity, consistent with its stress-induced proximity to Ku proteins. These findings identify ANP32A as a chromatin-associated factor supporting replication fork progression and end joining while dispensable for stalled-fork protection, linking ANP32A-dependent chromatin regulation to genome maintenance.
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Jurkovic, C.-M., Raisch, J., Marbach, G., Levesque, D., Marois, I., Djerir, B., Monterroso, A. D. D., Marechal, A., Boisvert, F.-M.. 2026-09-15. Temporal proximity proteomics reveals ANP32A roles in replication fork progression and end joining. https://doi.org/10.64898/2026.09.11.750924
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