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Artículo
WASp modulates RPA function on single-stranded DNA in response to replication stress and DNA damage.
Autor/es | Han, Seong Su
Wen, Kuo Kuang García Rubio, María Luisa Wold, Marc S. Aguilera López, Andrés Niedzwiedz, Wojciech Vyas, Yatin M. |
Departamento | Universidad de Sevilla. Departamento de Genética |
Fecha de publicación | 2022 |
Fecha de depósito | 2023-05-24 |
Publicado en |
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Resumen | Perturbation in the replication-stress response (RSR) and DNA-damage response (DDR) causes genomic instability. Genomic instability occurs in Wiskott-Aldrich syndrome (WAS), a primary immunodeficiency disorder, yet the ... Perturbation in the replication-stress response (RSR) and DNA-damage response (DDR) causes genomic instability. Genomic instability occurs in Wiskott-Aldrich syndrome (WAS), a primary immunodeficiency disorder, yet the mechanism remains largely uncharacterized. Replication protein A (RPA), a single-strand DNA (ssDNA) binding protein, has key roles in the RSR and DDR. Here we show that human WAS-protein (WASp) modulates RPA functions at perturbed replication forks (RFs). Following genotoxic insult, WASp accumulates at RFs, associates with RPA, and promotes RPA:ssDNA complexation. WASp deficiency in human lymphocytes destabilizes RPA:ssDNA-complexes, impairs accumulation of RPA, ATR, ETAA1, and TOPBP1 at genotoxin-perturbed RFs, decreases CHK1 activation, and provokes global RF dysfunction. las17 (yeast WAS-homolog)-deficient S. cerevisiae also show decreased ScRPA accumulation at perturbed RFs, impaired DNA recombination, and increased frequency of DNA double-strand break (DSB)-induced single-strand annealing (SSA). Consequently, WASp (or Las17)-deficient cells show increased frequency of DSBs upon genotoxic insult. Our study reveals an evolutionarily conserved, essential role of WASp in the DNA stress-resolution pathway, such that WASp deficiency provokes RPA dysfunction-coupled genomic instability. |
Agencias financiadoras | National Institute of Allergy and Infectious Diseases (NIAID). U.S.A. Intramural Grant and Cancer Research (ICR). UK European Research Council (ERC) Ministerio de Ciencia e Innovación (MICIN). España |
Identificador del proyecto | R01AI146380
ICR A24881 ERC2014 AdG669898 TARLOOP PDI2019-104270GB-I00/ BMC |
Cita | Han, S.S., Wen, K.K., García Rubio, M.L., Wold, M.S., Aguilera López, A., Niedzwiedz, W. y Vyas, Y.M. (2022). WASp modulates RPA function on single-stranded DNA in response to replication stress and DNA damage.. Nature Communications, 13 (1), 3743. https://doi.org/10.1038/s41467-022-31415-z. |
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s41467-022-31415-z.pdf | 3.253Mb | [PDF] | Ver/ | |