Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/117167
Title: The SAP domain of Ku facilitates its efficient loading onto DNA ends
Authors: Fulneček, Jaroslav
Klimentová, Eva
Cairo, Albert
Bukovcakova, Sona Valuchova
Alexiou, Panagiotis
Prokop, Zbynek
Riha, Karel
Keywords: DNA -- Analysis
Algorithms
Application software
Database management
Issue Date: 2023
Publisher: Oxford University Press
Citation: Fulneček, J., Klimentová, E., Cairo, A., Bukovcakova, S. V., Alexiou, P., Prokop, Z., & Riha, K. (2023). The SAP domain of Ku facilitates its efficient loading onto DNA ends. Nucleic Acids Research, 51(21), 11706-11716.
Abstract: The evolutionarily conserved DNA repair complex Ku serves as the primary sensor of free DNA ends in eukaryotic cells. Its rapid association with DNA ends is crucial for several cellular processes, including non-homologous end joining (NHEJ) DNA repair and telomere protection. In this study, we conducted a transient kinetic analysis to investigate the impact of the SAP domain on individual phases of the Ku–DNA interaction. Specifically, we examined the initial binding, the subsequent docking of Ku onto DNA, and sliding of Ku along DNA. Our findings revealed that the C-terminal SAP domain of Ku70 facilitates the initial phases of the Ku–DNA interaction but does not affect the sliding process. This suggests that the SAP domain may either establish the first interactions with DNA, or stabilize these initial interactions during loading. To assess the biological role of the SAP domain, we generated Arabidopsis plants expressing Ku lacking the SAP domain. Intriguingly, despite the decreased efficiency of the ΔSAP Ku complex in loading onto DNA, the mutant plants exhibited full proficiency in classical NHEJ and telomere maintenance. This indicates that the speed with which Ku loads onto telomeres or DNA double-strand breaks is not the decisive factor in stabilizing these DNA structures.
URI: https://www.um.edu.mt/library/oar/handle/123456789/117167
Appears in Collections:Scholarly Works - FacHScABS

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