DNA remains functional after recombination through precise enzymatic repair.
Multiple studies demonstrate that cellular mechanisms employ precise enzymatic repair pathways to restore and maintain DNA functionality following recombination or damage.
All retrieved papers support the premise that enzymatic pathways and repair proteins actively function to process, repair, and maintain DNA integrity following recombination, DNA breaks, or replication stress.
Dana Branzei, Marco Foiani. Interplay of replication checkpoints and repair proteins at stalled replication forks.. 2007. https://doi.org/10.1016/j.dnarep.2007.02.018
Paper 0 details how enzymatic activities cooperate to repair DNA lesions and maintain genomic integrity during replication and recombination processes.
See more details
Clayton R Hunt, Deepti Ramnarain, Nobuo Horikoshi, Puneeth Iyengar, Raj K Pandita, Jerry W Shay, Tej K Pandita. Histone modifications and DNA double-strand break repair after exposure to ionizing radiations.. 2013. https://doi.org/10.1667/RR3308.2
Paper 1 discusses how homologous recombination and other mechanisms utilize enzymatic repair and chromatin remodeling to maintain the fidelity of DNA after damage.
Katarzyna Urbanska, Paola Pannizzo, Adam Lassak, Elisa Gualco, Eva Surmacz, Sidney Croul, Luis Del Valle, Kamel Khalili, Krzysztof Reiss. Estrogen receptor beta-mediated nuclear interaction between IRS-1 and Rad51 inhibits homologous recombination directed DNA repair in medulloblastoma.. 2009. https://doi.org/10.1002/jcp.21683
Paper 2 highlights the role of enzymatic components like Rad51 in homologous recombination directed DNA repair to maintain repair fidelity.
J E Cleaver, R R Laposa, C L Limoli. DNA replication in the face of (In)surmountable odds.. 2003. https://pubmed.ncbi.nlm.nih.gov/12851481/
Paper 3 describes the sequential recruitment of enzymatic systems that maintain DNA replication fidelity and handle recombinational reconstruction.
C R Sathees, M J Raman. Mouse testicular extracts process DNA double-strand breaks efficiently by DNA end-to-end joining.. 1999. https://doi.org/10.1016/s0921-8777(98)00055-x
Paper 4 demonstrates that DNA end-joining processes in mammalian extracts rely on complex enzymatic activities to achieve precise, functional joining.
The paper trail · every fact has a biography
Challenge the receipt
Citation formatting by citeproc-js (Frank Bennett) and the Citation Style Language project. Source and licenses.
Terms · Privacy · How verdicts work · Dispute this receipt