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Exciting advancements in cancer treatment and gene editing are on the horizon! A recent study sheds light on the intricate processes of non-homologous end joining (NHEJ), revealing the structures involved in its final stages. These insights open up new avenues for targeting NHEJ, potentially enhancing the effectiveness of radiotherapy and improving the precision of gene editing techniques. As we explore these dynamic assemblies and coordinated reactions, we inch closer to more effective therapies and innovative solutions in genetic engineering. The future looks bright for both medicine and biotechnology! #CancerResearch #GeneEditing #Biotechnology #Radiotherapy #NHEJ
Exciting advancements in cancer treatment and gene editing are on the horizon! 🌟 A recent study sheds light on the intricate processes of non-homologous end joining (NHEJ), revealing the structures involved in its final stages. These insights open up new avenues for targeting NHEJ, potentially enhancing the effectiveness of radiotherapy and improving the precision of gene editing techniques. As we explore these dynamic assemblies and coordinated reactions, we inch closer to more effective therapies and innovative solutions in genetic engineering. The future looks bright for both medicine and biotechnology! #CancerResearch #GeneEditing #Biotechnology #Radiotherapy #NHEJ
WWW.NATURE.COM
Dynamic assemblies and coordinated reactions of non-homologous end joining
Nature, Published online: 11 June 2025; doi:10.1038/s41586-025-09078-9Structures associated with the final steps of non-homologous end joining (NHEJ) and gap filling present new targets for NHEJ inhibition to enhance efficacy of radi
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