AI Article Synopsis

  • - Repairing DNA double strand breaks (DSBs) is essential for maintaining genome stability and cell survival, with key mechanisms including homologous recombination, non-homologous end joining, microhomology-mediated end joining, and single strand annealing.
  • - The article introduces extrachromosomal reporter assays that selectively measure the effectiveness of each DSB repair pathway by evaluating the reconstitution of a nanoluciferase reporter gene in cells.
  • - These assays are quick (under 24 hours), quantitative, sensitive, and suitable for high-throughput screening, making them valuable tools for DNA repair research and drug discovery.

Article Abstract

The repair of DNA double strand breaks (DSBs) is crucial for the maintenance of genome stability and cell viability. DSB repair (DSBR) in cells is mediated through several mechanisms: homologous recombination (HR), non-homologous end joining (NHEJ), microhomology-mediated end joining (MMEJ), and single strand annealing (SSA). Cellular assays are essential to measure the proficiency and modulation of these pathways in response to various stimuli. Here, we present a suite of extrachromosomal reporter assays that each measure the reconstitution of a nanoluciferase reporter gene by one of the four major DSBR pathways in cells. Upon transient transfection into cells of interest, repair of pathway-specific reporter substrates can be measured in under 24 h by the detection of Nanoluciferase (NanoLuc) luminescence. These robust assays are quantitative, sensitive, titratable, and amenable to a high-throughput screening format. These properties provide broad applications in DNA repair research and drug discovery, complementing the currently available toolkit of cellular DSBR assays.

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Source
http://dx.doi.org/10.3791/66969DOI Listing

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