4.3 Article

Formation and nucleolytic processing of Cas9-induced DNA breaks in human cells quantified by droplet digital PCR

期刊

DNA REPAIR
卷 68, 期 -, 页码 68-74

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.dnarep.2018.06.005

关键词

DSB repair; DSB resection; Cas9; ddPCR; Gene editing

资金

  1. Associazione Italiana Ricerca sul Cancro [AIRC-IG-15488, AIRC-IG-19917]
  2. Ministero Istruzione University e Ricerca [PRIN-2015LZE994]
  3. Fondazione Adriano Buzzati-Traverso
  4. Fondazione Veronesi
  5. Fondazione Gabriella Dolfin Voyasidis-Accademia Nazionale dei Lincei

向作者/读者索取更多资源

Cas9 endonuclease from S. pyogenes is widely used to induce controlled double strand breaks (DSB) at desired genomic loci for gene editing. Here, we describe a droplet digital PCR (ddPCR) method to precisely quantify the kinetic of formation and 5'-end nucleolytic processing of Cas9-induced DSB in different human cells lines. Notably, DSB processing is a finely regulated process, which dictates the choice between non-homologous end joining (NHEJ) and homology directed repair (HDR). This step of DSB repair is also a relevant point to be taken into consideration to improve Cas9-mediated technology. Indeed, by this protocol, we show that processing of Cas9-induced DSB is impaired by CTIP or BRCA1 depletion, while it is accelerated after down-regulation of DNA-PKcs and 53BP1, two DSB repair key factors. In conclusion, the method we describe here can be used to study DSB repair mechanisms, with direct utility for molecularly optimising the knock-out/in outcomes in genome manipulation.

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