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Updated: Feb 7, 2026

Induction and Assessment of Class Switch Recombination in Purified Murine B Cells
Published on: August 13, 2010
Kinase-dependent structural role of DNA-PKcs during immunoglobulin class switch recombination
Jennifer L Crowe1,2, Zhengping Shao1, Xiaobin S Wang1,2
1Institute for Cancer Genetics, Columbia University, New York, NY 10032.
Abstract:
The catalytic subunit of DNA-dependent protein kinase (DNA-PKcs) is a classical nonhomologous end-joining (cNHEJ) factor. Loss of DNA-PKcs diminished mature B cell class switch recombination (CSR) to other isotypes, but not IgG1. Here, we show that expression of the kinase-dead DNA-PKcs (DNA-PKcs ) severely compromises CSR to IgG1. High-throughput sequencing analyses of CSR junctions reveal frequent accumulation of nonproductive interchromosomal translocations, inversions, and extensive end resection in DNA-PKcs , but not DNA-PKcs , B cells. Meanwhile, the residual joints from DNA-PKcs cells and the efficient Sµ-Sγ1 junctions from DNA-PKcs B cells both display similar preferences for small (2-6 nt) microhomologies (MH). In DNA-PKcs cells, Sµ-Sγ1 joints are more resistant to inversions and extensive resection than Sµ-Sε and Sµ-Sµ joints, providing a mechanism for the isotype-specific CSR defects. Together, our findings identify a kinase-dependent role of DNA-PKcs in suppressing MH-mediated end joining and a structural role of DNA-PKcs protein in the orientation of CSR.
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