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European Journal of Immunology|December 11, 2019
Transcription factor binding at Ig enhancers is linked to somatic hypermutation targetingRavi K Dinesh, Benjamin Barnhill, Anoj Ilanges, et al.Infection and Immunity|September 1, 1992
Toxicity and immunogenicity of Neisseria meningitidis lipopolysaccharide incorporated into liposomesA B Petrov, B F Semenov, Y P Vartanyan, et al.Blood|January 12, 2012
Dendritic cell-mediated activation-induced cytidine deaminase (AID)-dependent induction of genomic instability in human myelomaSrinivas Koduru, Ellice Wong, Till Strowig, et al.Blood|January 8, 2009
Leaky severe combined immunodeficiency and aberrant DNA rearrangements due to a hypomorphic RAG1 mutationWilliam Giblin, Monalisa Chatterji, Gerwin Westfield, et al.Molecular Cell|March 6, 2025
Transcription elongation factor ELOF1 is required for efficient somatic hypermutation and class switch recombinationLizhen Wu, Anurupa Devi Yadavalli, Filip Senigl, et al.Nature Immunology|July 20, 2004
B cell-specific loss of histone 3 lysine 9 methylation in the V(H) locus depends on Pax5Kristen Johnson, David L Pflugh, Duonan Yu, et al.Journal of Immunology (Baltimore, Md. : 1950)|December 4, 2021
Ig Enhancers Increase RNA Polymerase II Stalling at Somatic Hypermutation Target SequencesAlina Tarsalainen, Yaakov Maman, Fei-Long Meng, et al.The Journal of Experimental Medicine|February 6, 2013
The ataxia telangiectasia mutated kinase controls Igκ allelic exclusion by inhibiting secondary Vκ-to-Jκ rearrangementsNatalie C Steinel, Baeck-Seung Lee, Anthony T Tubbs, et al.Nature|April 12, 2019
Transposon molecular domestication and the evolution of the RAG recombinaseYuhang Zhang, Tat Cheung Cheng, Guangrui Huang, et al.Biorxiv : the Preprint Server for Biology|August 30, 2023
Insights into RAG evolution from the identification of "missing link" family A RAGL transposonsEliza C Martin, Lorlane Le Targa, Louis Tsakou-Ngouafo, et al.Pageof 36