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Molecular and Cellular Biology|February 2, 2006
Mobilization of RAG-generated signal ends by transposition and insertion in vivoMonalisa Chatterji, Chia-Lun Tsai, David G SchatzImmunological Reviews|July 10, 2004
New concepts in the regulation of an ancient reaction: transposition by RAG1/RAG2Monalisa Chatterji, Chia-Lun Tsai, David G SchatzElife|July 10, 2014
Induction of homologous recombination between sequence repeats by the activation induced cytidine deaminase (AID) proteinJean-Marie Buerstedde, Noel Lowndes, David G SchatzPlos One|July 30, 2011
A computational-experimental approach identifies mutations that enhance surface expression of an oseltamivir-resistant influenza neuraminidaseJesse D Bloom, Jagannath S Nayak, David BaltimoreScience (New York, N.Y.)|June 5, 2010
Permissive secondary mutations enable the evolution of influenza oseltamivir resistanceJesse D Bloom, Lizhi Ian Gong, David BaltimoreInternational Immunology|March 25, 2004
Staggered AID-dependent DNA double strand breaks are the predominant DNA lesions targeted to S mu in Ig class switch recombinationJames S Rush, Sebastian D Fugmann, David G SchatzThe Journal of Experimental Medicine|December 21, 2006
Control of gene conversion and somatic hypermutation by immunoglobulin promoter and enhancer sequencesShu Yuan Yang, Sebastian D Fugmann, David G SchatzThe EMBO Journal|September 18, 2020
Structural basis for the activation and suppression of transposition during evolution of the RAG recombinaseYuhang Zhang, Elizabeth Corbett, Shenping Wu, et al.Genes & Development|August 3, 2002
Evidence of a critical architectural function for the RAG proteins in end processing, protection, and joining in V(D)J recombinationChia-Lun Tsai, Anna H Drejer, David G SchatzGenes & Development|April 9, 2016
Collaboration of RAG2 with RAG1-like proteins during the evolution of V(D)J recombinationLina Marcela Carmona, Sebastian D Fugmann, David G SchatzPageof 27