David G. Schatz, PhD
Affiliations: | Immunobiology | Yale University, New Haven, CT |
Area:
immunologyWebsite:
http://medicine.yale.edu/mbb/faculty/david_schatz.profileGoogle:
"David G. Schatz"Bio:
http://immunobiology.yale.edu/people/david_schatz-2.profile
Mean distance: 15.61 (cluster 31) | S | N | B | C | P |
Cross-listing: Chemistry Tree
Parents
Sign in to add mentorDavid Baltimore | grad student | 1990 | MIT (Chemistry Tree) | |
(The isolation of the V(D)J recombination activating gene (RAG-1) by gene transfer) | ||||
David Baltimore | post-doc | 1990-1991 | Whitehead Institute (MIT) (Chemistry Tree) |
Children
Sign in to add traineeCristian Boboila | research assistant | 2002-2004 | Yale University, Columbia University |
Michael J. Difilippantonio | grad student | 1992-1997 | Yale University Graduate School |
Jamie A. Repasky | grad student | 2002 | Yale |
David G. Hesslein | grad student | 2003 | Yale |
Alfred I. Lee | grad student | 2003 | Yale |
Chia-Lun Tsai | grad student | 2003 | Yale |
Valerie H. Odegard | grad student | 2005 | Yale |
Shu Y. Yang | grad student | 2006 | Yale |
Anna H. Drejer Teel | grad student | 2008 | Yale |
Maggie M. Liu | grad student | 2008 | Yale |
Fang F. Yin | grad student | 2009 | Yale |
Hillary S. Gramlich | grad student | 2010 | Yale |
Kristin M. Kohler | grad student | 2011 | Yale |
Joydeep K. Banerjee | grad student | 2013 | Yale |
Alicia J. Little | grad student | 2013 | Yale |
Jessica J. McDonald | grad student | 2013 | Yale |
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Publications
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Wu L, Shukla V, Yadavalli AD, et al. (2022) HMCES protects immunoglobulin genes specifically from deletions during somatic hypermutation. Genes & Development. 36: 433-450 |
Tarsalainen A, Maman Y, Meng FL, et al. (2021) Ig Enhancers Increase RNA Polymerase II Stalling at Somatic Hypermutation Target Sequences. Journal of Immunology (Baltimore, Md. : 1950) |
Liu C, Zhang Y, Liu CC, et al. (2021) Structural insights into the evolution of the RAG recombinase. Nature Reviews. Immunology |
Beilinson HA, Glynn RA, Yadavalli AD, et al. (2021) The RAG1 N-terminal region regulates the efficiency and pathways of synapsis for V(D)J recombination. The Journal of Experimental Medicine. 218 |
Zhang Y, Corbett E, Wu S, et al. (2020) Structural basis for the activation and suppression of transposition during evolution of the RAG recombinase. The Embo Journal. e105857 |
Weinmann AS, Youngblood BA, Smale ST, et al. (2020) A Future Outlook on Molecular Mechanisms of Immunity. Trends in Immunology |
Kuhny M, Forbes LR, Çakan E, et al. (2020) Disease-associated CTNNBL1 mutation impairs somatic hypermutation by decreasing nuclear AID. The Journal of Clinical Investigation |
Hirokawa S, Chure G, Belliveau NM, et al. (2020) Sequence-dependent dynamics of synthetic and endogenous RSSs in V(D)J recombination. Nucleic Acids Research |
Martin EC, Vicari C, Tsakou-Ngouafo L, et al. (2020) Identification of RAG-like transposons in protostomes suggests their ancient bilaterian origin. Mobile Dna. 11: 17 |
Brecht RM, Liu CC, Beilinson HA, et al. (2020) Nucleolar localization of RAG1 modulates V(D)J recombination activity. Proceedings of the National Academy of Sciences of the United States of America |