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David G. Schatz, PhD

Affiliations: 
Immunobiology Yale University, New Haven, CT 
Area:
immunology
Website:
http://medicine.yale.edu/mbb/faculty/david_schatz.profile
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"David G. Schatz"
Bio:

http://immunobiology.yale.edu/people/david_schatz-2.profile

Mean distance: 15.61 (cluster 31)
 
SNBCP
Cross-listing: Chemistry Tree

Parents

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David 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

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Cristian 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
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