James A. Wells, Ph.D.

Affiliations: 
Pharmaceutical Chemistry University of California, San Francisco, San Francisco, CA 
Area:
molecular recognition
Website:
http://profiles.ucsf.edu/james.wells
Google:
"James Wells, UCSF"
Bio:

http://www.nasonline.org/member-directory/members/3008577.html
http://wellslab.ucsf.edu
http://cancer.ucsf.edu/people/profiles/wells_james.3746

Parents

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Ralph G. Yount grad student 1979 WSU
 (Inactivation of myosin subfragment-one by Cobalt(II)/Co(III) phenanthroline complexes)
George R. Stark post-doc 1982 Stanford Medical School

Children

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Debajyoti Datta grad student 2010 UCSF
Daniel C. Gray grad student 2011 UCSF
Christopher L. McClendon grad student 2011 UCSF
Emily D. Crawford grad student 2012 UCSF
Julie A. Zorn grad student 2012 UCSF
Charles W Morgan grad student 2008-2015
David Y. Jackson post-doc Genentech, Inc.
Amy Weeks post-doc UCSF
Zachary B. Hill post-doc 2012- UCSF
Trenton M Peters-Clarke post-doc 2023- UCSF
Michelle R. Arkin post-doc 1997-1998 Genentech, Inc.
Gregory Alan Weiss post-doc 1998-2000 Genentech
Hikari A. I. Yoshihara post-doc 2005-2009
Dennis W. Wolan post-doc 2005-2010 UCSF
Wentao Chen post-doc 2016-2019 UCSF
BETA: Related publications

Publications

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Ngo W, Peukes J, Baldwin A, et al. (2024) Mechanism-guided engineering of a minimal biological particle for genome editing. Proceedings of the National Academy of Sciences of the United States of America. 122: e2413519121
Ngo W, Peukes JT, Baldwin A, et al. (2024) Mechanism-guided engineering of a minimal biological particle for genome editing. Biorxiv : the Preprint Server For Biology
Schaefer K, Lui I, Byrnes JR, et al. (2022) Direct Identification of Proteolytic Cleavages on Living Cells Using a Glycan-Tethered Peptide Ligase. Acs Central Science. 8: 1447-1456
Jiang Z, Kuo YH, Zhong M, et al. (2022) Adaptor-Specific Antibody Fragment Inhibitors for the Intracellular Modulation of p97 (VCP) Protein-Protein Interactions. Journal of the American Chemical Society
Solomon PE, Kirkemo LL, Wilson GM, et al. (2022) Discovery proteomics analysis determines that driver oncogenes suppress antiviral defense pathways through reduction in interferon-b autocrine stimulation. Molecular & Cellular Proteomics : McP. 100247
Byrnes JR, Weeks AM, Shifrut E, et al. (2022) Hypoxia is a dominant remodeler of the effector T cell surface proteome relative to activation and regulatory T cell suppression. Molecular & Cellular Proteomics : McP. 100217
Martinko AJ, Simonds EF, Prasad S, et al. (2022) Switchable assembly and function of antibody complexes in vivo using a small molecule. Proceedings of the National Academy of Sciences of the United States of America. 119
Weeks AM, Byrnes JR, Lui I, et al. (2021) Mapping proteolytic neo-N termini at the surface of living cells. Proceedings of the National Academy of Sciences of the United States of America. 118
Chen W, Mou KY, Solomon P, et al. (2021) Large remodeling of the Myc-induced cell surface proteome in B cells and prostate cells creates new opportunities for immunotherapy. Proceedings of the National Academy of Sciences of the United States of America. 118
Lim SA, Wells JA. (2020) Split enzymes: Design principles and strategy. Methods in Enzymology. 644: 275-296
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