Cynthia Wolberger
Affiliations: | Johns Hopkins University, Baltimore, MD |
Area:
ubiquitination and acetylation, transcription, x-ray crystallography, cryo-EM, biophysical methodsWebsite:
http://wolbergerlab.orgGoogle:
"Cynthia Wolberger"Bio:
https://en.wikipedia.org/wiki/Cynthia_Wolberger
Mean distance: 7.91 | S | N | B | C | P |
Parents
Sign in to add mentorStephen C. Harrison | grad student | 1988 | Harvard | |
(The structure of a 434 Cro-DNA complex) | ||||
Mark Ptashne | grad student | 1988 | Harvard | |
Carl O. Pabo | post-doc | Johns Hopkins | ||
Robert M. Stroud | post-doc | 1987-1989 | UCSF |
Children
Sign in to add traineeWilliam F. Hawse | grad student | ||
Elizabeth R. Sprague | grad student | 2000 | Johns Hopkins |
Jun Aishima | grad student | 2002 | Johns Hopkins |
Ailong Ke | grad student | 2002 | Johns Hopkins |
Nicole A. LaRonde-LeBlanc | grad student | 2002 | Johns Hopkins |
Andrew P. VanDemark | grad student | 2002 | Johns Hopkins |
Jose L. Avalos | grad student | 2004 | Johns Hopkins |
Kamau Fahie | grad student | 2009 | Johns Hopkins |
Elizabeth A. Feeser | grad student | 2009 | Johns Hopkins |
William F. Hawse | grad student | 2009 | Johns Hopkins |
Poonam Bheda | grad student | 2011 | Johns Hopkins |
Nadine L. Samara | grad student | 2011 | Johns Hopkins |
Anthony T. DiBello | grad student | 2013 | Johns Hopkins (Physics Tree) |
Patrick M. Lombardi | post-doc | 2012- | Johns Hopkins Medical School |
Christopher E. Berndsen | post-doc | 2008-2012 | Johns Hopkins |
Pankaj Kumar | post-doc | 2011-2014 | Johns Hopkins Medical School |
BETA: Related publications
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Publications
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Lombardi PM, Haile S, Rusanov T, et al. (2021) The ASCC2 CUE domain in the ALKBH3-ASCC DNA repair complex recognizes adjacent ubiquitins in K63-linked polyubiquitin. The Journal of Biological Chemistry. 101545 |
Wolberger C. (2021) How structural biology transformed studies of transcription regulation. The Journal of Biological Chemistry. 100741 |
Que LT, Morrow ME, Wolberger C. (2020) Comparison of cross-regulation by different OTUB1-E2 complexes. Biochemistry |
Worden EJ, Zhang X, Wolberger C. (2020) Structural basis for COMPASS recognition of an H2B-ubiquitinated nucleosome. Elife. 9 |
Worden EJ, Wolberger C. (2019) Activation and regulation of H2B-Ubiquitin-dependent histone methyltransferases. Current Opinion in Structural Biology. 59: 98-106 |
Morgan M, Jbara M, Brik A, et al. (2019) Semisynthesis of ubiquitinated histone H2B with a native or nonhydrolyzable linkage. Methods in Enzymology. 618: 1-27 |
Nune M, Morgan MT, Connell Z, et al. (2019) FACT and Ubp10 collaborate to modulate H2B deubiquitination and nucleosome dynamics. Elife. 8 |
Pasupala N, Morrow ME, Que LT, et al. (2018) OTUB1 non-catalytically stabilizes the E2 ubiquitin-conjugating enzyme UBE2E1 by preventing its autoubiquitination. The Journal of Biological Chemistry |
Morgan MT, Wolberger C. (2018) Competition Assay for Measuring Deubiquitinating Enzyme Substrate Affinity. Methods in Molecular Biology (Clifton, N.J.). 1844: 59-70 |
Morrow ME, Morgan MT, Clerici M, et al. (2018) Active site alanine mutations convert deubiquitinases into high-affinity ubiquitin-binding proteins. Embo Reports |