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Entry ID Original Release date Data summary Entry Title Citation Title Authors
25559 2016-04-12 Chemical Shifts: 1 set
Structure of C-terminal domain of human polymerase Rev1 in complex with PolD3 RIR-motif Interaction between the Rev1 C-terminal Domain and the PolD3 Subunit of Pol-zeta Suggests a Mechanism of Polymerase Exchange upon Rev1/Pol-zeta-Dependent Translesion Synthesis Download bibtex for citation iamge Alessandro A Rizzo, Dmitry M Korzhnev, George Korza, Graham C Walker, Mariana TQ Magalhaes, Sanjay D'Souza, Yulia Pustovalova
18455 2012-12-18 Chemical Shifts: 1 set
Structure of the C-terminal domain from human REV1 NMR structure and dynamics of the C-terminal domain from human Rev1 and its complex with Rev1 interacting region of DNA polymerase . Download bibtex for citation iamge Alexandra Pozhidaeva, Graham C Korzhnev, Irina Walker, Sanjay Bezsonova, Yulia Pustovalova
18434 2012-06-18 Chemical Shifts: 1 set
C-terminal domain of human REV1 in complex with DNA-polymerase H (eta) NMR structure and dynamics of the C-terminal domain from human Rev1 and its complex with Rev1 interacting region of DNA polymerase . Download bibtex for citation iamge Alexandra Pozhidaeva, Graham C Korzhnev, Irina Walker, Sanjay Bezsonova, Yulia Pustovalova
18433 2012-06-18 Chemical Shifts: 1 set
Solution structure of the mouse Rev1 CTD in complex with the Rev1-interacting Region (RIR)of Pol Kappa Multifaceted recognition of vertebrate Rev1 by translesion polymerases and . Download bibtex for citation iamge Graham C Zhou, Jessica Wojtaszek, Jiangxin Liu, Sanjay Wang, Su Xue, Yaohua Walker
18431 2012-06-18 Chemical Shifts: 1 set
Solution structure of the mouse Rev1 C-terminal domain Multifaceted recognition of vertebrate Rev1 by translesion polymerases and . Download bibtex for citation iamge Graham C Zhou, Jessica Wojtaszek, Jiangxin Liu, Sanjay Wang, Su Xue, Yaohua Walker
16882 2010-06-15 Chemical Shifts: 1 set
Solution Structure of the Ubiquitin-Binding Motif of Human Polymerase Iota Unconventional ubiquitin recognition by the ubiquitin-binding motif within the Y family DNA polymerases iota and Rev1. Download bibtex for citation iamge Graham C Zhou, Ivan Walker, Martha G Bomar, Marzena Dikic, Sanjay Bienko