Activity and structure of human (d)CTP deaminase CDADC1
Abstract
Vertebrates have evolved an understudied protein termed CDADC1 (NYD-SP15) that contains an inactive N-terminal and active C-terminal DCTD-like domain. Here, we show that human CDADC1 is a (d)CTP-specific deaminase, with a roughly 2-fold in vitro preference for dCTP over CTP. We determined high-resolution cryo-EM structures of CDADC1 in the absence of substrate and in complex with dCTP and 5-methyl-dCTP. The structures show that CDADC1 forms trimers and dimers of trimers in solution. The (d)CTP substrate is selected by a narrow pocket for the cytosine base and multiple lysine and arginine contacts to the triphosphate. Substrate binding promotes the association of trimers into hexamers and the transition of the hexamers from a loose to a tighter arrangement. Genetic experiments in mice show that loss of Cdadc1 is surprisingly well tolerated, even in the absence of the dCMP deaminase Dctd that is considered as the main source of dUMP, the precursor of dTTP.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (10)
Anton Slyvka
Laboratory of Structural Biology, International Institute of Molecular and Cell Biology in Warsaw
Ishan Rathore
Center for Structural Biology, National Cancer Institute, NIH
Renbin Yang
Cancer Research Technology Program, Leidos Biomedical Research Inc.,
Olga Gewartowska
Tapan Kanai
George T. Lountos
Basic Science Program, Frederick National Laboratory for Cancer Research
Krzysztof Skowronek
Biophysics Facility, International Institute of Molecular and Cell Biology in Warsaw
Mariusz Czarnocki-Cieciura
Alexander Wlodawer
Center for Structural Biology, National Cancer Institute, NIH
Matthias Bochtler
Laboratory of Structural Biology, International Institute of Molecular and Cell Biology in Warsaw