EVI1 carboxy-terminal phosphorylation is ATM-mediated and sustains transcriptional modulation and self-renewal via enhanced CtBP1 association
Author(s) -
Roberto Paredes,
Marion Schneider,
Adam Stevens,
Daniel J. White,
Andrew J.K. Williamson,
Joanne Muter,
Stella Pearson,
James R. Kelly,
Kathleen Connors,
Daniel H. Wiseman,
John Chadwick,
H. Löffler,
Hsiang Ying Teng,
Simon C. Lovell,
Richard D. Unwin,
Henri J. van de Vrugt,
Helen Smith,
Olga Kustikova,
Axel Schambach,
Tim C. P. Somervaille,
Andrew Pierce,
Anthony D. Whetton,
Stefan Meyer
Publication year - 2018
Publication title -
nucleic acids research
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 9.008
H-Index - 537
eISSN - 1362-4954
pISSN - 0305-1048
DOI - 10.1093/nar/gky711
Subject(s) - biology , phosphorylation , microbiology and biotechnology , terminal (telecommunication) , association (psychology) , modulation (music) , genetics , telecommunications , philosophy , epistemology , computer science , aesthetics
Roberto Paredes1,2,†, Marion Schneider1,2,†, Adam Stevens2,3, Daniel J. White1,2, Andrew J. K. Williamson1,2, Joanne Muter1,2, Stella Pearson1,2, James R. Kelly1,2, Kathleen Connors1,2, Daniel H. Wiseman2,4, John A. Chadwick2,4, Harald Löffler5, Hsiang Ying Teng1,2, Simon Lovell2,6, Richard Unwin1,2, Henri J. van de Vrugt7, Helen Smith2,6, Olga Kustikova8, Axel Schambach8, Tim C. P. Somervaille2,4, Andrew Pierce1,2, Anthony D. Whetton1,2,9 and Stefan Meyer1,2,10,11,*
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom