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Methods in Molecular Biology (Clifton, N.J.)|December 25, 2008
FRET-based in vitro assays for the analysis of SUMO protease activitiesMichael H Tatham, Ronald T HayBiochemistry|March 19, 2003
Role of two residues proximal to the active site of Ubc9 in substrate recognition by the Ubc9.SUMO-1 thiolester complexMichael H Tatham, Yuan Chen, Ronald T HaySeminars in Cell & Developmental Biology|June 24, 2004
SUMO and transcriptional regulationDavid W H Girdwood, Michael H Tatham, Ronald T HayScience Signaling|June 23, 2011
Comparative proteomic analysis identifies a role for SUMO in protein quality controlMichael H Tatham, Ivan Matic, Matthias Mann, et al.Nature Protocols|May 1, 2010
High-stringency tandem affinity purification of proteins conjugated to ubiquitin-like moietiesFilip Golebiowski, Michael H Tatham, Akihiro Nakamura, et al.Cell Reports|March 30, 2017
Ufd1-Npl4 Recruit Cdc48 for Disassembly of Ubiquitylated CMG Helicase at the End of Chromosome ReplicationMarija Maric, Progya Mukherjee, Michael H Tatham, et al.Nature Protocols|September 5, 2009
Detection of protein SUMOylation in vivoMichael H Tatham, Manuel S Rodriguez, Dimitris P Xirodimas, et al.Plos Genetics|November 26, 2019
The S phase checkpoint promotes the Smc5/6 complex dependent SUMOylation of Pol2, the catalytic subunit of DNA polymerase εAlicja Winczura, Rowin Appanah, Michael H Tatham, et al.The Biochemical Journal|April 9, 2013
Ube2W conjugates ubiquitin to α-amino groups of protein N-terminiMichael H Tatham, Anna Plechanovová, Ellis G Jaffray, et al.Protein Science : a Publication of the Protein Society|March 25, 2008
Quantitative analysis of multi-protein interactions using FRET: application to the SUMO pathwaySarah F Martin, Michael H Tatham, Ronald T Hay, et al.Pageof 6