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Biochemistry|July 23, 2015
Protein-Protein Interactions in the Cyanobacterial Circadian Clock: Structure of KaiA Dimer in Complex with C-Terminal KaiC Peptides at 2.8 Å ResolutionRekha Pattanayek, Martin EgliBiochemistry|October 2, 2012
Crystal structure of the redox-active cofactor dibromothymoquinone bound to circadian clock protein KaiA and structural basis for dibromothymoquinone's ability to prevent stimulation of KaiC phosphorylation by KaiARekha Pattanayek, Said K Sidiqi, Martin EgliCell Cycle (Georgetown, Tex.)|February 8, 2013
Nature of KaiB-KaiC binding in the cyanobacterial circadian oscillatorRekha Pattanayek, Kirthi Kiran Yadagiri, Melanie D Ohi, et al.Acta Crystallographica. Section D, Biological Crystallography|May 13, 2014
An arginine tetrad as mediator of input-dependent and input-independent ATPases in the clock protein KaiCRekha Pattanayek, Yao Xu, Aashish Lamichhane, et al.Journal of the American Chemical Society|December 12, 2002
Selenium-assisted nucleic acid crystallography: use of phosphoroselenoates for MAD phasing of a DNA structureChristopher J Wilds, Rekha Pattanayek, Chongle Pan, et al.Molecular Cell|August 12, 2004
Visualizing a circadian clock protein: crystal structure of KaiC and functional insightsRekha Pattanayek, Jimin Wang, Tetsuya Mori, et al.Proceedings of the National Academy of Sciences of the United States of America|September 7, 2004
Identification of key phosphorylation sites in the circadian clock protein KaiC by crystallographic and mutagenetic analysesYao Xu, Tetsuya Mori, Rekha Pattanayek, et al.Plos One|December 4, 2009
Structures of KaiC circadian clock mutant proteins: a new phosphorylation site at T426 and mechanisms of kinase, ATPase and phosphataseRekha Pattanayek, Tetsuya Mori, Yao Xu, et al.Biochemistry|February 7, 2012
Dephosphorylation of the core clock protein KaiC in the cyanobacterial KaiABC circadian oscillator proceeds via an ATP synthase mechanismMartin Egli, Tetsuya Mori, Rekha Pattanayek, et al.Journal of the American Chemical Society|November 19, 2004
Structural rationalization of a large difference in RNA affinity despite a small difference in chemistry between two 2'-O-modified nucleic acid analoguesRekha Pattanayek, Latsavongsakda Sethaphong, Chongle Pan, et al.Pageof 2