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Biochemistry|April 10, 2010
Trema and parasponia hemoglobins reveal convergent evolution of oxygen transport in plantsRyan Sturms, Smita Kakar, James Trent, et al.Plos One|May 1, 2008
NO dioxygenase activity in hemoglobins is ubiquitous in vitro, but limited by reduction in vivoBenoit J Smagghe, James T Trent, Mark S HargrovePhotochemistry and Photobiology|September 12, 2006
Characterization of the interactions of fluorescent probes with proteins: coumarin 153 and 1,8-ANS in complex with holo- and apomyoglobinPrasun Mukherjee, Mintu Halder, Mark S Hargrove, et al.Biochemistry|November 15, 2011
Hydroxylamine reduction to ammonium by plant and cyanobacterial hemoglobinsRyan Sturms, Alan A DiSpirito, D Bruce Fulton, et al.The New Phytologist|January 22, 2020
Plant hemoglobins: a journey from unicellular green algae to vascular plantsManuel Becana, Inmaculada Yruela, Gautam Sarath, et al.Protein Science : a Publication of the Protein Society|January 24, 2007
Covalent heme attachment in Synechocystis hemoglobin is required to prevent ferrous heme dissociationJulie A Hoy, Benoit J Smagghe, Puspita Halder, et al.Biochemistry|September 24, 2016
Role of Reversible Histidine Coordination in Hydroxylamine Reduction by Plant Hemoglobins (Phytoglobins)Navjot Singh Athwal, Jagannathan Alagurajan, Amy H Andreotti, et al.Journal of Molecular Biology|August 4, 2004
Crystallographic analysis of synechocystis cyanoglobin reveals the structural changes accompanying ligand binding in a hexacoordinate hemoglobinJames T Trent, Suman Kundu, Julie A Hoy, et al.Biochemistry|January 13, 2006
Slow ligand binding kinetics dominate ferrous hexacoordinate hemoglobin reactivities and reveal differences between plants and other speciesBenoit J Smagghe, Gautam Sarath, Emily Ross, et al.The Journal of Biological Chemistry|January 23, 2004
The crystal structure of Synechocystis hemoglobin with a covalent heme linkageJulie A Hoy, Suman Kundu, James T Trent, et al.Pageof 5