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Current Opinion in Chemical Biology|August 29, 2006
Where to begin? The mechanism of translation initiation codon selection in eukaryotesMikkel A Algire, Jon R LorschJournal of Molecular Biology|December 29, 2005
Communication between eukaryotic translation initiation factors 5 and 1A within the ribosomal pre-initiation complex plays a role in start site selectionDavid Maag, Mikkel A Algire, Jon R LorschMolecular Cell|October 26, 2005
Pi release from eIF2, not GTP hydrolysis, is the step controlled by start-site selection during eukaryotic translation initiationMikkel A Algire, David Maag, Jon R LorschOpen Biology|November 17, 2012
A Type III restriction-modification system in Mycoplasma mycoides subsp. capriMikkel A Algire, Michael G Montague, Sanjay Vashee, et al.Antimicrobial Agents and Chemotherapy|August 19, 2009
New selectable marker for manipulating the simple genomes of Mycoplasma speciesMikkel A Algire, Carole Lartigue, David W Thomas, et al.Molecular Cell|September 25, 2010
The 5'-7-methylguanosine cap on eukaryotic mRNAs serves both to stimulate canonical translation initiation and to block an alternative pathwaySarah F Mitchell, Sarah E Walker, Mikkel A Algire, et al.Molecular Cell|April 17, 2007
The eukaryotic translation initiation factors eIF1 and eIF1A induce an open conformation of the 40S ribosomeLori A Passmore, T Martin Schmeing, David Maag, et al.The EMBO Journal|March 3, 2007
N- and C-terminal residues of eIF1A have opposing effects on the fidelity of start codon selectionChristie A Fekete, Sarah F Mitchell, Vera A Cherkasova, et al.Genes & Development|May 17, 2007
Dissociation of eIF1 from the 40S ribosomal subunit is a key step in start codon selection in vivoYuen-Nei Cheung, David Maag, Sarah F Mitchell, et al.Pageof 3