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Molecular Microbiology|May 9, 2014
Adapting to new threats: the generation of memory by CRISPR-Cas immune systemsRobert Heler, Luciano A Marraffini, David BikardChannels (Austin, Tex.)|January 22, 2013
Homology model and targeted mutagenesis identify critical residues for arachidonic acid inhibition of Kv4 channelsRobert Heler, Jessica K Bell, Linda M BolandCell Host & Microbe|February 3, 2019
Spacer Acquisition Rates Determine the Immunological Diversity of the Type II CRISPR-Cas Immune ResponseRobert Heler, Addison V Wright, Marija Vucelja, et al.Molecular Cell|December 27, 2016
Mutations in Cas9 Enhance the Rate of Acquisition of Viral Spacer Sequences during the CRISPR-Cas Immune ResponseRobert Heler, Addison V Wright, Marija Vucelja, et al.Nature|February 25, 2015
Cas9 specifies functional viral targets during CRISPR-Cas adaptationRobert Heler, Poulami Samai, Joshua W Modell, et al.The Journal of Experimental Biology|June 23, 2012
A unique alkaline pH-regulated and fatty acid-activated tandem pore domain potassium channel (K₂P) from a marine spongeGregory D Wells, Qiong-Yao Tang, Robert Heler, et al.Molecular Cell|July 7, 2018
Enhanced Bacterial Immunity and Mammalian Genome Editing via RNA-Polymerase-Mediated Dislodging of Cas9 from Double-Strand DNA BreaksRyan Clarke, Robert Heler, Matthew S MacDougall, et al.Cell|May 4, 2019
A High-Throughput Platform to Identify Small-Molecule Inhibitors of CRISPR-Cas9Basudeb Maji, Soumyashree A Gangopadhyay, Miseon Lee, et al.Pageof 1