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Methods in Molecular Biology (Clifton, N.J.)|October 7, 2016
Facile Site-Directed Mutagenesis of Large Constructs Using Gibson Isothermal DNA AssemblyIsaac T Yonemoto, Philip D Weyman
International Journal of Molecular Sciences|January 21, 2015
Designed surface residue substitutions in [NiFe] hydrogenase that improve electron transfer characteristicsIsaac T Yonemoto, Hamilton O Smith, Philip D Weyman
ACS Chemical Biology|March 7, 2012
Mutasynthesis of a potent anticancer sibiromycin analogueIsaac T Yonemoto, Wei Li, Ankush Khullar, et al.
Protein Science : a Publication of the Protein Society|July 22, 2009
A general strategy for the bacterial expression of amyloidogenic peptides using BCL-XL-1/2 fusionsIsaac T Yonemoto, Malcolm R Wood, William E Balch, et al.
BMC Biochemistry|June 18, 2014
A broad survey reveals substitution tolerance of residues ligating FeS clusters in [NiFe] hydrogenaseIsaac T Yonemoto, Benjamin R Clarkson, Hamilton O Smith, et al.
ACS Synthetic Biology|May 9, 2013
Cloning the Acholeplasma laidlawii PG-8A genome in Saccharomyces cerevisiae as a yeast centromeric plasmidBogumil J Karas, Christian Tagwerker, Isaac T Yonemoto, et al.
Journal of Biological Engineering|July 4, 2013
Dual organism design cycle reveals small subunit substitutions that improve [NiFe] hydrogenase hydrogen evolutionIsaac T Yonemoto, Christopher W Matteri, Thao Amy Nguyen, et al.
Biochemistry|August 20, 2008
Amylin proprotein processing generates progressively more amyloidogenic peptides that initially sample the helical stateIsaac T Yonemoto, Gerard J A Kroon, H Jane Dyson, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 13, 2011
Importance of single molecular determinants in the fidelity of expanded genetic codesAlicja K Antonczak, Zuzana Simova, Isaac T Yonemoto, et al.
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