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Current Opinion in Microbiology|November 1, 2005
The direct genetic encoding of pyrrolysineJoseph A Krzycki
Current Opinion in Chemical Biology|July 17, 2013
The path of lysine to pyrrolysineJoseph A Krzycki
Current Opinion in Chemical Biology|September 29, 2004
Function of genetically encoded pyrrolysine in corrinoid-dependent methylamine methyltransferasesJoseph A Krzycki
Archaea (Vancouver, B.C.)|September 18, 2010
Selenocysteine, pyrrolysine, and the unique energy metabolism of methanogenic archaeaMichael Rother, Joseph A Krzycki
Cold Spring Harbor Perspectives in Biology|April 17, 2026
Recent Developments in (Archaeal) Pyrrolysine and Selenocysteine Specification and MetabolismNils Peiter, Michael Rother, Joseph A Krzycki
Science (New York, N.Y.)|May 25, 2002
Pyrrolysine encoded by UAG in Archaea: charging of a UAG-decoding specialized tRNAGayathri Srinivasan, Carey M James, Joseph A Krzycki
Current Opinion in Microbiology|May 10, 2011
Functional context, biosynthesis, and genetic encoding of pyrrolysineMarsha A Gaston, Ruisheng Jiang, Joseph A Krzycki
FEMS Microbiology Letters|August 26, 2020
Kinetic and substrate complex characterization of RamA, a corrinoid protein reductive activase from Methanosarcina barkeriKatherine A Huening, Ruisheng Jiang, Joseph A Krzycki
Methods in Enzymology|March 16, 2011
Assay of methylotrophic methyltransferases from methanogenic archaeaDonald J Ferguson, David G Longstaff, Joseph A Krzycki
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