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Biochemistry|September 25, 2003
Identity and functions of CxxC-derived motifsDmitri E Fomenko, Vadim N GladyshevProtein Science : a Publication of the Protein Society|September 19, 2002
CxxS: fold-independent redox motif revealed by genome-wide searches for thiol/disulfide oxidoreductase functionDmitri E Fomenko, Vadim N GladyshevAntioxidants & Redox Signaling|September 10, 2011
Comparative genomics of thiol oxidoreductases reveals widespread and essential functions of thiol-based redox control of cellular processesDmitri E Fomenko, Vadim N GladyshevAntioxidants & Redox Signaling|September 19, 2003
Genomics perspective on disulfide bond formationDmitri E Fomenko, Vadim N GladyshevGenome Biology|April 19, 2005
The microbial selenoproteome of the Sargasso SeaYan Zhang, Dmitri E Fomenko, Vadim N GladyshevMolecules and Cells|July 24, 2008
Functional diversity of cysteine residues in proteins and unique features of catalytic redox-active cysteines in thiol oxidoreductasesDmitri E Fomenko, Stefano M Marino, Vadim N GladyshevACS Chemical Biology|August 10, 2011
Selective reduction of methylsulfinyl-containing compounds by mammalian MsrA suggests a strategy for improved drug efficacyByung Cheon Lee, Dmitri E Fomenko, Vadim N GladyshevBiochemistry|May 17, 2007
A conserved cis-proline precludes metal binding by the active site thiolates in members of the thioredoxin family of proteinsDan Su, Carsten Berndt, Dmitri E Fomenko, et al.Plos One|July 17, 2010
Diversity of protein and mRNA forms of mammalian methionine sulfoxide reductase B1 due to intronization and protein processingXinwen Liang, Dmitri E Fomenko, Deame Hua, et al.Annual Review of Nutrition|June 11, 2004
Identification of trace element-containing proteins in genomic databasesVadim N Gladyshev, Gregory V Kryukov, Dmitri E Fomenko, et al.Pageof 47