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Molekuliarnaia Biologiia|December 27, 2019
[Synonymous Codon Usage-a Guide for Co-Translational Protein Folding in the Cell]A A KomarFEBS Letters|December 4, 1995
Kinetics of translation of gamma B crystallin and its circularly permutated variant in an in vitro cell-free system: possible relations to codon distribution and protein foldingA A Komar, R JaenickeBiochemistry. Biokhimiia|January 29, 2000
The [URE3] yeast prion: from genetics to biochemistryA A Komar, R Melki, C CullinFEBS Letters|January 6, 2000
Synonymous codon substitutions affect ribosome traffic and protein folding during in vitro translationA A Komar, T Lesnik, C ReissJournal of Protein Chemistry|October 1, 1991
Nonuniform size distribution of nascent globin peptides, evidence for pause localization sites, and a contranslational protein-folding modelI A Krasheninnikov, A A Komar, I A AdzhubeiBiological Chemistry|November 20, 1998
Enhanced expression of the yeast Ure2 protein in Escherichia coli: the effect of synonymous codon substitutions at a selected place in the geneA A Komar, E Guillemet, C Reiss, et al.Biokhimiia (Moscow, Russia)|February 1, 1989
[Role of the code redundancy in determining cotranslational protein folding]I A Krasheninnikov, A A Komar, I A AdzhubeĭFEBS Letters|July 12, 1993
Cotranslational heme binding to nascent globin chainsA A Komar, A Kommer, I A Krasheninnikov, et al.The Journal of Biological Chemistry|April 18, 1997
Cotranslational folding of globinA A Komar, A Kommer, I A Krasheninnikov, et al.FEBS Letters|November 5, 1997
Differential resistance to proteinase K digestion of the yeast prion-like (Ure2p) protein synthesized in vitro in wheat germ extract and rabbit reticulocyte lysate cell-free translation systemsA A Komar, T Lesnik, C Cullin, et al.Pageof 22