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Biochemistry|September 3, 1991
Constraints on amino acid substitutions in the N-terminal helix of cytochrome c explored by random mutagenesisD S Auld, G J PielakProtein Engineering|June 1, 1991
The function of the Saccharomyces cerevisiae iso-1-cytochrome c gene is independent of the codon at invariant residue Phe82 when the gene is present on a low-copy-number vectorS E Hilgen, G J PielakProtein Science : a Publication of the Protein Society|May 30, 1998
Baseline length and automated fitting of denaturation dataD L Allen, G J PielakJournal of Molecular Biology|February 19, 1998
Native tertiary structure in an A-stateJ L Marmorino, M Lehti, G J PielakEuropean Journal of Biochemistry|October 1, 1991
Structural studies of yeast iso-1 cytochrome c mutants by resonance Raman spectroscopyP Hildebrandt, G J Pielak, R J WilliamsBiochemistry|February 23, 1999
The cytoplasmic region of mouse Fc gamma RIIb1, but not Fc gamma RIIb2, binds phospholipid membranesL Chen, G J Pielak, N L ThompsonAnalytical Biochemistry|August 1, 1986
Quantification of azo-coupled lysine in azo proteins by amino acid analysisG J Pielak, S Gurusiddaiah, J I LeggNature|January 10, 1985
Site-directed mutagenesis of cytochrome c shows that an invariant Phe is not essential for functionG J Pielak, A G Mauk, M SmithProtein Science : a Publication of the Protein Society|May 1, 1997
Design, synthesis, expression, and characterization of the genes for mouse Fc gamma RIIb1 and Fc gamma RIIb2 cytoplasmic regionsL Chen, N L Thompson, G J PielakPageof 1,024