1998
DOI: 10.1111/j.1399-3011.1998.tb01253.x
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Solid‐phase synthesis, conformational analysis, and biological activity of AVRp elicitor peptides of the fungal tomato pathogen Cladosporium falvum

Abstract: The race‐specific peptide elicitor AVR9 of the fungal pathogen Cladosporium fulvum specifically induces a hypersensitive response in tomato genotypes carrying the complementary resistance gene Cf‐9. The total chemical syntheses of this 28‐residue AVR9 peptide containing three disulfide bonds, and of three mutant peptides [R8K]AVR9, [F10A]AVR9 and [F21A]AVR9, have been accomplished. The syntheses were carried out using a stepwise solid‐phase approach based on tBoc chemistry. The disulfide bridges were formed by… Show more

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Cited by 14 publications
(1 citation statement)
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References 38 publications
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“…Peptide synthesis was performed manually using tBOC chemistry [79][80][81][82][83] (Synthetic Proteomics, Carlsbad, CA) or in an automated instrument using FMOC chemistry [81][82][83][84] (Peptide Core Facility in the School of Medicine of the University of North Carolina at Chapel Hill, Chapel Hill, North Carolina). Selection of synthetic method to synthesize the peptides was based on the techniques used by the specific facility.…”
Section: Peptide Synthesismentioning
confidence: 99%
“…Peptide synthesis was performed manually using tBOC chemistry [79][80][81][82][83] (Synthetic Proteomics, Carlsbad, CA) or in an automated instrument using FMOC chemistry [81][82][83][84] (Peptide Core Facility in the School of Medicine of the University of North Carolina at Chapel Hill, Chapel Hill, North Carolina). Selection of synthetic method to synthesize the peptides was based on the techniques used by the specific facility.…”
Section: Peptide Synthesismentioning
confidence: 99%