Insights into the Mechanism and Catalysis of Peptide Thioester Synthesis by Alkylselenols Provide a New Tool for Chemical Protein Synthesis

11 February 2021, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

While thiol-based catalysts are widely employed for chemical protein synthesis relying on peptide thioester chemistry, this is less true for selenol-based catalysts whose development is in its infancy. In this study, we compared different selenols derived from the selenocysteamine scaffold for their capacity to promote thiol-thioester exchanges in water at mildly acidic pH and the production of peptide thioesters from bis(2-sulfanylethyl)amido (SEA) peptides. The usefulness of a selected selenol compound is illustrated by the total synthesis of a biologically active human chemotactic protein, which plays an important role in innate and adaptive immunity

Keywords

Chemical Protein Synthesis
selenol
Catalysis
Native Chemical Ligation
bis(2-sulfanylethyl)amido
selenocholine
selenocysteamine analogues
Chemotaxis assay
granulysin
Kinetic analysis
NCL chemistry
Selenoester
thiol-thioester exchange
acetoacetyl chemistry
Protein folding
disulfide bridges
SEA chemistry
One-Pot
cysteinyl peptides
peptide thioesters
Chemoselective

Supplementary materials

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