4.6 Article

Synthesis of Tetrapeptides Containing Dehydroalanine, Dehydrophenylalanine and Oxazole as Building Blocks for Construction of Foldamers and Bioinspired Catalysts

Journal

MOLECULES
Volume 27, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27092611

Keywords

tetrapeptides; dehydroalanine; dehydrophenylalanine; aminomethyloxazole-4-carboxylic acid; foldamers; artzymes

Funding

  1. National Science Center (Poland) [2016/21/B/ST5/00115]

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This paper describes an effective synthetic method for obtaining peptide building blocks containing dehydroamino acids or fragments of oxazole. These building blocks can be used to synthesize novel foldamers and artificial enzymes.
The incorporation of dehydroamino acid or fragments of oxazole into peptide chain is accompanied by a distorted three-dimensional structure and additionally enables the introduction of non-typical side-chain substituents. Thus, such compounds could be building blocks for obtaining novel foldamers and/or artificial enzymes (artzymes). In this paper, effective synthetic procedures leading to such building blocks-tetrapeptides containing glycyldehydroalanine, glycyldehydrophenylalanine, and glycyloxazole subunits-are described. Peptides containing serine were used as substrates for their conversion into peptides containing dehydroalanine and aminomethyloxazole-4-carboxylic acid while considering possible requirements for the introduction of these fragments into long-chain peptides at the last steps of synthesis.

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