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PMID: 17192006 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The proteolytic stability of 'designed' beta-peptides containing alpha-peptide-bond mimics and of mixed alpha,beta-peptides: application to the construction of MHC-binding peptides.

Chemistry & biodiversity ·Vol. 2 ·No. 5 ·2005-05-00 ·Pages 591-632

Hook DF, Bindschädler P, Mahajan YR, Sebesta R, Kast P, Seebach D

Abstract

Whereas alpha-peptides are rapidly degraded in vivo and in vitro by a multitude of peptidases, substrates constructed entirely of or incorporating homologated alpha-amino acid (i.e., beta-amino acid) units exhibit a superior stability profile. Efforts made so far to proteolytically hydrolyze a beta-beta peptide bond have not proved fruitful; a study aimed at breaching this proteolytic stability is discussed here. A series of such bonds have been designed with side-chain groups similar in relative positions (constitution) and three-dimensional arrangements (configuration) as found about alpha-peptidic amide bonds. Increasing the prospect for degradation would permit the tuning of beta-peptide stability; here, however, no cleavage was observed (1, 2, 4-6, Table 1). Peptides comprised of alpha- and beta-amino acids (mixed alpha,beta-peptides, 8-11) are expected to benefit from both recognition by a natural receptor and a high level of proteolytic stability, ideal characteristics of pharmacologically active compounds. Beta3-peptides containing alpha-amino acid moieties at the N-terminus are degraded, albeit slowly, by several peptidases. Of particular interest is the ability of pronase to cleave an alpha-beta peptide bond, namely that of alphaAla-beta3 hAla. Significantly, successful hydrolysis is independent of the configuration of the beta-amino acid. Some of the alpha,beta-peptides discussed here are being investigated for their binding affinities to class I MHC proteins. The computer-programming steps required to prepare alpha,beta-peptides on an automated peptide synthesizer are presented.

MeSH Terms
Major Histocompatibility Complex Molecular Mimicry Peptides/chemistry,metabolism Protein Binding Protein Conformation
Chemicals
Peptides
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Hook David F
Departement für Chemie und Angewandte Biowissenschaften, Laboratorium für Organische Chemie der Eidgenössischen Technischen Hochschule, ETH Hönggerberg, Wolfgang-Pauli-Strasse 10, CH-8093 Zürich.
Bindschädler Pascal
Mahajan Yogesh R
Sebesta Radovan
Kast Peter
Seebach Dieter
Article Info
Journal
Chemistry & biodiversity
Abbr.
Chem Biodivers
ISSN
1612-1880
Published
2005-05-00
Pages
591-632
Language
English
Region
Switzerland
NLM ID
101197449
Subset
IM
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