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Synthesis and enzyme inhibitory activities of novel peptide isosteres SCIE SCOPUS

Title
Synthesis and enzyme inhibitory activities of novel peptide isosteres
Authors
Venkatesan, NKim, BH
Date Issued
2002-12
Publisher
BENTHAM SCIENCE PUBL LTD
Abstract
Design and synthesis of metabolically stable peptide analogs that can either mimic or block the bioactivity of natural peptides or enzymes is an important constituent of bioorganic and medicinal chemistry research. Isosteric replacement of a scissile peptide bond represents a viable and popular approach in the rational design of peptidomimetics. Peptidomimetics find applications as drugs, in protein engineering and so on. This is evident from the wealth of therapeutically useful peptidomimetic leads incorporating any of the peptide isosteres that are currently available. In this review, we have given a brief account of the types of peptide isosteres widely known till date. With this background, we have described some of the recent developments in synthetic approaches. This includes methods involving a common intermediate to synthesize different possible isosteres and their peptide analogs, solid phase synthesis and combinatorial approach. One such method involving stereoselective nitrile oxide cycloaddition as the key step has been studied extensively in our research laboratory. Finally, we have also discussed about some of the recent reports on the design and inhibitory activities of peptidic or non-peptidic analogs against aspartic proteases (HIV-1, renin, ACE and pepsin) and peptide analogs of an immunomodulating hexapeptide.
Keywords
peptide isosteres; peptidomimetics; enzyme inhibitors; pseudopeptides; HIV PROTEASE INHIBITORS; HUMAN-IMMUNODEFICIENCY-VIRUS; SOLID-PHASE SYNTHESIS; HYDROXYETHYLENE DIPEPTIDE ISOSTERES; TRANSITION-STATE ANALOG; STRUCTURE-BASED DESIGN; ANGIOTENSIN-CONVERTING ENZYME; SECONDARY STRUCTURE MIMETICS; NONPEPTIDE RENIN INHIBITORS; GRB2-SH2 DOMAIN INHIBITORS
URI
https://oasis.postech.ac.kr/handle/2014.oak/18818
DOI
10.2174/0929867023368692
ISSN
0929-8673
Article Type
Article
Citation
CURRENT MEDICINAL CHEMISTRY, vol. 9, no. 24, page. 2243 - 2270, 2002-12
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김병현KIM, BYEANG HYEAN
Div of Advanced Materials Science
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