Biopolymers · 2015 · 18 citations · 61 references
Peptidomimetics represent an attractive starting point for drug discovery programs; in particular, peptidomimetics that result from the incorporation of a heterocycle may take advantage of increased enzymatic stability and higher ability to reproduce the bioactive conformations of the parent peptides, resulting in enhanced therapeutic potential. Herein, we present mimetics of the α4β1 integrin antagonist BIO1211 (MPUPA-Leu-Asp-Val-Pro-OH), containing a aminomethyloxazolidine-2,4-dione scaffold (Amo). Interestingly, the retro-sequences PhCOAsp(OH)-Amo-APUMP including either (S)- or (R)-configured Amo displayed significant ability to inhibit the adhesion of α4β1 integrin expressing cells, and remarkable stability in mouse serum. Possibly, the conformational bias exerted by the Amo scaffold determined the affinity for the receptors. These peptidomimetics could be of interest for the development of small-molecule agents effective against inflammatory processes and correlated autoimmune diseases.
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Samuel H. Gellman · Accounts of Chemical Research · 1998 · 2.5K citations
Engineering, Chemical Analysis, Altmetric Attention Score +17
Activation of Apoptosis in Vivo by a Hydrocarbon-Stapled BH3 Helix
Loren D. Walensky, Andrew L. Kung, Iris Escher et al. · Science · 2004 · 1.3K citations · Full text
Hydrocarbon-stapled Bh3 Helix, Protein Function, Hydrocarbon Stapling +12
Ronald N. Zuckermann, Janice M. Kerr, Stephen B. H. Kent et al. · Journal of the American Chemical Society · 1992 · 1.2K citations
Combinatorial Chemistry, Bioorganic Chemistry, Efficient Method +18