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G Fridkin

Publications and source records attributed to G Fridkin.

2 recordsLinked to original sources

Azo cyclization: peptide cyclization via azo bridge formation.

A novel method for peptide cyclization in solution: the azo cyclization is presented herein. Ring closure by forming an azo bridge was achieved in situ by connecting the corresponding side chains of para amino phenylalanine (Pap) residues to those of tyrosine or histidine residues present in the corresponding linear precursors. The reaction was performed using an initial diazotization step in acidic media followed by intramolecular azo cyclization in a mild basic media. This new method of cyclization is facile, applicable to various sequences and results in a high yield of pure products and hence is suggested as an additional method for peptide cyclization. Here we report the successful utilization of this method for the synthesis of 10 new cyclic azo peptides, derived from RGD, GnRH, Tuftsin, VIP and SV40 NLS.

Amino Acid Sequence↗

Systematic solid-phase synthesis of linear pseudooligolysines containing multiple adjacent CH(2)NH amide bond surrogates: potential agents for gene delivery.

Solid-phase methodology was used to synthesize a series of fully reduced linear oligolysines (pseudooligolysines, abbreviated herein as PLs) containing up to five adjacent CH2NH peptide bond isosteres. The reduced peptide bonds were introduced by the reductive alkylation reaction between Fmoc-Lys-(Boc)-al and a free alpha-amine moiety on the pseudopeptidyl resin, using sodium cyanoborohydride in an acidified mixture of NMP/CH3OH (1 : 1 v/v). The oligomeric molecules, which can be regarded as polyethylene imine and spermine analogs, possess multiple positive charges under physiological conditions and form tight complexes with plasmid DNA. These characteristics and the increased resistance to hydrolysis by trypsin make these molecules potential candidates for future use as DNA carriers in gene delivery.

Amides↗