Biantennary oligoglycines and glyco-oligoglycines self-associating in aqueous medium
- Beilstein J Org Chem. 2014 Jun 17;10:1372-82. doi: 10.3762/bjoc.10.140.
- 1. Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, ul. Miklukho-Maklaya 16/10 Moscow V-437, 117997, Russia.
- 2. Department of Physics, Humboldt University Berlin, Newtonstr. 15, D-12489, Berlin, Germany.
- 3. Plasmachem GmbH, Rudower Chaussee 29, D-12489 Berlin, Germany.
- 4. M. P. Chumakov Institute of Poliomyelitis and Viral Encephalitides, 142782 Moscow Region, Russia.
Oligoglycines designed in a star-like fashion, so-called tri- and tetraantennary molecules, were found to form highly ordered supramers in aqueous medium. The formation of these supramers occurred either spontaneously or due to the assistance of a mica surface. The driving force of the supramer formation is hydrogen bonding, the polypeptide chain conformation is related to the folding of helical polyglycine II (PG II). Tri- and tetraantennary molecules are capable of association if the antenna length reach 7 glycine (Gly) residues. Properties of similar biantennary molecules have not been investigated yet, and we compared their self-aggregating potency with similar tri- and tetraantennary analogs. Here, we synthesized oligoglycines of the general formula R-Gly n -Х-Gly n -R (X = -HN-(СН2) m -NH-, m = 2, 4, 10; n = 1-7) without pendant ligands (R = H) and with two pendant sialoligands (R = sialic acid or sialooligosaccharide). Biantennary oligoglycines formed PG II aggregates, their properties, however, differ from those of the corresponding tri- and tetraantennary oligoglycines. In particular, the tendency to aggregate starts from Gly4 motifs instead of Gly7. The Antiviral activity of end-glycosylated peptides was studied, and all capable of assembling glycopeptides demonstrated an Antiviral potency which was up to 50 times higher than the activity of peptide-free glycans.
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Cat. No.Product NameDescriptionTargetResearch Area
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target: ADC LinkersResearch Areas: Others