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Peptide modulators of alpha‐glucosidase
Author(s) -
Roskar Irena,
Molek Peter,
Vodnik Miha,
Stempelj Mateja,
Strukelj Borut,
Lunder Mojca
Publication year - 2015
Publication title -
journal of diabetes investigation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.089
H-Index - 50
eISSN - 2040-1124
pISSN - 2040-1116
DOI - 10.1111/jdi.12358
Subject(s) - acarbose , peptide , peptidomimetic , enzyme , biochemistry , phage display , cyclic peptide , alpha (finance) , peptide library , alpha glucosidase , medicine , chemistry , peptide sequence , construct validity , nursing , gene , patient satisfaction
Aims/Introduction Acute glucose fluctuations during the postprandial period pose great risk for cardiovascular complications and thus represent an important therapeutic approach in type 2 diabetes. In the present study, screening of peptide libraries was used to select peptides with an affinity towards mammalian intestinal alpha‐glucosidase as potential leads in antidiabetic agent development. Materials and Methods Three phage‐displayed peptide libraries were used in independent selections with different elution strategies to isolate target‐binding peptides. Selected peptides displayed on phage were tested to compete for an enzyme‐binding site with known competitive inhibitors, acarbose and voglibose. The four best performing peptides were synthesized. Their binding to the mammalian alpha‐glucosidase and their effect on enzyme activity were evaluated. Results Two linear and two cyclic heptapeptides with high affinity towards intestinal alpha‐glucosidase were selected. Phage‐displayed as well as synthetic peptides bind into or to the vicinity of the active site on the enzyme. Both cyclic peptides inhibited enzyme activity, whereas both linear peptides increased enzyme activity. Conclusions Although natural substrates of glycosidase are polysaccharides, in the present study we successfully isolated novel peptide modulators of alpha‐glucosidase. Modulatory activity of selected peptides could be further optimized through peptidomimetic design. They represent promising leads for development of efficient alpha‐glucosidase inhibitors.

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