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Daelemans, D. Schols, M. Witvrouw, C. Pannecouque, S. Hatse, S.V. Dooren, F. Hamy, T. Klimkait, E. Clercq and A.M. Vandamme, “A second target for the peptoid Tat/transactivation response element inhibitor CGP64222: Inhibition of human immunodeficiency virus replication by blocking CXC-chemokine receptor 4-mediated virus entry”, Molecular Pharmacology, Vol. 57, No. 1, 2000, pp. 116-124.
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TITLE:
Peptoids with aliphatic sidechains as helical structures without hydrogen bonds and collagen/ inverse-collagen type structures
AUTHORS:
Fateh S. Nandel, Avneet Saini
KEYWORDS:
Peptoids; Conformation; Helical Structure without Hydrogen Bonds; Collagen and Inverse-Collagen Type Structures
JOURNAL NAME:
Journal of Biophysical Chemistry,
Vol.2 No.1,
February
22,
2011
ABSTRACT: Aliphatic homo-polypeptoids of NAla, NVal, NIle and NLeu both in the presence and absence of protecting groups adopt helical structures without hydrogen bonds with Φ, Ψ values of ~ 0, ± 90° with trans amide bonds. These structures are stabilized by carbonyl-carbonyl interactions and characterized by ~ 3.16 residues per turn with a pitch of ~ 6.13 Å. It has been shown that like polyvaline and polyleucine peptides, poly-peptoids can also be exploited for the construction of potential surfactant like molecules by incorporating charged amino acid residues at the N terminal. A single-handed template with Φ, Ψ values of ~ 0, 90° can be attained by incorporating L-leu or L-val at the C-terminal of poly-NIle. Analysis of the simulation results in water as a function of time reveals that the opening of helical structures without hydrogen bonds takes place at sub-picosecond time scale starting from the N-terminal. This leads to the formation of collagen or inverse-collagen type structures (Φ, Ψ ~ -60, 145° and 60, -145° respectively) stabilized by interactions of water molecules with the backbone carbonyl groups.