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Title: | Acyclic αγα-Tripeptides with Fluorinated- and Nonfluorinated-Furanoid Sugar Framework: Importance of Fluoro Substituent in Reverse-Turn Induced Self-Assembly and Transmembrane Ion-Transport Activity |
Authors: | Burade, Sachin S. Shinde, Sopan Valiba Bhuma, Naresh Kotmale, Amol Rajamohanan, Pattuparambil R. Gonnade, Rajesh G. TALUKDAR, PINAKI Dhavale, Dilip D. Kumbhar, Navanath Dept. of Chemistry |
Keywords: | Tripeptides Transmembrane Ion-Transport Activity DFT studies Glucofuranose 2017 |
Issue Date: | Jun-2017 |
Publisher: | American Chemical Society |
Citation: | Journal of Organic Chemistry, 82 (11), 5826-5834. |
Abstract: | Acyclic αγα-tripeptides derived from fluorinated-furanoid sugar amino acid frameworks act as reverse-turn inducers with a U-shaped conformation, whereas the corresponding nonfluorinated αγα-tripeptides show random peptide conformations. The NMR studies showed the presence of bifurcated weak intramolecular hydrogen bonding (F···HN) and N+···Fδ- charge-dipole attraction compel the amide carbonyl groups to orient antiperiplanar to the C–F bond, thus, demonstrating the role of the fluorine substituent in stabilizing the U-shaped conformation. The NOESY data indicate that the U-shaped tripeptides self-assembly formation is stabilized by the intermolecular hydrogen bonding between C═O···HN with antiparallel orientation. This fact is supported by ESI-MS data, which showed mass peaks up to the pentameric self-assembly, even in the gas phase. The morphological analysis by FE-SEM, on solid samples, showed arrangement of fibers into nanorods. The antiparallel self-assembled pore of the fluorinated tripeptides illustrates the selective ion-transport activity. The experimental findings were supported by DFT studies. |
URI: | http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/3301 https://doi.org/10.1021/acs.joc.7b00661 |
ISSN: | 0022-3263 1520-6904 |
Appears in Collections: | JOURNAL ARTICLES |
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