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    Please use this identifier to cite or link to this item: http://asiair.asia.edu.tw/ir/handle/310904400/81259


    Title: Molecular level activation insights from a NR2A/NR2B agonist
    Authors: Weng IeongTou;Su-Sen Chang;Dongchuan Wu;Ted Weita Lai;Yu Tian Wang;Chung Y. Hsu;Calvin Yu-ChianChen
    Contributors: 生物與醫學資訊學系
    Date: 2014-04
    Issue Date: 2014-10-08 05:55:17 (UTC+0)
    Abstract: N-methyl D-aspartate receptors (NMDARs), a subclass of glutamate receptors have broad actions in neural transmission for major brain functions. Overactivation of NMDARs leading to "excitotoxicity" is the underlying mechanism of neuronal death in a number of neurological diseases, especially stroke. Much research effort has been directed toward developing pharmacological agents to modulate NMDAR actions for treating neurological diseases, in particular stroke. Here, we report that Alliin, a sulfoxide in fresh garlic, exhibits affinity toward NR2A as well as NR2B receptors based on virtual screening. Biological activities of Alliin on these two receptors were confirmed in electrophysiological studies. Ligand-binding site closure, a structural change precluding ion channel opening, was observed with Alliin during 100 ns molecular dynamics simulation. Alliin interactions with NR2A and NR2B suggest that residues E/A413, H485, T690, and Y730 may play important roles in the conformation shift. Activation of NR2A and NR2B by Alliin can be differentiated from that caused by glutamate, the endogenous neurotransmitter. These characteristic molecular features in NR2A and NR2B activation provide insight into structural requirements for future development of novel drugs with selective interaction with NR2A and NR2B for treating neurological diseases, particularly stroke.
    Relation: JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS;32(5):683-93.
    Appears in Collections:[生物資訊與醫學工程學系 ] 期刊論文

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