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題名 Effects of sarcosine and N, N-dimethylglycine on NMDA receptor-mediated excitatory field potentials
作者 Chan, Ming-Huan
詹銘煥
Chen, Hwei-Hsien
Tseng, Yufeng Jane
Lee, Mei-Yi
Lin, Yi-Ruu
Tu, Yi-Shu
貢獻者 神經科學研究所 ; 心智、大腦與學習研究中心
關鍵詞 dimethylglycine; n methyl dextro aspartic acid receptor; sarcosine; agonists; analogs and derivatives; animal; drug effects; Institute for Cancer Research mouse; male; membrane potential; metabolism; mouse; Animals; Male; Membrane Potentials; Mice; Mice, Inbred ICR; Receptors, N-Methyl-D-Aspartate; Sarcosine
日期 2017
上傳時間 27-Jul-2017 12:50:57 (UTC+8)
摘要 Background: Sarcosine, a glycine transporter type 1 inhibitor and an N-methyl-D-aspartate (NMDA) receptor co-agonist at the glycine binding site, potentiates NMDA receptor function. Structurally similar to sarcosine, N,N-dimethylglycine (DMG) is also N-methyl glycine-derivative amino acid and commonly used as a dietary supplement. The present study compared the effects of sarcosine and DMG on NMDA receptor-mediated excitatory field potentials (EFPs) in mouse medial prefrontal cortex brain slices using a multi-electrode array system. Results: Glycine, sarcosine and DMG alone did not alter the NMDA receptor-mediated EFPs, but in combination with glutamate, glycine and its N-methyl derivatives significantly increased the frequency and amplitude of EFPs. The enhancing effects of glycine analogs in combination with glutamate on EFPs were remarkably reduced by the glycine binding site antagonist 7-chlorokynurenate (7-CK). However, DMG, but not sarcosine, reduced the frequency and amplitude of EFPs elicited by co-application of glutamate plus glycine. D-cycloserine, a partial agonist at the glycine binding site on NMDA receptors, affected EFPs in a similar manner to DMG. Furthermore, DMG, but not sarcosine, reduced the frequencies and amplitudes of EFPs elicited by glutamate plus D-serine, another endogenous ligand for glycine binding site. Conclusions: These findings suggest that sarcosine acts as a full agonist, yet DMG is a partial agonist at glycine binding site of NMDA receptors. The molecular docking analysis indicated that the interactions of glycine, sarcosine, and DMG to NMDA receptors are highly similar, supporting that the glycine binding site of NMDA receptors is a critical target site for sarcosine and DMG. © 2017 The Author(s).
關聯 Journal of Biomedical Science, 24(1), 論文編號 18
資料類型 article
DOI http://dx.doi.org/10.1186/s12929-016-0314-8
dc.contributor 神經科學研究所 ; 心智、大腦與學習研究中心-
dc.creator (作者) Chan, Ming-Huanen-US
dc.creator (作者) 詹銘煥zh-tw
dc.creator (作者) Chen, Hwei-Hsienen-US
dc.creator (作者) Tseng, Yufeng Janeen-US
dc.creator (作者) Lee, Mei-Yien-US
dc.creator (作者) Lin, Yi-Ruuen-US
dc.creator (作者) Tu, Yi-Shuen-US
dc.date (日期) 2017-
dc.date.accessioned 27-Jul-2017 12:50:57 (UTC+8)-
dc.date.available 27-Jul-2017 12:50:57 (UTC+8)-
dc.date.issued (上傳時間) 27-Jul-2017 12:50:57 (UTC+8)-
dc.identifier.uri (URI) http://nccur.lib.nccu.edu.tw/handle/140.119/111423-
dc.description.abstract (摘要) Background: Sarcosine, a glycine transporter type 1 inhibitor and an N-methyl-D-aspartate (NMDA) receptor co-agonist at the glycine binding site, potentiates NMDA receptor function. Structurally similar to sarcosine, N,N-dimethylglycine (DMG) is also N-methyl glycine-derivative amino acid and commonly used as a dietary supplement. The present study compared the effects of sarcosine and DMG on NMDA receptor-mediated excitatory field potentials (EFPs) in mouse medial prefrontal cortex brain slices using a multi-electrode array system. Results: Glycine, sarcosine and DMG alone did not alter the NMDA receptor-mediated EFPs, but in combination with glutamate, glycine and its N-methyl derivatives significantly increased the frequency and amplitude of EFPs. The enhancing effects of glycine analogs in combination with glutamate on EFPs were remarkably reduced by the glycine binding site antagonist 7-chlorokynurenate (7-CK). However, DMG, but not sarcosine, reduced the frequency and amplitude of EFPs elicited by co-application of glutamate plus glycine. D-cycloserine, a partial agonist at the glycine binding site on NMDA receptors, affected EFPs in a similar manner to DMG. Furthermore, DMG, but not sarcosine, reduced the frequencies and amplitudes of EFPs elicited by glutamate plus D-serine, another endogenous ligand for glycine binding site. Conclusions: These findings suggest that sarcosine acts as a full agonist, yet DMG is a partial agonist at glycine binding site of NMDA receptors. The molecular docking analysis indicated that the interactions of glycine, sarcosine, and DMG to NMDA receptors are highly similar, supporting that the glycine binding site of NMDA receptors is a critical target site for sarcosine and DMG. © 2017 The Author(s).-
dc.format.extent 1981042 bytes-
dc.format.mimetype application/pdf-
dc.relation (關聯) Journal of Biomedical Science, 24(1), 論文編號 18-
dc.subject (關鍵詞) dimethylglycine; n methyl dextro aspartic acid receptor; sarcosine; agonists; analogs and derivatives; animal; drug effects; Institute for Cancer Research mouse; male; membrane potential; metabolism; mouse; Animals; Male; Membrane Potentials; Mice; Mice, Inbred ICR; Receptors, N-Methyl-D-Aspartate; Sarcosine-
dc.title (題名) Effects of sarcosine and N, N-dimethylglycine on NMDA receptor-mediated excitatory field potentialsen-US
dc.type (資料類型) article-
dc.identifier.doi (DOI) 10.1186/s12929-016-0314-8-
dc.doi.uri (DOI) http://dx.doi.org/10.1186/s12929-016-0314-8-