Studies on Structure-Function Relationship of ATP Receptor/channel using Molecular Biological Techniques
Studies on Structure-Function Relationship of ATP Receptor/channel using Molecular Biological Techniques
批准号:
09672269
负责人:
NAKAZAWA Kenichi
金额:
$1.92万
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1997
资助国家:
日本
项目状态:
已结题
起止时间:
1997 至 1999
中文摘要
ATP receptor/channel(P2X Receptor)was expressed in Xenopus oocytes using molecular biological techniques,and its structure-function relationship was investigated.In the first year,the effects of dopamine and 5-hydroxytryptamine(Serotonin),which are neurotransmitters in the brain,and divalent cations(Zn I D12+I D1 and Cd I D 12+ii D1)were compared among the four subclasses of ATP receptor/channel(P2X1-P2X2)。Based on the results from the comparison,P2X2 receptor was modified by site-directed mutagenesis,and the modifications by these substances were clarified。In addition,it was shown that trivalent cations including La I D13+I D1 are potent inhibitors of P2X receptors.In the second year,investigation was made on basic properties of ATP receptor/channel such as the sensitivity to ATP and the mechanisms underlying ion permeation。It was demonstrated that an aspartic acid residue at the position 315 contributes to the sensitivity to ATP,and that an asparagine residue at the…More position 333 is involved in the ion permeation mechanisms in P2X2 receptor。In the final year,examinations were made on the position presumably contributing the binding of ATP molecules and the effects of drugs on the channel pore using mutant receptor/channels.A region including highly conserved glycine residues exists in the extracellular segment of all the seven members of P2X receptors.When these glycine residues were replaced with an alanine or valine residue,the responsiveness to ATP was attenuated or abolished with the replacement of glycine residues at the positions 247 and 248.The results have raised the possibility that this region is indispensable for the binding of ATP molecules。As for the examination on the effects of 5-hydroxytryptamine and imipramine on the channel pore,the effects were different between the wild type P2X2 receptor and its pore mutants,suggesting that the channel pore is the target of these compounds。From these results,it has been demonstrated that this expression system with molecular biological techniques is highly useful for pharmacological research.Less:Less
英文摘要
ATP receptor/channel (P2X receptor) was expressed in Xenopus oocytes using molecular biological techniques, and its structure-function relationship was investigated. In the first year, the effects of dopamine and 5-hydroxytryptamine (serotonin), which are neurotransmitters in the brain, and divalent cations (ZnィイD12+ィエD1 and CdィイD12+ィエD1) were compared among the four subclasses of ATP receptor/channel (P2X1 - P2X2). Based on the results from the comparison, P2X2 receptor was modified by site-directed mutagenesis, and the modifications by these substances were clarified. In addition, it was shown that trivalent cations including LaィイD13+ィエD1 are potent inhibitors of P2X receptors. In the second year, investigation was made on basic properties of ATP receptor/channel such as the sensitivity to ATP and the mechanisms underlying ion permeation. It was demonstrated that an aspartic acid residue at the position 315 contributes to the sensitivity to ATP, and that an asparagine residue at the … More position 333 is involved in the ion permeation mechanisms in P2X2 receptor. In the final year, examinations were made on the position presumably contributing the binding of ATP molecules and the effects of drugs on the channel pore using mutant receptor/channels. A region including highly conserved glycine residues exists in the extracellular segment of all the seven members of P2X receptors. When these glycine residues were replaced with an alanine or valine residue, the responsiveness to ATP was attenuated or abolished with the replacement of glycine residues at the positions 247 and 248. The results have raised the possibility that this region is indispensable for the binding of ATP molecules. As for the examination on the effects of 5-hydroxytryptamine and imipramine on the channel pore, the effects were different between the wild type P2X2 receptor and its pore mutants, suggesting that the channel pore is the target of these compounds. From these results, it has been demonstrated that this expression system with molecular biological techniques is highly useful for pharmacological research. Less
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Nakzawa, K., Ohno, Y: "Effects of nuroamines and divalent cations on cloned and mutated ATP-gated channels"Eur. J. Pharmacol.. 325. 101-108 (1997)
Nakzawa, K., Ohno, Y:“氨基胺和二价阳离子对克隆和突变 ATP 门控通道的影响”Eur。
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Nakzawa, K., Ohno, Y: "5-Hydroxytryptamine inhibits P2X2 receptor channel pore mutants"Cell. Mol. Neurobiol.. 19. 665-669 (1999)
Nakzawa, K.、Ohno, Y:“5-羟色胺抑制 P2X2 受体通道孔突变体”细胞。
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Nakazawa K.,Ohno Y.: "Neighboring glycine residues are essential for P2X_2 receptor/channel function"Eur.J.Pharmacol.. 370. R5-R6 (1999)
Nakazawa K.,Ohno Y.:“邻近的甘氨酸残基对于 P2X_2 受体/通道功能至关重要”Eur.J.Pharmacol.. 370. R5-R6 (1999)
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Nakazawa K., Ohno, Y., Inoue, K: "An aspartic acid residue near the second transmembrane segment of ATP receptor/channel regulates agonist sensitivity"Biochem. Biophys. Rea. Commun.. 244. 599-603 (1998)
Nakazawa K.、Ohno, Y.、Inoue, K:“ATP 受体/通道第二跨膜片段附近的天冬氨酸残基调节激动剂敏感性”Biochem。
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通讯作者:
Nakazawa, K., Ohno, Y.,: "Neighboring glycine residues are essential for P2X2 receptor/channel function"Eur. J. Pharmacal.. 370. R5-R6 (1999)
Nakazawa, K., Ohno, Y.,:“邻近的甘氨酸残基对于 P2X2 受体/通道功能至关重要”Eur.
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共 27 条
Molecular Pharmacology of ATP Receptor using Atomic Force Microscopy
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批准号:15590089
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项目类别:Grant-in-Aid for Scientific Research (C)
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资助金额:$2.24万
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财政年份:2003
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负责人:NAKAZAWA Kenichi
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依托单位:
Studies on receptor structure-function relationship using molecular biological techniques and GFP molecular visualization
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批准号:13672319
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项目类别:Grant-in-Aid for Scientific Research (C)
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资助金额:$0.38万
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财政年份:2001
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负责人:NAKAZAWA Kenichi
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依托单位:
海外基金