首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Selective association of N-methyl aspartate and quisqualate types of L-glutamate receptor with brain postsynaptic densities.
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Selective association of N-methyl aspartate and quisqualate types of L-glutamate receptor with brain postsynaptic densities.

机译:L-谷氨酸受体的N-甲基天门冬氨酸和半胱氨酸类型与脑突触后密度的选择性关联。

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摘要

Recognition sites for the excitatory neurotransmitter, L-glutamate, were studied in synaptic plasma membranes and postsynaptic densities (PSDs) isolated from rat brains. The results demonstrate (i) that L-glutamate binding sites may be resolved into three distinct subtypes (categories A1, A2, and A4), each corresponding to an electrophysiologically identified receptor class, and (ii) that the N-methyl aspartate (A1) and quisqualate (A2) receptor types are selectively associated with PSDs. L-[3H]Glutamate bound to an apparently homogeneous population of sites in PSDs with a Kd of 3.39 X 10(-7) M and a Bmax (maximum number of binding sites) of 6.1 pmol/mg of protein. Inhibition studies demonstrated that these sites could be resolved into two distinct subtypes. N-Methyl aspartate maximally inhibited 58% of PSD-located L-glutamate binding sites with a Ki of 7.2 X 10(-6) M (the A1 site), and quisqualate inhibited 42% with a Ki of 1.1 X 10(-6) M (the A2 site); the effects of both substances were additive. Experiments with a range of acidic amino acid analogues indicated that the ligand selectivities of these two binding sites conformed to those of the N-methyl D-aspartate and quisqualate receptor classes defined electrophysiologically. The Cl--dependent population of L-glutamate binding sites (the A4 site), which predominates in synaptic membranes, was absent from isolated PSDs.
机译:研究了从大鼠脑中分离出的突触质膜和突触后密度(PSDs)对兴奋性神经递质L-谷氨酸的识别位点。结果表明(i)L-谷氨酸结合位点可以分解为三种不同的亚型(A1,A2和A4类),每个亚型都对应于电生理学鉴定的受体类别,(ii)N-甲基天门冬氨酸(A1和quisqualate(A2)受体类型与PSD选择性相关。 L- [3H]谷氨酸盐结合到PSD中的表观同质位点上,其Kd为3.39 X 10(-7)M,Bmax(最大结合位点数)为6.1 pmol / mg蛋白质。抑制研究表明,这些位点可以分为两种不同的亚型。天门冬氨酸甲酯最大抑制58%的PSD定位的L-谷氨酸结合位点,Ki为7.2 X 10(-6)M(A1位点),而喹草酸抑制42%,Ki为1.1 X 10(-6) )M(A2站点);两种物质的作用都是累加的。用一系列酸性氨基酸类似物进行的实验表明,这两个结合位点的配体选择性与电生理学上定义的N-甲基D-天冬氨酸和准喹啉受体类别的配体选择性一致。分离的PSD中不存在以Cl为主的L-谷氨酸结合位点(A4位点)。

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