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δ2谷氨酸受体与AMPA或海人酸受体的异聚体形成。

Heteromer formation of delta2 glutamate receptors with AMPA or kainate receptors.

作者信息

Kohda Kazuhisa, Kamiya Yoshinori, Matsuda Shinji, Kato Kunio, Umemori Hisashi, Yuzaki Michisuke

机构信息

Department of Developmental Neurobiology, St. Jude Children's Research Hospital, 332 North Lauderdale, Memphis, TN 38105, USA.

出版信息

Brain Res Mol Brain Res. 2003 Jan 31;110(1):27-37. doi: 10.1016/s0169-328x(02)00561-2.

Abstract

The delta2 glutamate receptor (GluRdelta2) is predominantly expressed in the postsynaptic densities of parallel fiber-Purkinje cell synapses and plays a crucial role in cerebellar function. However, the mechanisms by which GluRdelta2 participates in cerebellar functions are largely unknown because GluRdelta2 does not bind glutamate analogs. We investigated the possibility that GluRdelta2 may be involved in channel formation together with other glutamate receptor families. We transiently expressed lurcher mutant AMPA receptor GluR1(Lc) and kainate receptor GluR6(Lc) in HEK293 cells. Cells expressing these constitutively active channels displayed a rectifying current-voltage (I-V) relationship. However, when cells were co-transfected with GluRdelta2(Lc), which had the arginine residue in the channel pore region, cells displayed a linear I-V relationship, a result that indicates GluRdelta2(Lc) formed functional heteromeric channels with GluR1(Lc) or GluR6(Lc). Assembly of GluRdelta2 with GluR1 or GluR6 was further confirmed by co-immunoprecipitation assays in HEK293 cells. In addition, GluRdelta2 receptors were partially co-immunoprecipitated from cerebellar synaptosomal fractions by antibodies against GluR2 or KA2. In contrast to lurcher channels, expression of wild-type GluRdelta2 significantly reduced the glutamate-induced current of the wild-type GluR1 receptors without affecting channel properties, such as current kinetics, dose-response relationship, and single-channel conductance. Thus, the heteromeric channel created by the association of wild-type GluR1 and GluRdelta2 may not be gated by glutamate and does not participate in glutamate-induced currents. These results suggest that GluRdelta2 and AMPA or kainate receptors can assemble to form heteromeric receptors in vitro and could modify glutamate signaling in vivo. These findings may help explain the role of GluRdelta2.

摘要

δ2型谷氨酸受体(GluRδ2)主要表达于平行纤维-浦肯野细胞突触的突触后致密部,在小脑功能中起关键作用。然而,由于GluRδ2不与谷氨酸类似物结合,其参与小脑功能的机制在很大程度上尚不清楚。我们研究了GluRδ2可能与其他谷氨酸受体家族共同参与通道形成的可能性。我们在HEK293细胞中瞬时表达了蹒跚突变型AMPA受体GluR1(Lc)和海人藻酸受体GluR6(Lc)。表达这些组成型活性通道的细胞呈现出整流电流-电压(I-V)关系。然而,当细胞与通道孔区域含有精氨酸残基的GluRδ2(Lc)共转染时,细胞呈现出线性I-V关系,这一结果表明GluRδ2(Lc)与GluR1(Lc)或GluR6(Lc)形成了功能性异源通道。在HEK293细胞中进行的共免疫沉淀试验进一步证实了GluRδ2与GluR1或GluR6的组装。此外,针对GluR2或KA2的抗体从小脑突触体组分中部分共免疫沉淀出了GluRδ2受体。与蹒跚通道不同,野生型GluRδ2的表达显著降低了野生型GluR1受体的谷氨酸诱导电流,而不影响通道特性,如电流动力学、剂量反应关系和单通道电导。因此,由野生型GluR1和GluRδ2结合形成的异源通道可能不受谷氨酸门控,不参与谷氨酸诱导电流。这些结果表明,GluRδ2与AMPA或海人藻酸受体可以在体外组装形成异源受体,并可能在体内改变谷氨酸信号传导。这些发现可能有助于解释GluRδ2的作用。

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