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多巴胺D3受体与其自身及截短的D3剪接变体d3nf相互作用:D3-D3nf相互作用导致D3受体定位错误。

The dopamine D3 receptor interacts with itself and the truncated D3 splice variant d3nf: D3-D3nf interaction causes mislocalization of D3 receptors.

作者信息

Karpa K D, Lin R, Kabbani N, Levenson R

机构信息

Department of Pharmacology, Penn State College of Medicine, Milton S. Hershey Medical Center, Hershey, Pennsylvania 17033, USA.

出版信息

Mol Pharmacol. 2000 Oct;58(4):677-83. doi: 10.1124/mol.58.4.677.

Abstract

We have generated a stable cell line expressing FLAG epitope-tagged D3 dopamine receptors and used this cell line to study D3 receptor-protein interactions. To analyze protein interactions, we separately introduced into the stable cell line either D3 receptors carrying an hemagglutinin (HA) epitope tag, or an HA-tagged version of the D3 receptor splice variant D3nf. A combination of confocal laser microscopy and coimmunoprecipitation was used to assay the formation and expression pattern of D3-D3 homodimers or D3-D3nf heterodimers. When coexpressed in HEK 293 cells, FLAG- and HA-tagged D3 receptors exhibited a similar plasma membrane distribution. Using an HA epitope tag-specific antibody, we coimmunoprecipitated HA- and FLAG-tagged D3 receptors, suggesting that D3 receptors are capable of forming homodimers. Epitope-tagged D3nf polypeptides exhibited a markedly different cellular distribution than D3 receptors. When expressed in HEK 293 cells, either alone or in combination with FLAG-tagged D3 receptors, D3nf exhibited a punctate perinuclear distribution. When D3nf was introduced into the stable D3-expressing cell line, D3 receptors were no longer visualized at the plasma membrane. Instead, D3 and D3nf showed a similar, predominantly cytosolic, localization. Using the HA-specific antibody, we were able to coimmunoprecipitate D3 and D3nf polypeptides from transfected cells. These data suggest the existence of physical interaction between D3 and D3nf. This interaction appears to result in the mislocalization of D3 receptors from the plasma membrane to an intracellular compartment, a finding that could be of significance in the etiology of schizophrenia.

摘要

我们构建了一个稳定表达带有FLAG表位标签的D3多巴胺受体的细胞系,并利用该细胞系研究D3受体与蛋白质的相互作用。为了分析蛋白质相互作用,我们分别将携带血凝素(HA)表位标签的D3受体或D3受体剪接变体D3nf的HA标签版本导入稳定细胞系。结合共聚焦激光显微镜和免疫共沉淀技术来检测D3-D3同二聚体或D3-D3nf异二聚体的形成及表达模式。当在HEK 293细胞中共表达时,带有FLAG和HA标签的D3受体表现出相似的质膜分布。使用HA表位标签特异性抗体,我们共免疫沉淀了带有HA和FLAG标签的D3受体,表明D3受体能够形成同二聚体。带有表位标签的D3nf多肽与D3受体表现出明显不同的细胞分布。当在HEK 293细胞中单独表达或与带有FLAG标签的D3受体共表达时,D3nf呈现出核周点状分布。当将D3nf导入稳定表达D3的细胞系时,质膜上不再能看到D3受体。相反,D3和D3nf表现出相似的、主要位于胞质的定位。使用HA特异性抗体,我们能够从转染细胞中共免疫沉淀D3和D3nf多肽。这些数据表明D3和D3nf之间存在物理相互作用。这种相互作用似乎导致D3受体从质膜错误定位到细胞内区室,这一发现可能在精神分裂症的病因学中具有重要意义。

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