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维纳斯捕蝇草结构域的 mGluR1 作为一种显性负性突变体发挥作用,拮抗 I 组代谢型谷氨酸受体信号。

Venus fly trap domain of mGluR1 functions as a dominant negative against group I mGluR signaling.

机构信息

Department of Pharmacology and Physiology, University of Rochester Medical Center, Rochester, New York 14642, USA.

出版信息

J Neurophysiol. 2010 Jul;104(1):439-48. doi: 10.1152/jn.00799.2009. Epub 2010 May 12.

DOI:10.1152/jn.00799.2009
PMID:20463192
Abstract

Metabotropic glutamate receptors (mGluRs) form covalently linked homodimers and contain large, N-terminal extracellular ligand binding, "venus fly trap" (VFT) domains. These domains, when expressed separately, are secreted as disulfide linked dimers and can dimerize with full-length receptors. mGluR splice variants have been described that contain only this domain, but the consequences of their interaction on receptor signaling have not been explored. Here it is shown that an mGluR1 mutant containing only the VFT is retained on the cell surface when a full-length receptor is co-expressed. Further, when expressed in rat superior cervical ganglion (SCG) neurons and modulation of native calcium currents is used as an assay for receptor activity, the VFT acts as a dominant negative with respect to mGluR1 signaling. Although full-length mGluR1 and mGluR5 are not known to heterodimerize, the mGluR5 VFT partially occludes mGluR1 signaling and the mGluR1 VFT potently occludes mGluR5 signaling in SCG neurons. In addition, an mGluR1 point mutant, mGluR1 C140G, which cannot covalently dimerize, functions like the wild-type receptor when expressed alone. The C140G mutant is inhibited by the mGluR1 VFT construct but does not retain the mGluR1 VFT on the cell surface, suggesting that the loss of C140 renders the interaction reversible. Finally, a peptide designed to disrupt mGluR1 dimerization reduced signaling through the C140G mutant receptor, but only when applied intracellularly for several hours, indicating that loss of signaling requires disruption of dimerization prior to plasma membrane insertion.

摘要

代谢型谷氨酸受体 (mGluRs) 形成共价连接的同源二聚体,并包含大型、N 端细胞外配体结合的“维纳斯捕蝇草”(VFT) 结构域。当这些结构域单独表达时,会以二硫键连接的二聚体形式分泌,并可与全长受体二聚化。已经描述了含有该结构域的 mGluR 剪接变体,但它们与受体信号转导的相互作用的后果尚未得到探索。本文显示,当共表达全长受体时,仅包含 VFT 的 mGluR1 突变体保留在细胞表面。此外,当在大鼠颈上交感神经节 (SCG) 神经元中表达并将调节内源性钙电流用作受体活性的测定时,VFT 对 mGluR1 信号转导表现为显性负性。尽管全长 mGluR1 和 mGluR5 不被认为异二聚化,但 mGluR5 VFT 部分阻断 mGluR1 信号转导,mGluR1 VFT 强烈阻断 SCG 神经元中的 mGluR5 信号转导。此外,一种不能共价二聚化的 mGluR1 点突变体 mGluR1 C140G,当单独表达时,其功能类似于野生型受体。C140G 突变体被 mGluR1 VFT 构建体抑制,但不会在细胞表面保留 mGluR1 VFT,这表明 C140 的缺失使相互作用具有可逆性。最后,设计用于破坏 mGluR1 二聚化的肽降低了通过 C140G 突变体受体的信号转导,但仅在数小时内应用于细胞内时才会发生,这表明信号丢失需要在质膜插入之前破坏二聚化。

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