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代谢型谷氨酸受体7与α微管蛋白之间的相互作用。

Interaction between metabotropic glutamate receptor 7 and alpha tubulin.

作者信息

Saugstad Julie A, Yang Sufang, Pohl Jan, Hall Randy A, Conn P Jeffrey

机构信息

Robert S. Dow Neurobiology Laboratories, Legacy Research, Portland, Oregon, USA.

出版信息

J Neurochem. 2002 Mar;80(6):980-8. doi: 10.1046/j.0022-3042.2002.00778.x.

Abstract

Metabotropic glutamate receptors (mGluRs) mediate a variety of responses to glutamate in the central nervous system. A primary role for group-III mGluRs is to inhibit neurotransmitter release from presynaptic terminals, but the molecular mechanisms that regulate presynaptic trafficking and activity of group-III mGluRs are not well understood. Here, we describe the interaction of mGluR7, a group-III mGluR and presynaptic autoreceptor, with the cytoskeletal protein, alpha tubulin. The mGluR7 carboxy terminal (CT) region was expressed as a GST fusion protein and incubated with rat brain extract to purify potential mGluR7-interacting proteins. These studies yielded a single prominent mGluR7 CT-associated protein of 55 kDa, which subsequent microsequencing analysis revealed to be alpha tubulin. Coimmunoprecipitation assays confirmed that full-length mGluR7 and alpha tubulin interact in rat brain as well as in BHK cells stably expressing mGluR7a, a splice variant of mGluR7. In addition, protein overlay experiments showed that the CT domain of mGluR7a binds specifically to purified tubulin and calmodulin, but not to bovine serum albumin. Further pull-down studies revealed that another splice variant mGluR7b also interacts with alpha tubulin, indicating that the binding region is not localized to the splice-variant regions of either mGluR7a (900-915) or mGluR7b (900-923). Indeed, deletion mutagenesis experiments revealed that the alpha tubulin-binding site is located within amino acids 873-892 of the mGluR7 CT domain, a region known to be important for regulation of mGluR7 trafficking. Interestingly, activation of mGluR7a in cells results in an immediate and significant decrease in alpha tubulin binding. These data suggest that the mGluR7/alpha tubulin interaction may provide a mechanism to control access of the CT domain to regulatory molecules, or alternatively, that this interaction may lead to morphological changes in the presynaptic membrane in response to receptor activation.

摘要

代谢型谷氨酸受体(mGluRs)介导中枢神经系统中对谷氨酸的多种反应。III组mGluRs的主要作用是抑制神经递质从突触前终末释放,但调节III组mGluRs突触前转运和活性的分子机制尚未完全明确。在此,我们描述了III组mGluR和突触前自身受体mGluR7与细胞骨架蛋白α微管蛋白的相互作用。mGluR7羧基末端(CT)区域表达为GST融合蛋白,并与大鼠脑提取物一起孵育,以纯化潜在的mGluR7相互作用蛋白。这些研究产生了一种单一的、突出的与mGluR7 CT相关的55 kDa蛋白,随后的微量测序分析显示其为α微管蛋白。免疫共沉淀试验证实,全长mGluR7和α微管蛋白在大鼠脑以及稳定表达mGluR7a(mGluR7的一种剪接变体)的BHK细胞中相互作用。此外,蛋白质印迹实验表明,mGluR7a的CT结构域特异性结合纯化的微管蛋白和钙调蛋白,但不与牛血清白蛋白结合。进一步的下拉实验表明,另一种剪接变体mGluR7b也与α微管蛋白相互作用,表明结合区域并不局限于mGluR7a(900 - 9)或mGluR7b(900 - 923)的剪接变体区域。事实上,缺失诱变实验表明,α微管蛋白结合位点位于mGluR7 CT结构域的873 - 892氨基酸内,这一区域已知对调节mGluR7转运很重要。有趣的是,细胞中mGluR7a的激活导致α微管蛋白结合立即且显著减少。这些数据表明,mGluR7/α微管蛋白相互作用可能提供一种机制来控制CT结构域与调节分子的接触,或者,这种相互作用可能导致突触前膜响应受体激活而发生形态变化。

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