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AMPA 受体内化的独特分子机制和不同的内吞途径。

Distinct molecular mechanisms and divergent endocytotic pathways of AMPA receptor internalization.

作者信息

Lin J W, Ju W, Foster K, Lee S H, Ahmadian G, Wyszynski M, Wang Y T, Sheng M

机构信息

Howard Hughes Medical Institute, Massachusetts General Hospital (Wellman 423), 50 Blossom Street, Boston, Massachusetts 02114, USA.

出版信息

Nat Neurosci. 2000 Dec;3(12):1282-90. doi: 10.1038/81814.

Abstract

Internalization of postsynaptic AMPA receptors depresses excitatory transmission, but the underlying dynamics and mechanisms of this process are unclear. Using immunofluorescence and surface biotinylation, we characterized and quantified basal and regulated AMPA receptor endocytosis in cultured hippocampal neurons, in response to synaptic activity, AMPA and insulin. AMPA-induced AMPA receptor internalization is mediated in part by secondary activation of voltage-dependent calcium channels, and in part by ligand binding independent of receptor activation. Although both require dynamin, insulin- and AMPA-induced AMPA receptor internalization are differentially dependent on protein phosphatases and sequence determinants within the cytoplasmic tails of GluR1 and GluR2 subunits. AMPA receptors internalized in response to AMPA stimulation enter a recycling endosome system, whereas those internalized in response to insulin diverge into a distinct compartment. Thus, the molecular mechanisms and intracellular sorting of AMPA receptors are diverse, and depend on the internalizing stimulus.

摘要

突触后AMPA受体的内化会抑制兴奋性传递,但其潜在的动力学过程和机制尚不清楚。利用免疫荧光和表面生物素化技术,我们对培养的海马神经元中基础的和受调控的AMPA受体内吞作用进行了表征和定量,以研究其对突触活动、AMPA和胰岛素的反应。AMPA诱导的AMPA受体内化部分由电压依赖性钙通道的二次激活介导,部分由不依赖于受体激活的配体结合介导。尽管两者都需要发动蛋白,但胰岛素和AMPA诱导的AMPA受体内化对蛋白磷酸酶以及GluR1和GluR2亚基胞质尾部内的序列决定因素有不同的依赖性。响应AMPA刺激而内化的AMPA受体进入回收内体系统,而响应胰岛素而内化的受体则进入一个不同的区室。因此,AMPA受体的分子机制和细胞内分选是多样的,并且取决于内化刺激。

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