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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Aplysia synapse associated protein (APSAP): identification, characterization, and selective interactions with Shaker-type potassium channels.
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Aplysia synapse associated protein (APSAP): identification, characterization, and selective interactions with Shaker-type potassium channels.

机译:Aplysia突触相关蛋白(APSAP):鉴定,表征,和与Shaker型钾通道的选择性相互作用。

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The vertebrate post-synaptic density (PSD) is a region of high molecular complexity in which dynamic protein interactions modulate receptor localization and synaptic function. Members of the membrane-associated guanylate kinase (MAGUK) family of proteins represent a major structural and functional component of the vertebrate PSD. In order to investigate the expression and significance of orthologous PSD components associated with the Aplysia sensory neuron-motor neuron synapse, we have cloned an Aplysia Dlg-MAGUK protein, which we identify as Aplysia synapse associated protein (ApSAP). As revealed by western blot, RT-PCR, and immunocytochemical analyses, ApSAP is predominantly expressed in the CNS and is located in both sensory neuron and motor neurons. The overall amino acid sequence of ApSAP is 55-61% identical to Drosophila Dlg and mammalian Dlg-MAGUK proteins, but is more highly conserved within L27, PDZ, SH3, and guanylate kinase domains. Because these conserved domains mediate salient interactions with receptors and other PSD components of the vertebrate synapse, we performed a series of GST pull-down assays using recombinant C-terminal tail proteins from various Aplysia receptors and channels containing C-terminal PDZ binding sequences. We have found that ApSAP selectively binds to an Aplysia Shaker-type channel AKv1.1, but not to (i) NMDA receptor subunit AcNR1-1, (ii) potassium channel AKv5.1, (iii) receptor tyrosine kinase ApTrkl, (iv) glutamate receptor ApGluR1/4, (v) glutamate receptor ApGluR2/3, or (vi) glutamate receptor ApGluR7. These findings provide preliminary information regarding the expression and interactions of Dlg-MAGUK proteins of the Aplysia CNS, and will inform questions aimed at a functional analysis of how interactions in a protein network such as the PSD may regulate synaptic strength.
机译:脊椎动物的突触后密度(PSD)是一个分子复杂的区域,其中动态蛋白质相互作用调节受体的定位和突触功能。膜相关鸟苷酸激酶(MAGUK)家族的成员代表脊椎动物PSD的主要结构和功能组件。为了研究与海兔感觉神经元-运动神经元突触相关的直系同源PSD成分的表达和意义,我们克隆了一种海兔Dlg-MAGUK蛋白,我们将其鉴定为海兔突触相关蛋白(ApSAP)。如蛋白质印迹,RT-PCR和免疫细胞化学分析所揭示,ApSAP主要在中枢神经系统中表达,并且位于感觉神经元和运动神经元中。 ApSAP的总体氨基酸序列与果蝇Dlg和哺乳动物Dlg-MAGUK蛋白具有55-61%的同一性,但在L27,PDZ,SH3和鸟苷酸激酶结构域内保守性更高。因为这些保守域介导了与脊椎动物突触的受体和其他PSD组件的显着相互作用,所以我们使用了来自各种Aplysia受体和包含C端PDZ结合序列的通道的重组C端尾蛋白进行了一系列GST下拉测定。我们发现ApSAP选择性结合Aplysia Shaker型通道AKv1.1,但不结合(i)NMDA受体亚基AcNR1-1,(ii)钾通道AKv5.1,(iii)酪氨酸激酶ApTrkl,(iv )谷氨酸受体ApGluR1 / 4,(v)谷氨酸受体ApGluR2 / 3,或(vi)谷氨酸受体ApGluR7。这些发现提供了有关海藻CNS的Dlg-MAGUK蛋白表达和相互作用的初步信息,并将为旨在对蛋白质网络(如PSD)中的相互作用如何调节突触强度的功能分析提出问题。

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