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Molecular mechanisms contributing to TARP regulation of channel conductance and polyamine block of calcium-permeable AMPA receptors.

机译:有助于TARP调节钙渗透性AMPA受体的通道电导和多胺阻滞的分子机制。

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摘要

Many properties of fast synaptic transmission in the brain are influenced by transmembrane AMPAR regulatory proteins (TARPs) that modulate the pharmacology and gating of AMPA-type glutamate receptors (AMPARs). Although much is known about TARP influence on AMPAR pharmacology and kinetics through their modulation of the extracellular ligand-binding domain (LBD), less is known about their regulation of the ion channel region. TARP-induced modifications in AMPAR channel behavior include increased single-channel conductance and weakened block of calcium-permeable AMPARs (CP-AMPARs) by endogenous intracellular polyamines. To investigate how TARPs modify ion flux and channel block, we examined the action of γ-2 (stargazin) on GluA1 and GluA4 CP-AMPARs. First, we compared the permeation of organic cations of different sizes. We found that γ-2 increased the permeability of several cations but not the estimated AMPAR pore size, suggesting that TARP-induced relief of polyamine block does not reflect altered pore diameter. Second, to determine whether residues in the TARP intracellular C-tail regulate polyamine block and channel conductance, we examined various γ-2 C-tail mutants. We identified the membrane proximal region of the C terminus as crucial for full TARP-attenuation of polyamine block, whereas complete deletion of the C-tail markedly enhanced the TARP-induced increase in channel conductance; thus, the TARP C-tail influences ion permeation. Third, we identified a site in the pore-lining region of the AMPAR, close to its Q/R site, that is crucial in determining the TARP-induced changes in single-channel conductance. This conserved residue represents a site of TARP action, independent of the AMPAR LBD.
机译:跨膜AMPAR调节蛋白(TARP)影响大脑中突触传递的许多特性,该蛋白调节AMPA型谷氨酸受体(AMPAR)的药理作用和门控作用。尽管关于TARP通过调节细胞外配体结合域(LBD)对AMPAR药理学和动力学的影响知之甚少,但对它们对离子通道区域的调节知之甚少。 TARP诱导的AMPAR通道行为的修饰包括单通道电导增加和内源性细胞内多胺削弱了钙可渗透AMPAR(CP-AMPAR)的阻滞作用。为了研究TARPs如何修饰离子通量和通道阻滞,我们研究了γ-2(stargazin)对GluA1和GluA4 CP-AMPAR的作用。首先,我们比较了不同大小的有机阳离子的渗透率。我们发现,γ-2增加了几种阳离子的渗透性,但并未增加AMPAR孔径的估计值,这表明TARP诱导的多胺嵌段释放不反映孔径的改变。其次,为了确定TARP细胞内C-tail中的残基是否调节多胺阻滞和通道电导,我们研究了各种γ-2C-tail突变体。我们发现C末端的膜近端区域对于TARP完全减弱多胺嵌段至关重要,而C尾部的完全缺失则明显增强了TARP诱导的通道电导的增加。因此,TARP C-tail影响离子渗透。第三,我们在AMPAR的孔衬区域中确定了一个靠近Q / R位点的位点,这对于确定TARP诱导的单通道电导变化至关重要。此保守残基代表TARP作用位点,独立于AMPAR LBD。

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