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Differential cell surface expression of GABA-A receptor alpha 1, alpha 6 and beta 2 and beta 3 subunits in cultured mouse cerebellar granule cells - influence of cAMP-activated signalling.

机译:培养的小鼠小脑颗粒细胞中GABA-A受体α1,α6,β2和β3亚基的细胞表面差异表达-cAMP激活信号的影响。

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摘要

In this study we have used mature, primary cultured mouse cerebellar granule cells (CGCs) to initiate our studies on the mechanisms governing neuronal trafficking of GABAA receptors (GABARs). Initially the steady-state distribution of GABAR α1, α6, β2 and β3 subunits between the cell surface and cell interior was quantified. Cell surface proteins were modified with a membrane-impermeable cross-linking agent, bis(sulfosuccinimidyl)suberate (BS3) or the proteolytic enzyme, chymotrypsin. The proportion of unmodified (intracellular) and modified (cell surface) subunits was quantified by immunoblotting. We found that 51% of α6, 74% of α1, and 83% of β2/3 were expressed at the cell surface, thus identifying a sizeable intracellular pool of α6 in contrast to the low levels of intracellular α1 and β2/3. Chronic activation of protein kinase A (PKA) in CGCs in vitro, post-transcriptionally up-regulated expression of α1, β2 and β3 but not α6. This was paralleled by an increase in the BZ-S subtype of [3H]Ro15–4513 binding sites. GABAR α1 was increased at the cell surface and in the cell interior, β2 was increased almost exclusively at the cell surface whilst β3 was increased almost exclusively in the cell interior. The intracellular pool of α6 was not affected. Thus, GABAR subunits are subject to differentially regulated trafficking, affording yet greater scope for GABAR diversity and plasticity.
机译:在这项研究中,我们已经使用成熟的,原代培养的小鼠小脑颗粒细胞(CGC)来启动关于控制GABAA受体(GABAR)神经元运输的机制的研究。最初,对细胞表面和细胞内部之间的GABARα1,α6,β2和β3亚基的稳态分布进行了定量。细胞表面蛋白用不透膜的交联剂双(磺基琥珀酰亚胺基)硫酸氢盐(BS3)或蛋白水解酶糜蛋白酶进行修饰。通过免疫印迹定量未修饰的(细胞内)和修饰的(细胞表面)亚基的比例。我们发现,在细胞表面表达了51%的α6、74%的α1和83%的β2/ 3,因此与较低水平的细胞内α1和β2/ 3相比,可确定大量的α6细胞内池。体外CGC中蛋白激酶A(PKA)的慢性活化,转录后上调α1,β2和β3的表达,但不上调α6的表达。这与[3H] Ro15–4513结合位点的BZ-S亚型增加同时发生。 GABARα1在细胞表面和细胞内部增加,β2几乎仅在细胞表面增加,而β3几乎仅在细胞内部增加。 α6的细胞内池不受影响。因此,GABAR亚基受到不同监管的贩运,为GABAR多样性和可塑性提供了更大的范围。

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