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Preferential accumulation of GABAA receptor γ2L not γ2S cytoplasmic loops at rat spinal cord inhibitory synapses

机译:大鼠脊髓抑制性突触中GABAA受体γ2L而非γ2S胞质环的优先积累

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摘要

Alternative splicing generates two variants of the GABAAR γ2-subunit, γ2S and γ2L, which differ by insertion of the amino acid sequence LLRMFSFK into the large cytoplasmic loop between transmembrane domains 3 and 4. This additional sequence within the GABAAR γ2L-subunit contains the potential protein kinase C (PKC) phosphorylation site serine 343 (Ser343). In the present study we intended to determine the capacity of these two splice variants to accumulate at inhibitory synaptic terminals and to colocalize with gephyrin, and to find out whether phosphorylation of Ser343 has any effect on GABAAR distribution. Green fluorescent protein (GFP)-tagged large cytoplasmic loops of GABAAR γ2S and γ2L (GFP::γ2S/L) were used as surrogates for full-length receptors to study the function of the individual γ2S and γ2L peptides in transfected spinal cord neurones (SCNs) and COS-7 cells. It was found that GFP::γ2L displayed a significantly higher capacity to accumulate at inhibitory synapses than GFP::γ2S. GABAAR GFP::γ2S accumulation at inhibitory postsynaptic sites was suppressed to the extent that GFP::γ2S assumed a diffuse cytosolic distribution. PKC activation facilitated the postsynaptic clustering of GFP::γ2L but not of GFP::γ2S. This required the Ser343 residue, since substituting Ala343 for Ser343 produced a diffuse cytosolic localization pattern, like that of GFP::γ2S. Furthermore, upon PKC activation Discosoma Red2-tagged GABAAR γ2L (DsRed 2::γ2L) colocalized with gephyrin in transfected COS-7 cells. These results support the idea that alternative splicing regulates the access of GABAARs to inhibitory postsynaptic sites in a Ser343 phosphorylation-regulated way.
机译:选择性剪接产生GABAARγ2-亚基的两个变异体γ2S和γ2L,这两个变异体的区别在于将氨基酸序列LLRMFSFK插入跨膜结构域3和4之间的大细胞质环中。蛋白激酶C(PKC)磷酸化位点的丝氨酸343(Ser343)。在本研究中,我们打算确定这两个剪接变体在抑制性突触末端积累并与gephyrin共定位的能力,并确定Ser343的磷酸化是否对GABAAR分布有任何影响。标记绿色荧光蛋白(GFP)的GABAARγ2S和γ2L大细胞质环(GFP ::γ2S/ L)作为全长受体的替代物,以研究单个γ2S和γ2L肽在转染的脊髓神经元中的功能( SCN)和COS-7细胞。发现GFP ::γ2L显示出比GFP ::γ2S显着更高的抑制突触积累能力。 GABAAR GFP ::γ2S在抑制性突触后位点的积累被抑制到GFP ::γ2S呈弥漫性胞质分布的程度。 PKC激活促进了GFP ::γ2L的突触后聚集,但没有促进GFP ::γ2S的突触后聚集。这需要Ser343残基,因为用Ala343取代Ser343会产生弥散的胞浆定位模式,就像GFP ::γ2S一样。此外,在PKC激活后,Discosoma Red2标记的GABAARγ2L(DsRed 2 ::γ2L)与gephyrin在转染的COS-7细胞中共定位。这些结果支持这样的想法,即选择性剪接以Ser343磷酸化调节的方式调节GABAARs进入抑制性突触后位点。

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