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Three Epilepsy-Associated GABRG2 Missense Mutations at the γ+/β− interface Disrupt GABAA Receptor Assembly and trafficking by Similar MeChanisms but to Different Extents

机译:γ+ /β-界面上的三个癫痫相关的GABRG2错义突变破坏了GABAA受体的组装和通过类似的机制贩运到不同程度的贩运者

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摘要

We compared the effects of three missense mutations in the GABAA receptor γ2 subunit on GABAA receptor assembly, trafficking and function in HEK293T cells cotransfected with α1, β2, and wildtype or mutant γ2 subunits. The mutations R82Q and P83S were identified in families with genetic epilepsy with febrile seizures plus (GEFS+), and N79S was found in a single patient with generalized tonic-clonic seizures (GTCS). Although all three mutations were located in an N terminal loop that contributes to the γ+/β− subunit-subunit interface, we found that each mutation impaired GABAA receptor assembly to a different extent. The γ2(R82Q) and γ2(P83S) subunits had reduced α1β2γ2 receptor surface expression due to impaired assembly into pentamers, endoplasmic reticulum (ER) retention and degradation. In contrast, γ2(N79S) subunits were efficiently assembled into GABAA receptors with only minimally altered receptor trafficking, suggesting that N79S was a rare or susceptibility variant rather than an epilepsy mutation. Increased structural variability at assembly motifs was predicted by R82Q and P83S, but not N79S, substitution, suggesting that R82Q and P83S substitutions were less tolerated. Membrane proteins with missense mutations that impair folding and assembly often can be “rescued” by decreased temperatures. We coexpressed wildtype or mutant γ2 subunits with α1 and β2 subunits and found increased surface and total levels of both wildtype and mutant γ2 subunits after decreasing the incubation temperature to 30 °C for 24 hours, suggesting that lower temperatures increased GABAA receptor stability. Thus epilepsy-associated mutations N79S, R82Q and P83S disrupted GABAA receptor assembly to different extents, an effect that could be potentially rescued by facilitating protein folding and assembly.
机译:我们比较了GABAA受体γ2亚基中的三个错义突变对与α1,β2和野生型或突变体γ2亚基共转染的HEK293T细胞中GABAA受体装配,运输和功能的影响。 R82Q和P83S突变是在遗传性癫痫伴高热性癫痫发作(GEFS +)的家庭中鉴定到的,而N79S在一名患有全身性强直阵挛性癫痫发作(GTCS)的患者中发现。尽管所有三个突变都位于有助于γ+ /β-亚基-亚基界面的N末端环中,但我们发现每个突变都会在不同程度上损害GABAA受体的组装。 γ2(R82Q)和γ2(P83S)亚基由于组装到五聚体,内质网(ER)的保留和降解受损而降低了α1β2γ2受体的表面表达。相比之下,γ2(N79S)亚基被有效地组装成GABAA受体,而受体的转运变化很小,这表明N79S是罕见或易感性变异,而不是癫痫突变。 R82Q和P83S替代N79S替代预测了装配基序上结构变异性的增加,这表明R82Q和P83S替代的耐受性较低。带有错义突变的膜蛋白会破坏折叠和装配,通常可以通过降低温度来“拯救”。我们将野生型或突变体γ2亚基与α1和β2亚基共表达,发现将温育温度降低至30°C 24小时后,野生型和突变体γ2亚基的表面和总水平均增加,表明较低的温度可提高GABAA受体的稳定性。因此,癫痫相关的突变N79S,R82Q和P83S在不同程度上破坏了GABAA受体的组装,而这种作用可以通过促进蛋白质的折叠和组装来挽救。

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