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Mutations in the main cytoplasmic loop of the GABAA receptor α4 and δ subunits have opposite effects on surface expression

机译:GABAA受体α4和δ亚基的主要细胞质环中的突变对表面表达有相反的影响

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We examined the role of putative trafficking sequences in two GABA A receptor subunits: α4 and δ. These subunits assemble with a b subunit to form a subtype of GABAA receptor involved in generating the "tonic" outward current. Both α4 and δ subunits contain dibasic retention motifs in homologous positions. When basic residues are mutated to alanine in the α4 subunit, surface expression of epitope-tagged d subunits is increased. When basic residues in homologous regions of the d subunit are mutated, however, surface expression is reduced. We focused on the mutants that had the maximal effects to increase (in α4) or reduce (in δ) surface expression. The total expression of δ subunits is significantly decreased by the d mutation, suggesting an effect on subunit maturation. We also examined surface expression of the β2 subunit. Expression of the mutated α4 subunit resulted in increased surface expression of β2 compared with wild-type α4, indicating enhanced forward trafficking. In contrast, mutated d resulted in decreased surface expression of b2 compared with wild-type d and to α4 and β2 in the absence of any δ. This observation suggests that the mutated d incorporates into multimeric receptors and reduces the overall forward trafficking of receptors. These observations indicate that the roles of trafficking motifs are complex, even when located in homologous positions in related subunits. The physiologic properties of receptors containing mutated subunits were not significantly affected, indicating that the mutations in the α4 subunit will be useful to enhance surface expression.
机译:我们检查了假定的贩运序列在两个GABA A受体亚基中的作用:α4和δ。这些亚基与b亚基组装形成GABA A受体的亚型,其参与产生“强直的”外向电流。 α4和δ亚基在同源位置均含有二价基元保留基序。当碱性残基在α4亚基中突变为丙氨酸时,表位标记的d亚基的表面表达增加。然而,当d亚基的同源区域中的碱性残基突变时,表面表达降低。我们专注于对增加(α4)或减少(δ)表面表达具有最大作用的突变体。 δ突变显着降低了δ亚基的总表达,表明对亚基成熟有影响。我们还检查了β2亚基的表面表达。与野生型α4相比,突变的α4亚基的表达导致β2的表面表达增加,表明向前运输增强。相反,与野生型d相比,突变d导致b2的表面表达下降,在没有任何δ的情况下,突变为d导致α4和β2。该观察结果表明突变的d并入多聚体受体并降低了受体的总体前向运输。这些观察结果表明,即使位于相关亚基的同源位置时,贩运基序的作用也是复杂的。含有突变的亚基的受体的生理特性没有受到显着影响,表明α4亚基中的突变将有助于增强表面表达。

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