首页> 美国卫生研究院文献>Frontiers in Molecular Neuroscience >Disturbances of Ligand Potency and Enhanced Degradation of the Human Glycine Receptor at Affected Positions G160 and T162 Originally Identified in Patients Suffering from Hyperekplexia
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Disturbances of Ligand Potency and Enhanced Degradation of the Human Glycine Receptor at Affected Positions G160 and T162 Originally Identified in Patients Suffering from Hyperekplexia

机译:最初被鉴定为患有多发性脑瘫的患者的配体效力紊乱和人甘氨酸受体降解在受影响的位置G160和T162上的增强

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摘要

Ligand-binding of Cys-loop receptors is determined by N-terminal extracellular loop structures from the plus as well as from the minus side of two adjacent subunits in the pentameric receptor complex. An aromatic residue in loop B of the glycine receptor (GlyR) undergoes direct interaction with the incoming ligand via a cation-π interaction. Recently, we showed that mutated residues in loop B identified from human patients suffering from hyperekplexia disturb ligand-binding. Here, we exchanged the affected human residues by amino acids found in related members of the Cys-loop receptor family to determine the effects of side chain volume for ion channel properties. GlyR variants were characterized in vitro following transfection into cell lines in order to analyze protein expression, trafficking, degradation and ion channel function. GlyR α1 G160 mutations significantly decrease glycine potency arguing for a positional effect on neighboring aromatic residues and consequently glycine-binding within the ligand-binding pocket. Disturbed glycinergic inhibition due to T162 α1 mutations is an additive effect of affected biogenesis and structural changes within the ligand-binding site. Protein trafficking from the ER toward the ER-Golgi intermediate compartment, the secretory Golgi pathways and finally the cell surface is largely diminished, but still sufficient to deliver ion channels that are functional at least at high glycine concentrations. The majority of T162 mutant protein accumulates in the ER and is delivered to ER-associated proteasomal degradation. Hence, G160 is an important determinant during glycine binding. In contrast, T162 affects primarily receptor biogenesis whereas exchanges in functionality are secondary effects thereof.
机译:Cys-环受体的配体结合是由五聚体受体复合物中两个相邻亚基的正负侧的N末端胞外环结构决定的。甘氨酸受体(GlyR)的环B中的芳族残基通过阳离子-π相互作用与引入的配体直接相互作用。最近,我们显示从患有高位神经症的人类患者中鉴定出的环B中的突变残基会干扰配体结合。在这里,我们用在Cys环受体家族相关成员中发现的氨基酸交换了受影响的人类残基,以确定侧链体积对离子通道性质的影响。转染入细胞系后体外表征GlyR变体,以分析蛋白质表达,运输,降解和离子通道功能。 GlyRα1G160突变显着降低了甘氨酸效价,这是由于对邻近的芳族残基产生了位置影响,因此,甘氨酸与配体结合袋中的结合作用增强。由于T162α1突变引起的干扰性糖氨酸抑制是配体结合位点内受影响的生物发生和结构变化的累加效应。蛋白质从ER向ER-高尔基体中间隔室,分泌性高尔基体通路以及最终细胞表面的运输大大减少,但仍足以传递至少在高甘氨酸浓度下起作用的离子通道。大多数T162突变蛋白在ER中积累,并传递到ER相关的蛋白酶体降解中。因此,G160是甘氨酸结合过程中的重要决定因素。相反,T162主要影响受体的生物发生,而功能交换是其次要作用。

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