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Invariant Aspartic Acid in Muscle Nicotinic Receptor Contributes Selectively to the Kinetics of Agonist Binding

机译:肌肉烟碱受体中的不变天冬氨酸选择性地促进激动剂结合的动力学。

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摘要

We examined functional contributions of interdomain contacts within the nicotinic receptor ligand binding site using single channel kinetic analyses, site-directed mutagenesis, and a homology model of the major extracellular region. At the principal face of the binding site, the invariant αD89 forms a highly conserved interdomain contact near αT148, αW149, and αT150. Patch-clamp recordings show that the mutation αD89N markedly slows acetylcholine (ACh) binding to receptors in the resting closed state, but does not affect rates of channel opening and closing. Neither αT148L, αT150A, nor mutations at both positions substantially affects the kinetics of receptor activation, showing that hydroxyl side chains at these positions are not hydrogen bond donors for the strong acceptor αD89. However substituting a negative charge at αT148, but not at αT150, counteracts the effect of αD89N, demonstrating that a negative charge in the region of interdomain contact confers rapid association of ACh. Interpreted within the structural framework of ACh binding protein and a homology model of the receptor ligand binding site, these results implicate main chain amide groups in the domain harboring αW149 as principal hydrogen bond donors for αD89. The specific effect of αD89N on ACh association suggests that interdomain hydrogen bonding positions αW149 for optimal interaction with ACh.
机译:我们使用单通道动力学分析,定点诱变和主要的细胞外区域的同源性模型检查了烟碱样受体配体结合位点内域间接触的功能性贡献。在结合位点的主面上,不变的αD89在αT148,αW149和αT150附近形成高度保守的域间接触。膜片钳记录表明,突变αD89N在静止的关闭状态下显着减慢了乙酰胆碱(ACh)与受体的结合,但不影响通道打开和关闭的速率。 αT148L,αT150A或两个位置上的突变都不会显着影响受体激活的动力学,表明这些位置的羟基侧链不是强受体αD89的氢键供体。但是,在αT148处而不是在αT150处取代负电荷会抵消αD89N的作用,这表明域间接触区域的负电荷赋予ACh快速缔合。这些结果解释了ACh结合蛋白的结构框架和受体配体结合位点的同源性模型,这些结果暗示了结构域中的主链酰胺基团以αW149作为αD89的主要氢键供体。 αD89N对ACh缔合的特定作用表明,域间氢键位置αW149可与ACh最佳相互作用。

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