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首页> 外文期刊>Biophysical Journal >Long-range coupling in an allosteric receptor revealed by mutant cycle analysis.
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Long-range coupling in an allosteric receptor revealed by mutant cycle analysis.

机译:突变周期分析揭示了变构受体中的远程偶联。

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摘要

The functional coupling of residues that are far apart in space is the quintessential property of allosteric proteins. For example, in Cys-loop receptors, the gating of an intrinsic ion channel is allosterically regulated by the binding of small molecule neurotransmitters 50-60 A from the channel gate. Some residues near the binding site must have as their primary function the communication of the binding event to the gating region. These gating pathway residues are essential to function, but their identification and characterization can be challenging. This work introduces a simple strategy, derived from mutant cycle analysis, for identifying gating pathway residues using macroscopic measurements alone. In the exemplar Cys-loop receptor, the nicotinic acetylcholine receptor, a well-characterized reporter mutation (betaL9'S) known to impact gating, was combined with mutations of target residues in the ligand-binding domain hypothesized or previously found to be functionally significant. A mutant cycle analysis of the macroscopic EC(50) measurements can then provide insights into the role of the target residue. This new method, elucidating long-range functional coupling in allosteric receptors, can be applied to several reporter mutations in a wide variety of receptors to identify previously characterized and novel mutations that impact the gating pathway. We support our interpretation of macroscopic data with single-channel studies. Elucidating long-range functional coupling in allosteric receptors should be broadly applicable to determining functional roles of residues in allosteric receptors.
机译:在空间上相距很远的残基的功能偶联是变构蛋白的典型特性。例如,在半胱氨酸环受体中,固有离子通道的门控通过与通道门的小分子神经递质50-60 A的结合而变构调节。结合位点附近的一些残基必须具有结合事件与门控区域的通讯作为其主要功能。这些门控途径残基是功能必不可少的,但是它们的鉴定和表征可能具有挑战性。这项工作介绍了一种从突变周期分析中得出的简单策略,该策略仅使用宏观测量即可确定门控通道残基。在示例性的Cys环受体中,烟碱乙酰胆碱受体(一种众所周知的影响门控的报告基因突变(betaL9'S))与假设的或先前发现在功能上很重要的配体结合域中的目标残基突变结合在一起。然后,对宏观EC(50)测量进行突变周期分析,可以洞悉目标残基的作用。该新方法阐明了变构受体中的远程功能偶联,可用于多种受体中的几种报道基因突变,以鉴定影响门控途径的先前表征和新颖的突变。我们通过单通道研究支持对宏观数据的解释。阐明变构受体中的远程功能偶联应广泛适用于确定变构受体中残基的功能作用。

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