首页> 美国卫生研究院文献>Molecular Pharmacology >Intrinsically Low Open Probability of α7 Nicotinic Acetylcholine Receptors Can Be Overcome by Positive Allosteric Modulation and Serum Factors Leading to the Generation of Excitotoxic Currents at Physiological Temperatures
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Intrinsically Low Open Probability of α7 Nicotinic Acetylcholine Receptors Can Be Overcome by Positive Allosteric Modulation and Serum Factors Leading to the Generation of Excitotoxic Currents at Physiological Temperatures

机译:α7烟碱乙酰胆碱受体的本征低开放概率可以通过正向变构调节和在生理温度下导致兴奋性电流产生的血清因子来克服

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摘要

α7 nicotinic acetylcholine receptors (nAChRs) have been a puzzle since their discovery in brain and non-neuronal tissues. Maximal transient probability of an α7 nAChR being open with rapid agonist applications is only 0.002. The concentration dependence of α7 responses measured from transfected cells and Xenopus laevis oocytes shows the same disparity in potency estimations for peak currents and net charge, despite being studied at 1000-fold different time scales. In both cases the EC50 was approximately 10-fold lower for net charge than for peak currents. The equivalence of the data obtained at such disparate time scales indicates that desensitization of α7 is nearly instantaneous. At high levels of agonist occupancy, the receptor is preferentially converted to a ligand-bound nonconducting state, which can be destabilized by the positive allosteric modulator N-(5-chloro-2,4-dimethoxyphenyl)-N′-(5-methyl-3-isoxazolyl)-urea (PNU-120596). Such currents can be sufficiently large to be cytotoxic to the α7-expressing cells. Both the potentiating effect of PNU-120596 and the associated cytotoxicity have a high temperature dependence that can be compensated for by serum factors. Therefore, despite reduced potentiation at body temperatures, use of type II positive allosteric modulators may put cells that naturally express high levels of α7 nAChRs, such as neurons in the hippocampus and hypothalamus, at risk. With a low intrinsic open probability and high propensity toward the induction of nonconducting ligand-bound states, it is likely that the well documented regulation of signal transduction pathways by α7 nAChRs in cells such as those that regulate inflammation may be independent of ion channel activation and associated with the nonconducting conformational states.
机译:自从α7烟碱乙酰胆碱受体(nAChRs)在大脑和非神经元组织中发现以来,一直是一个难题。快速激动剂应用打开α7nAChR的最大瞬态概率仅为0.002。尽管在1000倍的不同时间尺度上进行了研究,但从转染的细胞和非洲爪蟾卵母细胞测得的α7反应的浓度依赖性在峰值电流和净电荷的效能估计中显示出相同的差异。在这两种情况下,净电荷的EC50均比峰值电流低约50倍。在这样不同的时间尺度上获得的数据的等效性表明,α7脱敏几乎是瞬时的。在高水平的激动剂占用下,受体优先转换为配体结合的非导电状态,该状态可以被正构构调节剂N-(5-氯-2,4-二甲氧基苯基)-N'-(5-甲基)破坏-3-异恶唑基)-尿素(PNU-120596)。这样的电流可以足够大以至于对表达α7的细胞具有细胞毒性。 PNU-120596的增强作用和相关的细胞毒性都具有高温依赖性,可以通过血清因素来弥补。因此,尽管在体温下增强了强度,但是使用II型阳性变构调节剂可能会使自然表达高水平α7nAChRs的细胞(例如海马和下丘脑的神经元)处于危险之中。具有低的内在开放可能性和高的诱导非导电配体结合态的倾向,很可能有据可查的文献证明,α7nAChRs在细胞中对信号转导途径的调控,例如那些调节炎症的细胞,可能与离子通道的激活无关。与非导电构象态相关。

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