Semenov Iurii, Brenner Robert
Frank Reidy Research Center for Bioelectrics, Old Dominion University, Norfolk, Virginia.
Department of Cell and Integrative Physiology, University of Texas Health Science Center San Antonio, San Antonio, Texas.
Physiol Rep. 2018 Sep;6(17):e13856. doi: 10.14814/phy2.13856.
Studies have shown that the activity of muscarinic receptors and their affinity to agonists are sensitive to membrane potential. It was reported that in airway smooth muscle (ASM) depolarization evoked by high K solution increases contractility through direct effects on M3 muscarinic receptors. In this study, we assessed the physiological relevance of voltage sensitivity of muscarinic receptors on ASM contractility. Our findings reveal that depolarization by high K solution induces contraction in intact mouse trachea predominantly through activation of acetylcholine release from embedded nerves, and to a lesser extent by direct effects on M3 receptors. We therefore devised a pharmacological approach to depolarize tissue to various extents in an organ bath preparation, and isolate contraction due exclusively to ASM muscarinic receptors within range of physiological voltages. Our results indicate that unliganded muscarinic receptors do not contribute to contraction regardless of voltage. Utilizing low K solution to hyperpolarize membrane potentials during contractions had no effect on liganded muscarinic receptor-evoked contractions, although it eliminated the contribution of voltage-gated calcium channels. However, we found that muscarinic signaling was potentiated by at least 42% at depolarizing voltages (average -12 mV) induced by high K solution (20 mmol/L K ). In summary, we conclude that contractions evoked by direct activation of muscarinic receptors have negligible sensitivity to physiological voltages. However, contraction activated by cholinergic stimulation can be potentiated by membrane potentials occurring beyond the physiological range of ASM.
研究表明,毒蕈碱受体的活性及其对激动剂的亲和力对膜电位敏感。据报道,在气道平滑肌(ASM)中,高钾溶液诱发的去极化通过直接作用于M3毒蕈碱受体增加收缩性。在本研究中,我们评估了毒蕈碱受体电压敏感性对ASM收缩性的生理相关性。我们的研究结果表明,高钾溶液引起的去极化主要通过激活包埋神经释放乙酰胆碱诱导完整小鼠气管收缩,而直接作用于M3受体的作用较小。因此,我们设计了一种药理学方法,在器官浴制剂中将组织去极化到不同程度,并在生理电压范围内分离出仅由ASM毒蕈碱受体引起的收缩。我们的结果表明,无论电压如何,未结合的毒蕈碱受体均不参与收缩。在收缩过程中利用低钾溶液使膜电位超极化对结合毒蕈碱受体诱发的收缩没有影响,尽管它消除了电压门控钙通道的作用。然而,我们发现,在高钾溶液(20 mmol/L K)诱导的去极化电压(平均-12 mV)下,毒蕈碱信号增强了至少42%。总之,我们得出结论,直接激活毒蕈碱受体诱发的收缩对生理电压的敏感性可忽略不计。然而,胆碱能刺激激活的收缩可被超出ASM生理范围的膜电位增强。