Payrits Maja, Zsidó Balázs Zoltán, Nehr-Majoros Andrea Kinga, Börzsei Rita, Helyes Zsuzsanna, Hetényi Csaba, Szőke Éva
Department of Pharmacology and Pharmacotherapy, Medical School and Centre for Neuroscience, University of Pécs, Pécs, Hungary.
National Laboratory for Drug Research and Development, Budapest, Hungary.
Front Cell Dev Biol. 2024 Nov 29;12:1452306. doi: 10.3389/fcell.2024.1452306. eCollection 2024.
Transient Receptor Potential (TRP) ion channels like Vanilloid 1 (TRPV1) and Melastatin 3 (TRPM3) are nonselective cation channels expressed in primary sensory neurons and peripheral nerve endings, which are located in cholesterol- and sphingolipid-rich membrane lipid raft regions and have important roles in pain processing. Besides TRP ion channels a wide variety of voltage-gated ion channels were also described in the membrane raft regions of neuronal cells. Here we investigated the effects of lipid raft disruption by methyl-beta-cyclodextrin (MCD) and sphingomyelinase (SMase) on TRPV1, TRPM3 and voltage-gated L-type Ca channel activation in cultured trigeminal neurons and sensory nerve terminals of the trachea. We also examined the mechanism of action of MCD by modeling. Disruption of lipid rafts by MCD or SMase did not alter CIM0216-induced TRPM3 cation channel activation and the voltage-gated L-type Ca channel activation by FPL 64126 or veratridine neither on trigeminal sensory neurons nor sensory nerve terminals. We provided the first structural explanation with modeling that the activation of TRPV1, TRPM3 and voltage-gated L-type Ca channels is affected differently by the cholesterol content surrounding them in the plasma membrane. It is concluded that modifying the hydrophobic interactions between lipid rafts and ion channels might provide a selective novel mechanism for peripheral analgesia.
瞬时受体电位(TRP)离子通道,如香草素受体亚型1(TRPV1)和褪黑素3(TRPM3),是表达于初级感觉神经元和周围神经末梢的非选择性阳离子通道,这些通道位于富含胆固醇和鞘脂的膜脂筏区域,在疼痛处理中发挥重要作用。除了TRP离子通道外,在神经元细胞膜脂筏区域还发现了多种电压门控离子通道。在此,我们研究了甲基-β-环糊精(MCD)和鞘磷脂酶(SMase)破坏脂筏对培养的三叉神经节神经元和气管感觉神经末梢中TRPV1、TRPM3及电压门控L型钙通道激活的影响。我们还通过建模研究了MCD的作用机制。MCD或SMase破坏脂筏,对三叉神经感觉神经元和感觉神经末梢中CIM0216诱导的TRPM3阳离子通道激活以及FPL 64126或藜芦碱诱导的电压门控L型钙通道激活均无影响。我们通过建模首次从结构上解释了质膜中围绕TRPV1、TRPM3和电压门控L型钙通道的胆固醇含量对其激活的影响各不相同。得出的结论是,改变脂筏与离子通道之间的疏水相互作用可能为外周镇痛提供一种选择性新机制。