Department of Ophthalmology & Visual Sciences, University of Utah School of Medicine, Salt Lake City, UT
Department of Ophthalmology & Visual Sciences, University of Utah School of Medicine, Salt Lake City, UT.
J Gen Physiol. 2018 Dec 3;150(12):1660-1675. doi: 10.1085/jgp.201812179. Epub 2018 Nov 16.
Mechanotransduction by the trabecular meshwork (TM) is an essential component of intraocular pressure regulation in the vertebrate eye. This process is compromised in glaucoma but is poorly understood. In this study, we identify transient receptor potential vanilloid isoform 4 (TRPV4) and TWIK-related potassium channel-1 (TREK-1) as key molecular determinants of TM membrane potential, pressure sensitivity, calcium homeostasis, and transcellular permeability. We show that resting membrane potential in human TM cells is unaffected by "classical" inhibitors of voltage-activated, calcium-activated, and inwardly rectifying potassium channels but is depolarized by blockers of tandem-pore K channels. Using gene profiling, we reveal the presence of TREK-1, TASK-1, TWIK-2, and THIK transcripts in TM cells. Pressure stimuli, arachidonic acid, and TREK-1 activators hyperpolarize these cells, effects that are antagonized by quinine, amlodipine, spadin, and short-hairpin RNA-mediated knockdown of TREK-1 but not TASK-1. Activation and inhibition of TREK-1 modulates [Ca] and lowers the impedance of cell monolayers. Together, these results suggest that tensile homeostasis in the TM may be regulated by balanced, pressure-dependent activation of TRPV4 and TREK-1 mechanotransducers.
小梁网的力转导是脊椎动物眼压调节的一个重要组成部分。这一过程在青光眼时受到损害,但了解甚少。在这项研究中,我们发现瞬时受体电位香草醛亚型 4(TRPV4)和 TWIK 相关钾通道-1(TREK-1)是小梁网膜电位、压力敏感性、钙稳态和细胞间通透性的关键分子决定因素。我们表明,人小梁网细胞的静息膜电位不受“经典”电压激活、钙激活和内向整流钾通道抑制剂的影响,但被串联孔钾通道抑制剂去极化。通过基因谱分析,我们发现 TM 细胞中存在 TREK-1、TASK-1、TWIK-2 和 THIK 转录本。压力刺激、花生四烯酸和 TREK-1 激活剂使这些细胞超极化,这些效应被奎宁、氨氯地平、spadin 和短发夹 RNA 介导的 TREK-1 敲低而不是 TASK-1 拮抗。TREK-1 的激活和抑制调节[Ca]并降低细胞单层的阻抗。总之,这些结果表明,小梁网的张力稳态可能通过 TRPV4 和 TREK-1 机械转导物的平衡、压力依赖性激活来调节。