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Expression and localisation of two-pore domain (K2P) background leak potassium ion channels in the mouse retina

机译:小鼠视网膜中两孔结构域(K2P)背景泄漏钾离子通道的表达和定位

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摘要

Two-pore domain (K2P) potassium channels perform essential roles in neuronal function. These channels produce background leak type potassium currents that act to regulate resting membrane potential and levels of cellular excitability. 15 different K2P channels have been identified in mammals and these channels perform important roles in a wide number of physiological systems. However, to date there is only limited data available concerning the expression and role of K2P channels in the retina. In this study we conduct the first comprehensive study of K2P channel expression in the retina. Our data show that K2P channels are widely expressed in the mouse retina, with variations in expression detected at different times of day and throughout postnatal development. The highest levels of K2P channel expression are observed for Müller cells (TWIK-1, TASK-3, TRAAK, and TREK-2) and retinal ganglion cells (TASK-1, TREK-1, TWIK-1, TWIK-2 and TWIK-3). These data offer new insight into the channels that regulate the resting membrane potential and electrical activity of retinal cells, and suggests that K2P channels are well placed to act as central regulators of visual signalling pathways. The prominent role of K2P channels in neuroprotection offers novel avenues of research into the treatment of common retinal diseases.
机译:两孔域(K2P)钾通道在神经元功能中起重要作用。这些通道产生背景泄漏型钾电流,其作用是调节静息膜电位和细胞兴奋性水平。在哺乳动物中已经鉴定出15种不同的K2P通道,这些通道在多种生理系统中起着重要的作用。但是,迄今为止,关于K2P通道在视网膜中的表达和作用的数据很少。在这项研究中,我们进行了视网膜中K2P通道表达的首次综合研究。我们的数据表明,K2P通道在小鼠视网膜中广泛表达,在一天的不同时间和整个产后发育过程中检测到表达变化。对于Müller细胞(TWIK-1,TASK-3,TRAAK和TREK-2)和视网膜神经节细胞(TASK-1,TREK-1,TWIK-1,TWIK-2和TWIK),观察到最高水平的K2P通道表达-3)。这些数据提供了对调节静止膜电位和视网膜细胞电活动的通道的新见解,并表明K2P通道处于适当位置,可以充当视觉信号通路的中央调节剂。 K2P通道在神经保护中的重要作用为治疗常见的视网膜疾病提供了新的研究途径。

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