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Dominant Negative Effects of a Non-conducting TREK1 Splice Variant Expressed in Brain

机译:在大脑中表达的非导电性TREK1剪接变异体的显性负作用。

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摘要

Two-pore domain potassium (K2P) channels modulate neuronal excitability throughout the entire CNS. The stretch-activated channel TREK1 (K2P2.1) is expressed widely in brain and has been linked to depression, neuroprotection, pain perception, and epilepsy. Little, however, is known about the regulation of TREK1 expression on the transcriptional and translational level or about its trafficking to the plasma membrane. Here we have used PCR techniques to identify a splice variant of TREK1 expressed in the brain, which encodes a heavily truncated TREK1 protein retaining a single transmembrane domain. Functional expression of this splice variant TREK1ΔEx4 in tsA201 cells in the presence or absence of wild type TREK1 revealed that TREK1ΔEx4 has no channel activity itself but reduced TREK1 whole cell current amplitude. Confocal analysis of the expression of fluorescently tagged TREK1 variants revealed that TREK1ΔEx4 is translated, but it is retained in the intracellular compartment. Additionally, TREK1ΔEx4 reduced the level of TREK1 expression in the plasma membrane. Long and short forms of TREK1 derived from alternative translation initiation are differentially affected by TREK1ΔEx4, with the short form (lacking the first 41 amino acids at its N terminus) unaffected. This differential regulatory role of TREK1ΔEx4 will alter the functional profile of TREK1 current in neurons where they are expressed. These results indicate that the N-terminal domain and first transmembrane domain of TREK1 are likely to be important for channel dimerization and trafficking to the plasma membrane.
机译:两孔域钾(K2P)通道可调节整个CNS的神经元兴奋性。拉伸激活的通道TREK1(K2P2.1)在脑中广泛表达,并与抑郁症,神经保护,疼痛感和癫痫病有关。然而,关于TREK1表达在转录和翻译水平上的调控或其向质膜的运输的了解很少。在这里,我们已经使用PCR技术来鉴定在大脑中表达的TREK1的剪接变体,该变体编码保留了单个跨膜结构域的严重截短的TREK1蛋白。在存在或不存在野生型TREK1的情况下,该剪接变体TREK1ΔEx4在tsA201细胞中的功能表达表明TREK1ΔEx4本身没有通道活性,但降低了TREK1全细胞电流幅度。荧光标记的TREK1变体表达的共聚焦分析表明TREK1ΔEx4已翻译,但保留在细胞内区室中。另外,TREK1ΔEx4降低了质膜中TREK1表达的水平。 TREK1ΔEx4对衍生自交替翻译起始的TREK1的长体和短体形式有不同的影响,而短体形式(在其N末端缺少前41个氨基酸)不受影响。 TREK1ΔEx4的这种不同的调节作用将改变TREK1电流在表达它们的神经元中的功能。这些结果表明TREK1的N末端域和第一个跨膜域可能是重要的通道二聚和质膜运输。

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