A Splice Variant of the Two-pore Domain Potassium Channel TREK-1 with Only One Pore Domain Reduces the Surface Expression of Full-length TREK-1 Channels
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We have identified a novel splice variant of the human and rat two-pore domain potassium (K2P) channel TREK-1. The splice variant TREK-1e results from skipping of exon 5, which causes a frame shift in exon 6. The frame shift produces a novel C-terminal amino acid sequence and a premature termination of translation, which leads to a loss of transmembrane domains M3 and M4 and of the second pore domain. RT-PCR experiments revealed a preferential expression of TREK-1e in kidney, adrenal gland, and amygdala. TREK-1e was nonfunctional when expressed in Xenopus oocytes. However, both the surface expression and the current density of full-length TREK-1 were reduced by co-expression of TREK-1e. Live cell imaging in COS-7 cells transfected with GFP-tagged TREK-1e showed that this splice variant was retained in the endoplasmic reticulum (ER). Attachment of the C-terminus of TREK-1e to two different reporter proteins (Kir2.1 and CD8) led to a strong reduction in the surface expression of these fusion proteins. Progressive truncation of the C-terminus of TREK-1e in these reporter constructs revealed a critical region (amino acids 198 to 205) responsible for the intracellular retention. Mutagenesis experiments indicated that amino acids I204 and W205 are key residues mediating the ER retention of TREK-1e. Our results suggest that the TREK-1e splice variant may interfere with the vesicular traffic of full-length TREK-1 channels from the ER to the plasma membrane. Thus, TREK-1e might modulate the copy number of functional TREK-1 channels at the cell surface, providing a novel mechanism for fine tuning of TREK-1 currents.
Wiedmann F, Frey N, Schmidt C Cells. 2021; 10(11).
PMID: 34831137 PMC: 8616229. DOI: 10.3390/cells10112914.
Zhou Z, Yu X, Jiang B, Feng W, Tian Y, Liu Z eNeuro. 2021; 8(1).
PMID: 33509951 PMC: 7920537. DOI: 10.1523/ENEURO.0381-20.2020.
Clinical Importance of the Human Umbilical Artery Potassium Channels.
Lorigo M, Oliveira N, Cairrao E Cells. 2020; 9(9).
PMID: 32854241 PMC: 7565333. DOI: 10.3390/cells9091956.
Hughes S, Foster R, Peirson S, Hankins M Sci Rep. 2017; 7:46085.
PMID: 28443635 PMC: 5405414. DOI: 10.1038/srep46085.
Sodium permeable and "hypersensitive" TREK-1 channels cause ventricular tachycardia.
Decher N, Ortiz-Bonnin B, Friedrich C, Schewe M, Kiper A, Rinne S EMBO Mol Med. 2017; 9(4):403-414.
PMID: 28242754 PMC: 5376757. DOI: 10.15252/emmm.201606690.