β-COP Regulates TWIK1/TREK1 Heterodimeric Channel-Mediated Passive Conductance in Astrocytes

Authors
Kim, Seong-SeopBae, YeonjuKwon, OsungKwon, Seung-HaeSeo, Jong BokHwang, Eun MiPark, Jae-Yong
Issue Date
2022-10
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Cells, v.11, no.20
Abstract
Mature astrocytes are characterized by a K+ conductance (passive conductance) that changes with a constant slope with voltage, which is involved in K+ homeostasis in the brain. Recently, we reported that the tandem of pore domains in a weak inward rectifying K+ channel (TWIK1 or KCNK1) and TWIK-related K+ channel 1 (TREK1 or KCNK2) form heterodimeric channels that mediate passive conductance in astrocytes. However, little is known about the binding proteins that regulate the function of the TWIK1/TREK1 heterodimeric channels. Here, we found that beta-coat protein (COP) regulated the surface expression and activity of the TWIK1/TREK1 heterodimeric channels in astrocytes. beta-COP binds directly to TREK1 but not TWIK1 in a heterologous expression system. However, beta-COP also interacts with the TWIK1/TREK1 heterodimeric channel in a TREK1 dependent manner and enhances the surface expression of the heterodimeric channel in astrocytes. Consequently, it regulates TWIK1/TREK1 heterodimeric channel-mediated passive conductance in astrocytes in the mouse brain. Taken together, these results suggest that beta-COP is a potential regulator of astrocytic passive conductance in the brain.
Keywords
ENDOPLASMIC-RETICULUM; SURFACE EXPRESSION; PROTEIN; TREK-1; TRAFFICKING; TRANSPORT; RECEPTOR; CELLS; beta-COP; protein-protein interaction; TREK1; TWIK1; astrocytes; passive conductance
URI
https://pubs.kist.re.kr/handle/201004/114458
DOI
10.3390/cells11203322
Appears in Collections:
KIST Article > 2022
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