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Cytosolic domain regulates the calcium sensitivity and surface expression of BEST1 channels in the HEK293 cells
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- Title
- Cytosolic domain regulates the calcium sensitivity and surface expression of BEST1 channels in the HEK293 cells
- Issued Date
- 2023-02
- Citation
- Kim, Kwon Woo. (2023-02). Cytosolic domain regulates the calcium sensitivity and surface expression of BEST1 channels in the HEK293 cells. BMB Reports, 56(3), 172–177. doi: 10.5483/BMBRep.2022-0170
- Type
- Article
- Author Keywords
- Bestrophin ; Ca2+-dependent activation ; Functional modulation ; Surface expression ; Whole-cell recording
- Keywords
- BESTROPHIN CL-CHANNELS ; FAMILY ; ASTROCYTES ; ACTIVATION
- ISSN
- 1976-6696
- Abstract
-
BEST family is a class of Ca2+-activated Cl-channels evolutionary well conserved from bacteria to human. The human BEST paralogs (BEST1-BEST4) share significant amino acid sequence homology in the N-terminal region, which forms the transmembrane helicases and contains the direct calcium-binding site, Ca2+-clasp. But the cytosolic C-terminal region is less conserved in the paralogs. Interestingly, this domain-specific sequence conservation is also found in the BEST1 orthologs. However, the functional role of the C-terminal region in the BEST channels is still poorly understood. Thus, we aimed to understand the functional role of the C-terminal region in the human and mouse BEST1 channels by using electrophysiological recordings. We found that the calcium-dependent activation of BEST1 channels can be modulated by the C-terminal region. The C-terminal deletion hBEST1 reduced the Ca2+- dependent current activation and the hBEST1-mBEST1 chimera showed a significantly reduced calcium sensitivity to hBEST1 in the HEK293 cells. And the C-terminal domain could regulate cellular expression and plasma membrane targeting of BEST1 channels. Our results can provide a basis for understanding the C-terminal roles in the structure-function of BEST family proteins. [BMB Reports 2023; 56(3): 172-177] © 2023 by the The Korean Society for Biochemistry and Molecular Biology
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- Publisher
- 생화학분자생물학회
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