Direct interaction and functional coupling between voltage-gated Ca(v)1.3 Ca2+ channel and GABA(B) receptor subunit 2
- Authors
 - Park, Hye-Won; Jung, Hana; Choi, Kee-Hyun; Baik, Ja-Hyun; Rhim, Hyewhon
 
- Issue Date
 - 2010-08-04
 
- Publisher
 - ELSEVIER SCIENCE BV
 
- Citation
 - FEBS LETTERS, v.584, no.15, pp.3317 - 3322
 
- Abstract
 - Although Ca(v)1.2 and Ca(v)1.3 are two subtypes of L-type Ca2+ channels expressed in the CNS, functions of Ca(v)1.3 have not been well elucidated compared to Ca(v)1.2. Here, we found that Ca(v)1.3-NT associates with GABA(B)R2-CT using yeast two-hybrid, GST pull-down and co-immunoprecipitation assays. We also demonstrated co-localization of Ca(v)1.3 and GABA(B)R2 in HEK293 cells and cultured hippocampal neurons. Whole-cell patch-clamp and Ca2+-imaging experiments revealed that activation of GABA(B)R increases Ca(v)1.3 currents and intracellular Ca2+ via Ca(v)1.3, but not Ca(v)1.2. These results show a physical and functional interaction between Ca(v)1.3 and GABA(B)R, suggesting the potential pivotal roles of Ca(v)1.3 in the CNS. Structured summary: MINT-7975667: Ca(v)1.3 (uniprotkb:P27732) physically interacts (MI:0915) with GABA(B)R2 (uniprotkb:088871) by two hybrid (MI:0018) MINT-7975740: Ca(v)1.3 (uniprotkb:P27732) and GABA(B)R2 (uniprotkb:075899) colocalize (MI:0403) by fluorescence microscopy (MI:0416) MINT-7966007, MINT-7966016: Ca(v)1.3 (uniprotkb:P27732) physically interacts (MI :0915) with GABA(B)R2 (uniprotkb:088871) by anti bait coimmunoprecipitation (MI:0006) MINT-7975712, MINT-7975691: Ca(v)1.3 (uniprotkb:P27732) physically interacts (MI:0915) with GABA(B)R2 (uniprotkb:088871) by pull down (MI:0096) MINT-7966026: GABA(B)R2 (uniprotkb:088871) and Ca(v)1.3 (uniprotkb:P27732) colocalize (MI:0403) by fluorescence microscopy (MI:0416) (C) 2010 Federation of European Biochemical Societies. Published by Elsevier B.V. All rights reserved.
 
- Keywords
 - FACILITATE L-TYPE; CALCIUM-CHANNELS; ACTIVATE; NUCLEUS; NEURONS; FACILITATE L-TYPE; CALCIUM-CHANNELS; ACTIVATE; NUCLEUS; NEURONS; L-Type Ca2+ channels; Baclofen; Whole-cell patch-clamp; Intracellular Ca2+
 
- ISSN
 - 0014-5793
 
- URI
 - https://pubs.kist.re.kr/handle/201004/131183
 
- DOI
 - 10.1016/j.febslet.2010.07.014
 
- Appears in Collections:
 - KIST Article > 2010
 
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