BARP suppresses voltage-gated calcium channel activity and Ca2+-evoked exocytosis

Author:

Béguin Pascal12,Nagashima Kazuaki3,Mahalakshmi Ramasubbu N.1,Vigot Réjan2,Matsunaga Atsuko2,Miki Takafumi3,Ng Mei Yong1,Ng Yu Jin Alvin1,Lim Chiaw Hwee1,Tay Hock Soon1,Hwang Le-Ann1,Firsov Dmitri4,Tang Bor Luen5,Inagaki Nobuya3,Mori Yasuo3,Seino Susumu6,Launey Thomas2,Hunziker Walter15

Affiliation:

1. Epithelial Cell Biology Laboratory and Monoclonal Antibody Unit, Institute of Molecular and Cell Biology, Agency for Science, Technology and Research, Singapore 138673

2. Launey Research Unit for Molecular Neurocybernetics, RIKEN Brain Science Institute, Wako-shi, Saitama 351-0198, Japan

3. Department of Diabetes and Clinical Nutrition, Graduate School of Medicine; and Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering; Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan

4. Pharmacology and Toxicology Department, University of Lausanne, 1005 Lausanne, Switzerland

5. Department of Biochemistry and Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore 117599

6. Division of Cellular and Molecular Medicine, Kobe University Graduate School of Medicine, Chuo-ku, Kobe 650-0047, Japan

Abstract

Voltage-gated calcium channels (VGCCs) are key regulators of cell signaling and Ca2+-dependent release of neurotransmitters and hormones. Understanding the mechanisms that inactivate VGCCs to prevent intracellular Ca2+ overload and govern their specific subcellular localization is of critical importance. We report the identification and functional characterization of VGCC β-anchoring and -regulatory protein (BARP), a previously uncharacterized integral membrane glycoprotein expressed in neuroendocrine cells and neurons. BARP interacts via two cytosolic domains (I and II) with all Cavβ subunit isoforms, affecting their subcellular localization and suppressing VGCC activity. Domain I interacts at the α1 interaction domain–binding pocket in Cavβ and interferes with the association between Cavβ and Cavα1. In the absence of domain I binding, BARP can form a ternary complex with Cavα1 and Cavβ via domain II. BARP does not affect cell surface expression of Cavα1 but inhibits Ca2+ channel activity at the plasma membrane, resulting in the inhibition of Ca2+-evoked exocytosis. Thus, BARP can modulate the localization of Cavβ and its association with the Cavα1 subunit to negatively regulate VGCC activity.

Publisher

Rockefeller University Press

Subject

Cell Biology

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