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KMID : 0811720160200020213
Korean Journal of Physiology & Pharmacology
2016 Volume.20 No. 2 p.213 ~ p.220
Mitochondrial calcium uniporter inhibition attenuates mouse bone marrow-derived mast cell degranulation induced by beta-1,3-glucan
Dang Van Cuong

Kim Hyoung-Kyu
Jubert Marquez
Kim Na-Ri
Ko Kyung-Soo
Rhee Byoung-Doo
Han Jin
Abstract
Mast cells are primary mediators of allergic inflammation. Beta-1,3- glucan (BG) protects against infection and shock by activating immune cells. Activation of the BG receptor induces an increase in intracellular Ca2+, which may induce exocytosis. However, little is known about the precise mechanisms underlying BG activation of immune cells and the possible role of mitochondria in this process. The present study examined whether BG induced mast cell degranulation, and evaluated the role of calcium transients during mast cell activation. Our investigation focused on the role of the mitochondrial calcium uniporter (MCU) in BG-induced degranulation. Black mouse (C57) bone marrow-derived mast cells were stimulated with 0.5 ¥ìg/ml BG, 100 ¥ìg/ml peptidoglycan (PGN), or 10 ¥ìM A23187 (calcium ionophore), and dynamic changes in cytosolic and mitochondrial calcium and membrane potential were monitored. BG-induced mast cell degranulation occurred in a time-dependent manner, and was significantly reduced under calcium-free conditions. Ruthenium red, a mitochondrial Ca2+ uniporter blocker, significantly reduced mast cell degranulation induced by BG, PGN, and A23187. These results suggest that the mitochondrial Ca2+ uniporter has an important regulatory role in BG-induced mast cell degranulation.
KEYWORD
Beta-1, 3-glucan, Mast cell degranulation, Mitochondrial calcium uniporter
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