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Chloroquine inhibits Ca2+ permeable ion channels-mediated Ca2+ signaling in primary B lymphocytes

Authors :
Yi-Fan Wu
Ping Zhao
Xi Luo
Jin-Chao Xu
Lu Xue
Qi Zhou
Mingrui Xiong
Jinhua Shen
Yong-Bo Peng
Meng-Fei Yu
Weiwei Chen
Liqun Ma
Qing-Hua Liu
Source :
Cell & Bioscience, Vol 7, Iss 1, Pp 1-5 (2017)
Publication Year :
2017
Publisher :
BMC, 2017.

Abstract

Abstract Background Chloroquine, a bitter tastant, inhibits Ca2+ signaling, resulting in suppression of B cell activation; however, the inhibitory mechanism remains unclear. Results In this study, thapsigargin (TG), but not caffeine, induced sustained intracellular Ca2+ increases in mouse splenic primary B lymphocytes, which were markedly inhibited by chloroquine. Under Ca2+-free conditions, TG elicited transient Ca2+ increases, which additionally elevated upon the restoration of 2 mM Ca2+. The former were from release of intracellular Ca2+ store and the latter from Ca2+ influx. TG-induced release was inhibited by 2-APB (an inhibitor of inositol-3-phosphate receptors, IP3Rs) and chloroquine, and TG-caused influx was inhibited by pyrazole (Pyr3, an inhibitor of transient receptor potential C3 (TRPC3) and stromal interaction molecule (STIM)/Orai channels) and chloroquine. Moreover, chloroquine also blocked Ca2+ increases induced by the engagement of B cell receptor (BCR) with anti-IgM. Conclusions These results indicate that chloroquine inhibits Ca2+ elevations in splenic B cells through inhibiting Ca2+ permeable IP3R and TRPC3 and/or STIM/Orai channels. These findings suggest that chloroquine would be a potent immunosuppressant.

Details

Language :
English
ISSN :
20453701
Volume :
7
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Cell & Bioscience
Publication Type :
Academic Journal
Accession number :
edsdoj.297406ead0784204bc5c6913c00d3cd0
Document Type :
article
Full Text :
https://doi.org/10.1186/s13578-017-0155-5