Ca2+-Activated K+ Channel KCa3.1 as a Therapeutic Target for Immune Disorders
Author:
Affiliation:
1. Department of Pharmacology, Graduate School of Medical Sciences, Nagoya City University
Publisher
Pharmaceutical Society of Japan
Subject
Pharmaceutical Science,Pharmacology,General Medicine
Link
https://www.jstage.jst.go.jp/article/bpb/41/8/41_b18-00078/_pdf
Reference65 articles.
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3. 3) Sun X, Zaydman MA, Cui J. Regulation of voltage-activated K+ channel gating by transmembrane β subunits. Front. Pharmacol., 3, 63 (2012).
4. 4) Li Q, Yan J. Modulation of BK channel function by auxiliary beta and gamma subunits. Int. Rev. Neurobiol., 128, 51–90 (2016).
5. 5) Eil R, Vodnala SK, Clever D, Klebanoff CA, Sukumar M, Pan JH, Palmer DC, Gros A, Yamamoto TN, Patel SJ, Guittard GC, Yu Z, Carbonaro V, Okkenhaug K, Schrump DS, Linehan WM, Roychoudhuri R, Restifo NP. Ionic immune suppression within the tumour microenvironment limits T cell effector function. Nature, 537, 539–543 (2016).
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