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Physical Review Letters|March 3, 2023
Giant Density of States Enhancement Driven by a Zero-Mode Landau Level in Semimetallic Black Phosphorus under PressureTakuto Fujii, Yusuke Nakai, Michihiro Hirata, et al.Journal of Cellular Physiology|May 7, 2020
Impaired actin filaments decrease cisplatin sensitivity via dysfunction of volume-sensitive Cl<sup>-</sup> channels in human epidermoid carcinoma cellsTakahiro Shimizu, Takuto Fujii, Hironao Ohtake, et al.FEBS Open Bio|September 15, 2017
The asparagine 533 residue in the outer pore loop region of the mouse PKD2L1 channel is essential for its voltage-dependent inactivationTakahiro Shimizu, Taiga Higuchi, Toshihiro Toba, et al.European Journal of Pharmacology|February 25, 2026
Iguratimod suppresses volume-sensitive outwardly rectifying anion channels via arachidonic acid accumulationTakahiro Shimizu, Shiho Sumiyoshi, Kyosuke Fujita, et al.European Journal of Pharmacology|May 8, 2010
Increase in ouabain-sensitive K+-ATPase activity in hepatocellular carcinoma by overexpression of Na+, K+-ATPase alpha 3-isoformKazuto Shibuya, Junya Fukuoka, Takuto Fujii, et al.Biochimica Et Biophysica Acta|March 1, 2016
Positive regulation of the enzymatic activity of gastric H(+),K(+)-ATPase by sialylation of its β-subunitTakuto Fujii, Midori Watanabe, Takahiro Shimizu, et al.European Journal of Pharmacology|August 17, 2015
Inhibition of gastric H+,K+-ATPase by 4-(2-butyl-6,7-dichloro-2-cyclopentylindan-1-on-5-yl)oxybutyric acid (DCPIB), an inhibitor of volume-regulated anion channelTakuto Fujii, Yuji Takahashi, Hiroshi Takeshima, et al.The Journal of Biological Chemistry|April 12, 2008
Involvement of the H3O+-Lys-164 -Gln-161-Glu-345 charge transfer pathway in proton transport of gastric H+,K+-ATPaseMagotoshi Morii, Masashi Yamauchi, Tomohiko Ichikawa, et al.The Journal of Biological Chemistry|November 6, 2008
Functional association between K+-Cl- cotransporter-4 and H+,K+-ATPase in the apical canalicular membrane of gastric parietal cellsTakuto Fujii, Yuji Takahashi, Akira Ikari, et al.Biological & Pharmaceutical Bulletin|May 11, 2025
Ion Channel Function of Human TMEM16F Is Associated with Phospholipid Transport through Its Subunit CavityTeppei Kageyama, Takahiro Shimizu, Kanon Shirai, et al.Pageof 6