Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase

Summary It has been reported that chloride–proton exchanger ClC-5 and vacuolar-type H+-ATPase are essential for endosomal acidification in the renal proximal cells. Here, we found that ClC-5 is expressed in the gastric parietal cells which secrete actively hydrochloric acid at the luminal region of...

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Main Authors: Yuji Takahashi, Takuto Fujii, Kyosuke Fujita, Takahiro Shimizu, Taiga Higuchi, Yoshiaki Tabuchi, Hisato Sakamoto, Ichiro Naito, Koji Manabe, Shinichi Uchida, Sei Sasaki, Akira Ikari, Kazuhiro Tsukada, Hideki Sakai
Format: Article
Language:English
Published: The Company of Biologists 2013-11-01
Series:Biology Open
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Online Access:http://bio.biologists.org/content/3/1/12
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spelling doaj-e014b0c1547841c2af3174adf66d8b7c2021-06-02T09:07:22ZengThe Company of BiologistsBiology Open2046-63902013-11-0131122110.1242/bio.2013620520136205Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPaseYuji Takahashi0Takuto Fujii1Kyosuke Fujita2Takahiro Shimizu3Taiga Higuchi4Yoshiaki Tabuchi5Hisato Sakamoto6Ichiro Naito7Koji Manabe8Shinichi Uchida9Sei Sasaki10Akira Ikari11Kazuhiro Tsukada12Hideki Sakai13 Department of Pharmaceutical Physiology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Department of Pharmaceutical Physiology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Department of Pharmaceutical Physiology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Department of Pharmaceutical Physiology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Department of Pharmaceutical Physiology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Life Science Research Center, University of Toyama, Toyama 930-0194, Japan School of Medicine, Kitasato University, Sagamihara 228-8555, Japan Faculty of Medicine, Okayama University, Okayama 700-8558, Japan Department of Internal Medicine, Shigei Medical Research Hospital, Okayama 701-0202, Japan Graduate School of Medicine, Tokyo Medical and Dental University, Tokyo 113-8519, Japan Graduate School of Medicine, Tokyo Medical and Dental University, Tokyo 113-8519, Japan Laboratory of Biochemistry, Gifu Pharmaceutical University, Gifu 501-1196, Japan Department of Surgery II, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Department of Pharmaceutical Physiology, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama 930-0194, Japan Summary It has been reported that chloride–proton exchanger ClC-5 and vacuolar-type H+-ATPase are essential for endosomal acidification in the renal proximal cells. Here, we found that ClC-5 is expressed in the gastric parietal cells which secrete actively hydrochloric acid at the luminal region of the gland, and that it is partially localized in the intracellular tubulovesicles in which gastric H+,K+-ATPase is abundantly expressed. ClC-5 was co-immunoprecipitated with H+,K+-ATPase in the lysate of tubulovesicles. The ATP-dependent uptake of 36Cl− into the vesicles was abolished by 2-methyl-8-(phenylmethoxy)imidazo[1,2-a]pyridine-3-acetonitrile (SCH28080), an inhibitor of H+,K+-ATPase, suggesting functional expression of ClC-5. In the tetracycline-regulated expression system of ClC-5 in the HEK293 cells stably expressing gastric H+,K+-ATPase, ClC-5 was co-immunoprecipitated with H+,K+-ATPase, but not with endogenous Na+,K+-ATPase. The SCH28080-sensitive 36Cl− transporting activity was observed in the ClC-5-expressing cells, but not in the ClC-5-non-expressing cells. The mutant (E211A-ClC-5), which has no H+ transport activity, did not show the SCH28080-sensitive 36Cl− transport. On the other hand, both ClC-5 and its mutant (E211A) significantly increased the activity of H+,K+-ATPase. Our results suggest that ClC-5 and H+,K+-ATPase are functionally associated and that they may contribute to gastric acid secretion.http://bio.biologists.org/content/3/1/12ClC-5H+,K+-ATPaseGastric acidTubulovesicleParietal cell
collection DOAJ
language English
format Article
sources DOAJ
author Yuji Takahashi
Takuto Fujii
Kyosuke Fujita
Takahiro Shimizu
Taiga Higuchi
Yoshiaki Tabuchi
Hisato Sakamoto
Ichiro Naito
Koji Manabe
Shinichi Uchida
Sei Sasaki
Akira Ikari
Kazuhiro Tsukada
Hideki Sakai
spellingShingle Yuji Takahashi
Takuto Fujii
Kyosuke Fujita
Takahiro Shimizu
Taiga Higuchi
Yoshiaki Tabuchi
Hisato Sakamoto
Ichiro Naito
Koji Manabe
Shinichi Uchida
Sei Sasaki
Akira Ikari
Kazuhiro Tsukada
Hideki Sakai
Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase
Biology Open
ClC-5
H+,K+-ATPase
Gastric acid
Tubulovesicle
Parietal cell
author_facet Yuji Takahashi
Takuto Fujii
Kyosuke Fujita
Takahiro Shimizu
Taiga Higuchi
Yoshiaki Tabuchi
Hisato Sakamoto
Ichiro Naito
Koji Manabe
Shinichi Uchida
Sei Sasaki
Akira Ikari
Kazuhiro Tsukada
Hideki Sakai
author_sort Yuji Takahashi
title Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase
title_short Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase
title_full Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase
title_fullStr Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase
title_full_unstemmed Functional coupling of chloride–proton exchanger ClC-5 to gastric H+,K+-ATPase
title_sort functional coupling of chloride–proton exchanger clc-5 to gastric h+,k+-atpase
publisher The Company of Biologists
series Biology Open
issn 2046-6390
publishDate 2013-11-01
description Summary It has been reported that chloride–proton exchanger ClC-5 and vacuolar-type H+-ATPase are essential for endosomal acidification in the renal proximal cells. Here, we found that ClC-5 is expressed in the gastric parietal cells which secrete actively hydrochloric acid at the luminal region of the gland, and that it is partially localized in the intracellular tubulovesicles in which gastric H+,K+-ATPase is abundantly expressed. ClC-5 was co-immunoprecipitated with H+,K+-ATPase in the lysate of tubulovesicles. The ATP-dependent uptake of 36Cl− into the vesicles was abolished by 2-methyl-8-(phenylmethoxy)imidazo[1,2-a]pyridine-3-acetonitrile (SCH28080), an inhibitor of H+,K+-ATPase, suggesting functional expression of ClC-5. In the tetracycline-regulated expression system of ClC-5 in the HEK293 cells stably expressing gastric H+,K+-ATPase, ClC-5 was co-immunoprecipitated with H+,K+-ATPase, but not with endogenous Na+,K+-ATPase. The SCH28080-sensitive 36Cl− transporting activity was observed in the ClC-5-expressing cells, but not in the ClC-5-non-expressing cells. The mutant (E211A-ClC-5), which has no H+ transport activity, did not show the SCH28080-sensitive 36Cl− transport. On the other hand, both ClC-5 and its mutant (E211A) significantly increased the activity of H+,K+-ATPase. Our results suggest that ClC-5 and H+,K+-ATPase are functionally associated and that they may contribute to gastric acid secretion.
topic ClC-5
H+,K+-ATPase
Gastric acid
Tubulovesicle
Parietal cell
url http://bio.biologists.org/content/3/1/12
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