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Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling

Macropinocytosis is differentiated from other types of endocytosis by its unique susceptibility to inhibitors of Na(+)/H(+) exchange. Yet, the functional relationship between Na(+)/H(+) exchange and macropinosome formation remains obscure. In A431 cells, stimulation by EGF simultaneously activated m...

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Detalles Bibliográficos
Autores principales: Koivusalo, Mirkka, Welch, Christopher, Hayashi, Hisayoshi, Scott, Cameron C., Kim, Moshe, Alexander, Todd, Touret, Nicolas, Hahn, Klaus M., Grinstein, Sergio
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2828922/
https://www.ncbi.nlm.nih.gov/pubmed/20156964
http://dx.doi.org/10.1083/jcb.200908086
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author Koivusalo, Mirkka
Welch, Christopher
Hayashi, Hisayoshi
Scott, Cameron C.
Kim, Moshe
Alexander, Todd
Touret, Nicolas
Hahn, Klaus M.
Grinstein, Sergio
author_facet Koivusalo, Mirkka
Welch, Christopher
Hayashi, Hisayoshi
Scott, Cameron C.
Kim, Moshe
Alexander, Todd
Touret, Nicolas
Hahn, Klaus M.
Grinstein, Sergio
author_sort Koivusalo, Mirkka
collection PubMed
description Macropinocytosis is differentiated from other types of endocytosis by its unique susceptibility to inhibitors of Na(+)/H(+) exchange. Yet, the functional relationship between Na(+)/H(+) exchange and macropinosome formation remains obscure. In A431 cells, stimulation by EGF simultaneously activated macropinocytosis and Na(+)/H(+) exchange, elevating cytosolic pH and stimulating Na(+) influx. Remarkably, although inhibition of Na(+)/H(+) exchange by amiloride or HOE-694 obliterated macropinocytosis, neither cytosolic alkalinization nor Na(+) influx were required. Instead, using novel probes of submembranous pH, we detected the accumulation of metabolically generated acid at sites of macropinocytosis, an effect counteracted by Na(+)/H(+) exchange and greatly magnified when amiloride or HOE-694 were present. The acidification observed in the presence of the inhibitors did not alter receptor engagement or phosphorylation, nor did it significantly depress phosphatidylinositol-3-kinase stimulation. However, activation of the GTPases that promote actin remodelling was found to be exquisitely sensitive to the submembranous pH. This sensitivity confers to macropinocytosis its unique susceptibility to inhibitors of Na(+)/H(+) exchange.
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spelling pubmed-28289222010-08-22 Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling Koivusalo, Mirkka Welch, Christopher Hayashi, Hisayoshi Scott, Cameron C. Kim, Moshe Alexander, Todd Touret, Nicolas Hahn, Klaus M. Grinstein, Sergio J Cell Biol Research Articles Macropinocytosis is differentiated from other types of endocytosis by its unique susceptibility to inhibitors of Na(+)/H(+) exchange. Yet, the functional relationship between Na(+)/H(+) exchange and macropinosome formation remains obscure. In A431 cells, stimulation by EGF simultaneously activated macropinocytosis and Na(+)/H(+) exchange, elevating cytosolic pH and stimulating Na(+) influx. Remarkably, although inhibition of Na(+)/H(+) exchange by amiloride or HOE-694 obliterated macropinocytosis, neither cytosolic alkalinization nor Na(+) influx were required. Instead, using novel probes of submembranous pH, we detected the accumulation of metabolically generated acid at sites of macropinocytosis, an effect counteracted by Na(+)/H(+) exchange and greatly magnified when amiloride or HOE-694 were present. The acidification observed in the presence of the inhibitors did not alter receptor engagement or phosphorylation, nor did it significantly depress phosphatidylinositol-3-kinase stimulation. However, activation of the GTPases that promote actin remodelling was found to be exquisitely sensitive to the submembranous pH. This sensitivity confers to macropinocytosis its unique susceptibility to inhibitors of Na(+)/H(+) exchange. The Rockefeller University Press 2010-02-22 /pmc/articles/PMC2828922/ /pubmed/20156964 http://dx.doi.org/10.1083/jcb.200908086 Text en © 2010 Koivusalo et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.jcb.org/misc/terms.shtml). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Research Articles
Koivusalo, Mirkka
Welch, Christopher
Hayashi, Hisayoshi
Scott, Cameron C.
Kim, Moshe
Alexander, Todd
Touret, Nicolas
Hahn, Klaus M.
Grinstein, Sergio
Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling
title Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling
title_full Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling
title_fullStr Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling
title_full_unstemmed Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling
title_short Amiloride inhibits macropinocytosis by lowering submembranous pH and preventing Rac1 and Cdc42 signaling
title_sort amiloride inhibits macropinocytosis by lowering submembranous ph and preventing rac1 and cdc42 signaling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2828922/
https://www.ncbi.nlm.nih.gov/pubmed/20156964
http://dx.doi.org/10.1083/jcb.200908086
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