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Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells

Using a microinjection approach to study apical plasma membrane protein trafficking in hepatic cells, we found that specific inhibition of Vps34p, a class III phosphoinositide 3 (PI-3) kinase, nearly perfectly recapitulated the defects we reported for wortmannin-treated cells (Tuma, P.L., C.M. Finne...

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Autores principales: Tuma, Pamela L., Nyasae, Lydia K., Backer, Jonathan M., Hubbard, Ann L.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2150819/
https://www.ncbi.nlm.nih.gov/pubmed/11564757
http://dx.doi.org/10.1083/jcb.200105138
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author Tuma, Pamela L.
Nyasae, Lydia K.
Backer, Jonathan M.
Hubbard, Ann L.
author_facet Tuma, Pamela L.
Nyasae, Lydia K.
Backer, Jonathan M.
Hubbard, Ann L.
author_sort Tuma, Pamela L.
collection PubMed
description Using a microinjection approach to study apical plasma membrane protein trafficking in hepatic cells, we found that specific inhibition of Vps34p, a class III phosphoinositide 3 (PI-3) kinase, nearly perfectly recapitulated the defects we reported for wortmannin-treated cells (Tuma, P.L., C.M. Finnegan, J.-H Yi, and A.L. Hubbard. 1999. J. Cell Biol. 145:1089–1102). Both wortmannin and injection of inhibitory Vps34p antibodies led to the accumulation of resident apical proteins in enlarged prelysosomes, whereas transcytosing apical proteins and recycling basolateral receptors transiently accumulated in basolateral early endosomes. To understand how the Vps34p catalytic product, PI(3)P, was differentially regulating endocytosis from the two domains, we examined the PI(3)P binding protein early endosomal antigen 1 (EEA1). We determined that EEA1 distributed to two biochemically distinct endosomal populations: basolateral early endosomes and subapical endosomes. Both contained rab5, although the latter also contained late endosomal markers but was distinct from the transcytotic intermediate, the subapical compartment. When PI(3)P was depleted, EEA1 dissociated from basolateral endosomes, whereas it remained on subapical endosomes. From these results, we conclude that PI(3)P, via EEA1, regulates early steps in endocytosis from the basolateral surface in polarized WIF-B cells. However, PI(3)P must use different machinery in its regulation of the apical endocytic pathway, since later steps are affected by Vps34p inhibition.
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spelling pubmed-21508192008-05-01 Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells Tuma, Pamela L. Nyasae, Lydia K. Backer, Jonathan M. Hubbard, Ann L. J Cell Biol Article Using a microinjection approach to study apical plasma membrane protein trafficking in hepatic cells, we found that specific inhibition of Vps34p, a class III phosphoinositide 3 (PI-3) kinase, nearly perfectly recapitulated the defects we reported for wortmannin-treated cells (Tuma, P.L., C.M. Finnegan, J.-H Yi, and A.L. Hubbard. 1999. J. Cell Biol. 145:1089–1102). Both wortmannin and injection of inhibitory Vps34p antibodies led to the accumulation of resident apical proteins in enlarged prelysosomes, whereas transcytosing apical proteins and recycling basolateral receptors transiently accumulated in basolateral early endosomes. To understand how the Vps34p catalytic product, PI(3)P, was differentially regulating endocytosis from the two domains, we examined the PI(3)P binding protein early endosomal antigen 1 (EEA1). We determined that EEA1 distributed to two biochemically distinct endosomal populations: basolateral early endosomes and subapical endosomes. Both contained rab5, although the latter also contained late endosomal markers but was distinct from the transcytotic intermediate, the subapical compartment. When PI(3)P was depleted, EEA1 dissociated from basolateral endosomes, whereas it remained on subapical endosomes. From these results, we conclude that PI(3)P, via EEA1, regulates early steps in endocytosis from the basolateral surface in polarized WIF-B cells. However, PI(3)P must use different machinery in its regulation of the apical endocytic pathway, since later steps are affected by Vps34p inhibition. The Rockefeller University Press 2001-09-17 /pmc/articles/PMC2150819/ /pubmed/11564757 http://dx.doi.org/10.1083/jcb.200105138 Text en Copyright © 2001, The Rockefeller University Press 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.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Tuma, Pamela L.
Nyasae, Lydia K.
Backer, Jonathan M.
Hubbard, Ann L.
Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
title Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
title_full Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
title_fullStr Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
title_full_unstemmed Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
title_short Vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
title_sort vps34p differentially regulates endocytosis from the apical and basolateral domains in polarized hepatic cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2150819/
https://www.ncbi.nlm.nih.gov/pubmed/11564757
http://dx.doi.org/10.1083/jcb.200105138
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