Cargando…

Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms

BACKGROUND: Macropinocytosis, which is a constitutive cellular process of fluid and macromolecule uptake, is regulated by actin cytoskeleton rearrangements near the plasma membrane. Activation of Rac1, which is proposed to act upstream of the actin polymerization regulatory Wave 2 complex, has been...

Descripción completa

Detalles Bibliográficos
Autores principales: Dubielecka, Patrycja M., Cui, Ping, Xiong, Xiaoling, Hossain, Sajjad, Heck, Susanne, Angelov, Lyudmil, Kotula, Leszek
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2866655/
https://www.ncbi.nlm.nih.gov/pubmed/20479892
http://dx.doi.org/10.1371/journal.pone.0010430
_version_ 1782180933830443008
author Dubielecka, Patrycja M.
Cui, Ping
Xiong, Xiaoling
Hossain, Sajjad
Heck, Susanne
Angelov, Lyudmil
Kotula, Leszek
author_facet Dubielecka, Patrycja M.
Cui, Ping
Xiong, Xiaoling
Hossain, Sajjad
Heck, Susanne
Angelov, Lyudmil
Kotula, Leszek
author_sort Dubielecka, Patrycja M.
collection PubMed
description BACKGROUND: Macropinocytosis, which is a constitutive cellular process of fluid and macromolecule uptake, is regulated by actin cytoskeleton rearrangements near the plasma membrane. Activation of Rac1, which is proposed to act upstream of the actin polymerization regulatory Wave 2 complex, has been found to correlate with enhanced macropinocytosis. One of the components of the Wave 2 complex is Abi1. Multiple, alternatively spliced isoforms of Abi1 are expressed in mammalian cells, but the functional significance of the various isoforms is unknown. PRINCIPAL FINDINGS: Here, using flow cytometric assay analysis for Alexa Fluor 647, we demonstrate that Abi1 isoforms 2 and 3 differentially regulate macropinocytosis. LNCaP cells expressing isoform 3 had increased macropinocytic uptake that correlated with enhanced cell spreading and higher Rac1 activation in comparison to cells expressing isoform 2. Isoform 2 expressing cells had decreased macropinocytic uptake, but demonstrated greater sensitivity to Rac1 activation. Moreover, more isoform 2 was localized within the cytoplasm in comparison to isoform 3, which was more associated with the plasma membrane. Activated Rac1 was found to specifically bind to a site in exon 10 of isoform 2 in vitro. Because of alternative mRNA splicing, exon 10 is absent from isoform 3, precluding similar binding of activated Rac1. Both isoforms, however, bound to inactive Rac1 through the same non-exon 10 site. Thus, Abi1 isoform 3-containing Wave 2 complex exhibited a differential binding to activated vs. inactive Rac1, whereas isoform 2-containing Wave 2 complex bound activated or inactive Rac1 comparably. CONCLUSION: Based on these observations, we postulate that Abi1 isoforms differentially regulate macropinocytosis as a consequence of their different relative affinities for activated Rac1 in Wave 2 complex. These findings also raise the possibility that isoform-specific roles occur in other Abi1 functions.
format Text
id pubmed-2866655
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-28666552010-05-17 Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms Dubielecka, Patrycja M. Cui, Ping Xiong, Xiaoling Hossain, Sajjad Heck, Susanne Angelov, Lyudmil Kotula, Leszek PLoS One Research Article BACKGROUND: Macropinocytosis, which is a constitutive cellular process of fluid and macromolecule uptake, is regulated by actin cytoskeleton rearrangements near the plasma membrane. Activation of Rac1, which is proposed to act upstream of the actin polymerization regulatory Wave 2 complex, has been found to correlate with enhanced macropinocytosis. One of the components of the Wave 2 complex is Abi1. Multiple, alternatively spliced isoforms of Abi1 are expressed in mammalian cells, but the functional significance of the various isoforms is unknown. PRINCIPAL FINDINGS: Here, using flow cytometric assay analysis for Alexa Fluor 647, we demonstrate that Abi1 isoforms 2 and 3 differentially regulate macropinocytosis. LNCaP cells expressing isoform 3 had increased macropinocytic uptake that correlated with enhanced cell spreading and higher Rac1 activation in comparison to cells expressing isoform 2. Isoform 2 expressing cells had decreased macropinocytic uptake, but demonstrated greater sensitivity to Rac1 activation. Moreover, more isoform 2 was localized within the cytoplasm in comparison to isoform 3, which was more associated with the plasma membrane. Activated Rac1 was found to specifically bind to a site in exon 10 of isoform 2 in vitro. Because of alternative mRNA splicing, exon 10 is absent from isoform 3, precluding similar binding of activated Rac1. Both isoforms, however, bound to inactive Rac1 through the same non-exon 10 site. Thus, Abi1 isoform 3-containing Wave 2 complex exhibited a differential binding to activated vs. inactive Rac1, whereas isoform 2-containing Wave 2 complex bound activated or inactive Rac1 comparably. CONCLUSION: Based on these observations, we postulate that Abi1 isoforms differentially regulate macropinocytosis as a consequence of their different relative affinities for activated Rac1 in Wave 2 complex. These findings also raise the possibility that isoform-specific roles occur in other Abi1 functions. Public Library of Science 2010-05-10 /pmc/articles/PMC2866655/ /pubmed/20479892 http://dx.doi.org/10.1371/journal.pone.0010430 Text en Dubielecka et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dubielecka, Patrycja M.
Cui, Ping
Xiong, Xiaoling
Hossain, Sajjad
Heck, Susanne
Angelov, Lyudmil
Kotula, Leszek
Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms
title Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms
title_full Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms
title_fullStr Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms
title_full_unstemmed Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms
title_short Differential Regulation of Macropinocytosis by Abi1/Hssh3bp1 Isoforms
title_sort differential regulation of macropinocytosis by abi1/hssh3bp1 isoforms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2866655/
https://www.ncbi.nlm.nih.gov/pubmed/20479892
http://dx.doi.org/10.1371/journal.pone.0010430
work_keys_str_mv AT dubieleckapatrycjam differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms
AT cuiping differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms
AT xiongxiaoling differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms
AT hossainsajjad differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms
AT hecksusanne differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms
AT angelovlyudmil differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms
AT kotulaleszek differentialregulationofmacropinocytosisbyabi1hssh3bp1isoforms