VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt

Poly-ADP-ribose (PAR) is a polymer of up to 400 ADP-ribose units synthesized by poly-ADP-ribose-polymerases (PARPs) and degraded by poly-ADP-ribose-glycohydrolase (PARG). Nuclear PAR modulates chromatin compaction, affecting nuclear functions (gene expression, DNA repair). Diverse defined PARP cytop...

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Main Authors: Laura Lafon-Hughes, Salomé C. Vilchez Larrea, Alejandra Kun, Silvia H. Fernández Villamil
Format: Article
Language:English
Published: PeerJ Inc. 2014-10-01
Series:PeerJ
Subjects:
PAR
Online Access:https://peerj.com/articles/617.pdf
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spelling doaj-463205f743084d8e8c6ee352b0da31092020-11-24T22:49:42ZengPeerJ Inc.PeerJ2167-83592014-10-012e61710.7717/peerj.617617VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion beltLaura Lafon-Hughes0Salomé C. Vilchez Larrea1Alejandra Kun2Silvia H. Fernández Villamil3Departamento de Genética, Instituto de Investigaciones Biológicas Clemente Estable (IIBCE), Montevideo, UruguayInstituto de Investigaciones en Ingeniería Genética y Biología Molecular “Dr. Héctor N. Torres”, Consejo Nacional de Investigaciones Científicas y Técnicas, Ciudad Autónoma de Buenos Aires, ArgentinaDepartamento de Proteínas y Ácidos Nucleicos, Instituto de Investigaciones Biológicas Clemente Estable (IIBCE), Montevideo, UruguayInstituto de Investigaciones en Ingeniería Genética y Biología Molecular “Dr. Héctor N. Torres”, Consejo Nacional de Investigaciones Científicas y Técnicas, Ciudad Autónoma de Buenos Aires, ArgentinaPoly-ADP-ribose (PAR) is a polymer of up to 400 ADP-ribose units synthesized by poly-ADP-ribose-polymerases (PARPs) and degraded by poly-ADP-ribose-glycohydrolase (PARG). Nuclear PAR modulates chromatin compaction, affecting nuclear functions (gene expression, DNA repair). Diverse defined PARP cytoplasmic allocation patterns contrast with the yet still imprecise PAR distribution and still unclear functions. Based on previous evidence from other models, we hypothesized that PAR could be present in epithelial cells where cadherin-based adherens junctions are linked with the actin cytoskeleton (constituting the adhesion belt). In the present work, we have examined through immunofluorescence and confocal microscopy, the subcellular localization of PAR in an epithelial monkey kidney cell line (VERO). PAR was distinguished colocalizing with actin and vinculin in the epithelial belt, a location that has not been previously reported. Actin filaments disruption with cytochalasin D was paralleled by PAR belt disruption. Conversely, PARP inhibitors 3-aminobenzamide, PJ34 or XAV 939, affected PAR belt synthesis, actin distribution, cell shape and adhesion. Extracellular calcium chelation displayed similar effects. Our results demonstrate the existence of PAR in a novel subcellular localization. An initial interpretation of all the available evidence points towards TNKS-1 as the most probable PAR belt architect, although TNKS-2 involvement cannot be discarded. Forthcoming research will test this hypothesis as well as explore the existence of the PAR belt in other epithelial cells and deepen into its functional implications.https://peerj.com/articles/617.pdfTankyrasePARPPARActinVinculinE-cadherin
collection DOAJ
language English
format Article
sources DOAJ
author Laura Lafon-Hughes
Salomé C. Vilchez Larrea
Alejandra Kun
Silvia H. Fernández Villamil
spellingShingle Laura Lafon-Hughes
Salomé C. Vilchez Larrea
Alejandra Kun
Silvia H. Fernández Villamil
VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt
PeerJ
Tankyrase
PARP
PAR
Actin
Vinculin
E-cadherin
author_facet Laura Lafon-Hughes
Salomé C. Vilchez Larrea
Alejandra Kun
Silvia H. Fernández Villamil
author_sort Laura Lafon-Hughes
title VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt
title_short VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt
title_full VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt
title_fullStr VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt
title_full_unstemmed VERO cells harbor a poly-ADP-ribose belt partnering their epithelial adhesion belt
title_sort vero cells harbor a poly-adp-ribose belt partnering their epithelial adhesion belt
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2014-10-01
description Poly-ADP-ribose (PAR) is a polymer of up to 400 ADP-ribose units synthesized by poly-ADP-ribose-polymerases (PARPs) and degraded by poly-ADP-ribose-glycohydrolase (PARG). Nuclear PAR modulates chromatin compaction, affecting nuclear functions (gene expression, DNA repair). Diverse defined PARP cytoplasmic allocation patterns contrast with the yet still imprecise PAR distribution and still unclear functions. Based on previous evidence from other models, we hypothesized that PAR could be present in epithelial cells where cadherin-based adherens junctions are linked with the actin cytoskeleton (constituting the adhesion belt). In the present work, we have examined through immunofluorescence and confocal microscopy, the subcellular localization of PAR in an epithelial monkey kidney cell line (VERO). PAR was distinguished colocalizing with actin and vinculin in the epithelial belt, a location that has not been previously reported. Actin filaments disruption with cytochalasin D was paralleled by PAR belt disruption. Conversely, PARP inhibitors 3-aminobenzamide, PJ34 or XAV 939, affected PAR belt synthesis, actin distribution, cell shape and adhesion. Extracellular calcium chelation displayed similar effects. Our results demonstrate the existence of PAR in a novel subcellular localization. An initial interpretation of all the available evidence points towards TNKS-1 as the most probable PAR belt architect, although TNKS-2 involvement cannot be discarded. Forthcoming research will test this hypothesis as well as explore the existence of the PAR belt in other epithelial cells and deepen into its functional implications.
topic Tankyrase
PARP
PAR
Actin
Vinculin
E-cadherin
url https://peerj.com/articles/617.pdf
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