Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.

The components of the Scrib/Dlg tumour suppressor complex have complementary roles in Drosophila and loss of both proteins is a common event in many different human tumours. However no studies have directly addressed the respective contributions of loss of hScrib and hDlg in the same human cell back...

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Main Authors: Paola Massimi, Patrizia Zori, Sally Roberts, Lawrence Banks
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3391271?pdf=render
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spelling doaj-0692e5cd9f4d47ae9e08426dc5d4efcf2020-11-25T01:56:27ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0177e4027910.1371/journal.pone.0040279Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.Paola MassimiPatrizia ZoriSally RobertsLawrence BanksThe components of the Scrib/Dlg tumour suppressor complex have complementary roles in Drosophila and loss of both proteins is a common event in many different human tumours. However no studies have directly addressed the respective contributions of loss of hScrib and hDlg in the same human cell background to cellular phenotypes associated with cell transformation. In human HaCaT keratinocytes we show that removal of hScrib greatly reduces cell-cell contact and cell-matrix interactions, and promotes an invasive phenotype. Conversely, in cells lacking hDlg1 cell-cell contacts are maintained and there are decreases in both cell growth and invasion. However, hDlg-depleted cells show increased resistance to a specialized form of apoptosis known as anoikis, to which cells lacking hScrib are highly susceptible. Thus whilst it has been widely assumed that hScrib and hDlg have complementary roles, these studies in fact demonstrate that hScrib and hDlg1 have distinct and opposing functions in human keratinocytes.http://europepmc.org/articles/PMC3391271?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Paola Massimi
Patrizia Zori
Sally Roberts
Lawrence Banks
spellingShingle Paola Massimi
Patrizia Zori
Sally Roberts
Lawrence Banks
Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.
PLoS ONE
author_facet Paola Massimi
Patrizia Zori
Sally Roberts
Lawrence Banks
author_sort Paola Massimi
title Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.
title_short Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.
title_full Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.
title_fullStr Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.
title_full_unstemmed Differential regulation of cell-cell contact, invasion and anoikis by hScrib and hDlg in keratinocytes.
title_sort differential regulation of cell-cell contact, invasion and anoikis by hscrib and hdlg in keratinocytes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The components of the Scrib/Dlg tumour suppressor complex have complementary roles in Drosophila and loss of both proteins is a common event in many different human tumours. However no studies have directly addressed the respective contributions of loss of hScrib and hDlg in the same human cell background to cellular phenotypes associated with cell transformation. In human HaCaT keratinocytes we show that removal of hScrib greatly reduces cell-cell contact and cell-matrix interactions, and promotes an invasive phenotype. Conversely, in cells lacking hDlg1 cell-cell contacts are maintained and there are decreases in both cell growth and invasion. However, hDlg-depleted cells show increased resistance to a specialized form of apoptosis known as anoikis, to which cells lacking hScrib are highly susceptible. Thus whilst it has been widely assumed that hScrib and hDlg have complementary roles, these studies in fact demonstrate that hScrib and hDlg1 have distinct and opposing functions in human keratinocytes.
url http://europepmc.org/articles/PMC3391271?pdf=render
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AT sallyroberts differentialregulationofcellcellcontactinvasionandanoikisbyhscribandhdlginkeratinocytes
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