Literature DB >> 20381350

The Cdc42/Par6/aPKC polarity complex regulates apoptosis-induced compensatory proliferation in epithelia.

Stephen J Warner1, Hanako Yashiro, Gregory D Longmore.   

Abstract

BACKGROUND: In response to stress- or tissue-damage-induced apoptosis, unaffected epithelial cells undergo compensatory proliferation to maintain the integrity of the epithelium. Proximal signals regulating this response are not fully understood, but c-Jun N-terminal kinase (JNK) activity appears to be critical for both apoptosis and compensatory proliferation. Disruption of epithelial cell apical-basal polarity occurs in early cancer development and is often correlated with increased proliferation by means not fully characterized. We considered whether disruption of the various polarity complexes could provide signals identifying damaged epithelial cells and thus lead to apoptosis-induced compensatory proliferation.
RESULTS: We identify the Cdc42/Par6/atypical protein kinase C (aPKC) Par polarity complex as uniquely and specifically regulating apoptosis-induced compensatory proliferation in Drosophila epithelia. Genetic depletion of individual components or disruption of formation and localization of this complex, but not other polarity complexes, induces JNK-dependent apoptosis and JNK-dependent compensatory proliferation following radiation injury. When apoptosis execution is blocked, by p35 expression, Cdc42/Par6/aPKC-depleted tissues uniquely hyperproliferate, leading to tissue and organ overgrowth. Disruption of Cdc42/Par6/aPKC leads to activation of JNK through increased Rho1 and Rok activity and Rok's capacity to activate myosin but not F-actin.
CONCLUSIONS: We show that the Cdc42/Par6/aPKC polarity complex influences both a physiologic compensatory proliferation response after irradiation injury and a contrived compensatory non-cell-autonomous hyperproliferation response when cell-autonomous apoptosis, resulting from Cdc42/Par6/aPKC disruption, is inhibited. These results suggest the possibility that in cancer where apoptotic regulation is disrupted, loss of Cdc42/Par6/aPKC polarity complex organization or localization could contribute to tumor hyperproliferation and explain how polarity disruption contributes to tumor development.
Copyright © 2010 Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20381350      PMCID: PMC2910247          DOI: 10.1016/j.cub.2010.03.025

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  39 in total

1.  Compensatory proliferation induced by cell death in the Drosophila wing disc requires activity of the apical cell death caspase Dronc in a nonapoptotic role.

Authors:  Jun R Huh; Ming Guo; Bruce A Hay
Journal:  Curr Biol       Date:  2004-07-27       Impact factor: 10.834

2.  Apoptotic cells can induce compensatory cell proliferation through the JNK and the Wingless signaling pathways.

Authors:  Hyung Don Ryoo; Travis Gorenc; Hermann Steller
Journal:  Dev Cell       Date:  2004-10       Impact factor: 12.270

3.  The small GTP-binding proteins Rac1 and Cdc42 regulate the activity of the JNK/SAPK signaling pathway.

Authors:  O A Coso; M Chiariello; J C Yu; H Teramoto; P Crespo; N Xu; T Miki; J S Gutkind
Journal:  Cell       Date:  1995-06-30       Impact factor: 41.582

Review 4.  Apoptosome dysfunction in human cancer.

Authors:  K M Hajra; J R Liu
Journal:  Apoptosis       Date:  2004-11       Impact factor: 4.677

5.  Caspase inhibition during apoptosis causes abnormal signalling and developmental aberrations in Drosophila.

Authors:  Ainhoa Pérez-Garijo; Francisco A Martín; Ginés Morata
Journal:  Development       Date:  2004-10-20       Impact factor: 6.868

Review 6.  Epithelial polarity and proliferation control: links from the Drosophila neoplastic tumor suppressors.

Authors:  David Bilder
Journal:  Genes Dev       Date:  2004-08-15       Impact factor: 11.361

7.  Phosphorylation of RhoGDI by Pak1 mediates dissociation of Rac GTPase.

Authors:  Céline DerMardirossian; Andreas Schnelzer; Gary M Bokoch
Journal:  Mol Cell       Date:  2004-07-02       Impact factor: 17.970

8.  Selective activation of the JNK signaling cascade and c-Jun transcriptional activity by the small GTPases Rac and Cdc42Hs.

Authors:  A Minden; A Lin; F X Claret; A Abo; M Karin
Journal:  Cell       Date:  1995-06-30       Impact factor: 41.582

9.  The small GTP-binding protein RhoA regulates c-jun by a ROCK-JNK signaling axis.

Authors:  Maria Julia Marinissen; Mario Chiariello; Tamara Tanos; Ora Bernard; Shuh Narumiya; J Silvio Gutkind
Journal:  Mol Cell       Date:  2004-04-09       Impact factor: 17.970

10.  Expression of baculovirus P35 prevents cell death in Drosophila.

Authors:  B A Hay; T Wolff; G M Rubin
Journal:  Development       Date:  1994-08       Impact factor: 6.868

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  36 in total

Review 1.  Spreading the word: non-autonomous effects of apoptosis during development, regeneration and disease.

Authors:  Ainhoa Pérez-Garijo; Hermann Steller
Journal:  Development       Date:  2015-10-01       Impact factor: 6.868

2.  Crumbs is an essential regulator of cytoskeletal dynamics and cell-cell adhesion during dorsal closure in Drosophila.

Authors:  David Flores-Benitez; Elisabeth Knust
Journal:  Elife       Date:  2015-11-06       Impact factor: 8.140

Review 3.  Actin up for Hippo.

Authors:  Helena E Richardson
Journal:  EMBO J       Date:  2011-06-15       Impact factor: 11.598

Review 4.  Cdc42 in oncogenic transformation, invasion, and tumorigenesis.

Authors:  Kristy Stengel; Yi Zheng
Journal:  Cell Signal       Date:  2011-04-16       Impact factor: 4.315

5.  Par6B and atypical PKC regulate mitotic spindle orientation during epithelial morphogenesis.

Authors:  Joanne Durgan; Noriko Kaji; Dan Jin; Alan Hall
Journal:  J Biol Chem       Date:  2011-02-07       Impact factor: 5.157

6.  Scalloped and Yorkie are required for cell cycle re-entry of quiescent cells after tissue damage.

Authors:  Joy H Meserve; Robert J Duronio
Journal:  Development       Date:  2015-07-09       Impact factor: 6.868

7.  Live imaging of astrocyte responses to acute injury reveals selective juxtavascular proliferation.

Authors:  Sophia Bardehle; Martin Krüger; Felix Buggenthin; Julia Schwausch; Jovica Ninkovic; Hans Clevers; Hugo J Snippert; Fabian J Theis; Melanie Meyer-Luehmann; Ingo Bechmann; Leda Dimou; Magdalena Götz
Journal:  Nat Neurosci       Date:  2013-03-31       Impact factor: 24.884

8.  Impaired Hippo signaling promotes Rho1-JNK-dependent growth.

Authors:  Xianjue Ma; Yujun Chen; Wenyan Xu; Nana Wu; Maoquan Li; Ying Cao; Shian Wu; Qiutang Li; Lei Xue
Journal:  Proc Natl Acad Sci U S A       Date:  2015-01-12       Impact factor: 11.205

9.  JNK is antagonized to ensure the correct number of interommatidial cells pattern the Drosophila retina.

Authors:  Henry L Bushnell; Christina E Feiler; Kwami F Ketosugbo; Mark B Hellerman; Valerie L Nazzaro; Ruth I Johnson
Journal:  Dev Biol       Date:  2017-11-11       Impact factor: 3.582

Review 10.  Mechanisms of polarity protein expression control.

Authors:  Syed Mukhtar Ahmed; Ian G Macara
Journal:  Curr Opin Cell Biol       Date:  2016-04-16       Impact factor: 8.382

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