Literature DB >> 26470725

Integrin α5β1 and p53 convergent pathways in the control of anti-apoptotic proteins PEA-15 and survivin in high-grade glioma.

G Renner1, H Janouskova1, F Noulet1, V Koenig1, E Guerin2, S Bär3, J Nuesch3, F Rechenmacher4, S Neubauer4, H Kessler4, A-F Blandin1, L Choulier1, N Etienne-Selloum1, M Lehmann1, I Lelong-Rebel1, S Martin1, M Dontenwill1.   

Abstract

Integrin α5β1 expression is correlated with a worse prognosis in high-grade glioma. We previously unraveled a negative crosstalk between integrin α5β1 and p53 pathway, which was proposed to be part of the resistance of glioblastoma to chemotherapies. The restoration of p53 tumor-suppressor function is under intensive investigations for cancer therapy. However, p53-dependent apoptosis is not always achieved by p53-reactivating compounds such as Nutlin-3a, although full transcriptional activity of p53 could be obtained. Here we investigated whether integrin α5β1 functional inhibition or repression could sensitize glioma cells to Nutlin-3a-induced p53-dependent apoptosis. We discovered that α5β1 integrin-specific blocking antibodies or small RGD-like antagonists in association with Nutlin-3a triggered a caspase (Casp) 8/Casp 3-dependent strong apoptosis in glioma cells expressing a functional p53. We deciphered the molecular mechanisms involved and we showed the crucial role of two anti-apoptotic proteins, phosphoprotein enriched in astrocytes 15 (PEA-15) and survivin in glioma cell apoptotic outcome. PEA-15 is under α5β1 integrin/AKT (protein kinase B) control and survivin is a p53-repressed target. Moreover, interconnections between integrin and p53 pathways were revealed. Indeed PEA-15 repression by specific small-interfering RNA (siRNA)-activated p53 pathway to repress survivin and conversely survivin repression by specific siRNA decreased α5β1 integrin expression. This pro-apoptotic loop could be generalized to several glioma cell lines, whatever their p53 status, inasmuch PEA-15 and survivin protein levels were decreased. Our findings identify a novel mechanism whereby inhibition of α5β1 integrin and activation of p53 modulates two anti-apoptotic proteins crucially involved in the apoptotic answer of glioma cells. Importantly, our results suggest that high-grade glioma expressing high level of α5β1 integrin may benefit from associated therapies including integrin antagonists and repressors of survivin expression.

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Year:  2015        PMID: 26470725      PMCID: PMC4986636          DOI: 10.1038/cdd.2015.131

Source DB:  PubMed          Journal:  Cell Death Differ        ISSN: 1350-9047            Impact factor:   15.828


  69 in total

1.  Differentiation therapy exerts antitumor effects on stem-like glioma cells.

Authors:  Benito Campos; Feng Wan; Mohammad Farhadi; Aurélie Ernst; Felix Zeppernick; Katrin E Tagscherer; Rezvan Ahmadi; Jennifer Lohr; Christine Dictus; Georg Gdynia; Stephanie E Combs; Violaine Goidts; Burkhard M Helmke; Volker Eckstein; Wilfried Roth; Philipp Beckhove; Peter Lichter; Andreas Unterberg; Bernhard Radlwimmer; Christel Herold-Mende
Journal:  Clin Cancer Res       Date:  2010-05-04       Impact factor: 12.531

2.  Restoration of p53 function leads to tumour regression in vivo.

Authors:  Andrea Ventura; David G Kirsch; Margaret E McLaughlin; David A Tuveson; Jan Grimm; Laura Lintault; Jamie Newman; Elizabeth E Reczek; Ralph Weissleder; Tyler Jacks
Journal:  Nature       Date:  2007-01-24       Impact factor: 49.962

3.  Selective imaging of the angiogenic relevant integrins α5β1 and αvβ3.

Authors:  Stefanie Neubauer; Florian Rechenmacher; Ambros J Beer; Flavio Curnis; Karolin Pohle; Calogero D'Alessandria; Hans-Jürgen Wester; Ute Reuning; Angelo Corti; Markus Schwaiger; Horst Kessler
Journal:  Angew Chem Int Ed Engl       Date:  2013-09-20       Impact factor: 15.336

4.  Nemo-like kinase is critical for p53 stabilization and function in response to DNA damage.

Authors:  H-H Zhang; S-Z Li; Z-Y Zhang; X-M Hu; P-N Hou; L Gao; R-L Du; X-D Zhang
Journal:  Cell Death Differ       Date:  2014-06-13       Impact factor: 15.828

5.  Small molecule RITA binds to p53, blocks p53-HDM-2 interaction and activates p53 function in tumors.

Authors:  Natalia Issaeva; Przemyslaw Bozko; Martin Enge; Marina Protopopova; Lisette G G C Verhoef; Maria Masucci; Aladdin Pramanik; Galina Selivanova
Journal:  Nat Med       Date:  2004-11-21       Impact factor: 53.440

6.  Improved grading and survival prediction of human astrocytic brain tumors by artificial neural network analysis of gene expression microarray data.

Authors:  Lawrence P Petalidis; Anastasis Oulas; Magnus Backlund; Matthew T Wayland; Lu Liu; Karen Plant; Lisa Happerfield; Tom C Freeman; Panayiota Poirazi; V Peter Collins
Journal:  Mol Cancer Ther       Date:  2008-04-29       Impact factor: 6.261

Review 7.  Integrins in angiogenesis and lymphangiogenesis.

Authors:  Christie J Avraamides; Barbara Garmy-Susini; Judith A Varner
Journal:  Nat Rev Cancer       Date:  2008-05-22       Impact factor: 60.716

8.  Cilengitide combined with standard treatment for patients with newly diagnosed glioblastoma with methylated MGMT promoter (CENTRIC EORTC 26071-22072 study): a multicentre, randomised, open-label, phase 3 trial.

Authors:  Roger Stupp; Monika E Hegi; Thierry Gorlia; Sara C Erridge; James Perry; Yong-Kil Hong; Kenneth D Aldape; Benoit Lhermitte; Torsten Pietsch; Danica Grujicic; Joachim Peter Steinbach; Wolfgang Wick; Rafał Tarnawski; Do-Hyun Nam; Peter Hau; Astrid Weyerbrock; Martin J B Taphoorn; Chiung-Chyi Shen; Nalini Rao; László Thurzo; Ulrich Herrlinger; Tejpal Gupta; Rolf-Dieter Kortmann; Krystyna Adamska; Catherine McBain; Alba A Brandes; Joerg Christian Tonn; Oliver Schnell; Thomas Wiegel; Chae-Yong Kim; Louis Burt Nabors; David A Reardon; Martin J van den Bent; Christine Hicking; Andriy Markivskyy; Martin Picard; Michael Weller
Journal:  Lancet Oncol       Date:  2014-08-19       Impact factor: 41.316

9.  Multiple members of the mitogen-activated protein kinase family are necessary for PED/PEA-15 anti-apoptotic function.

Authors:  Gerolama Condorelli; Alessandra Trencia; Giovanni Vigliotta; Anna Perfetti; Umberto Goglia; Angela Cassese; Anna Maria Musti; Claudia Miele; Stefania Santopietro; Pietro Formisano; Francesco Beguinot
Journal:  J Biol Chem       Date:  2002-01-14       Impact factor: 5.157

10.  Activation of p53 by nutlin-3a induces apoptosis and cellular senescence in human glioblastoma multiforme.

Authors:  Ruth Villalonga-Planells; Llorenç Coll-Mulet; Fina Martínez-Soler; Esther Castaño; Juan-Jose Acebes; Pepita Giménez-Bonafé; Joan Gil; Avelina Tortosa
Journal:  PLoS One       Date:  2011-04-05       Impact factor: 3.240

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  27 in total

1.  αvβ3 Integrin Mediates Radioresistance of Prostate Cancer Cells through Regulation of Survivin.

Authors:  Tao Wang; Jiayi Huang; Mai Vue; Michael R Alavian; Hira Lal Goel; Dario C Altieri; Lucia R Languino; Thomas J FitzGerald
Journal:  Mol Cancer Res       Date:  2018-09-28       Impact factor: 5.852

Review 2.  The complex relationship between integrins and oncolytic herpes Simplex Virus 1 in high-grade glioma therapeutics.

Authors:  Kimberly Ann Rivera-Caraballo; Mitra Nair; Tae Jin Lee; Balveen Kaur; Ji Young Yoo
Journal:  Mol Ther Oncolytics       Date:  2022-06-06       Impact factor: 6.311

Review 3.  Adhering towards tumorigenicity: altered adhesion mechanisms in glioblastoma cancer stem cells.

Authors:  Soumya M Turaga; Justin D Lathia
Journal:  CNS Oncol       Date:  2016-09-12

4.  Gefitinib induces EGFR and α5β1 integrin co-endocytosis in glioblastoma cells.

Authors:  Anne-Florence Blandin; Elisabete Cruz Da Silva; Marie-Cécile Mercier; Oleksandr Glushonkov; Pascal Didier; Stéphane Dedieu; Cristophe Schneider; Jessica Devy; Nelly Etienne-Selloum; Monique Dontenwill; Laurence Choulier; Maxime Lehmann
Journal:  Cell Mol Life Sci       Date:  2020-11-05       Impact factor: 9.261

5.  An integrated transcriptomic and computational analysis for biomarker identification in human glioma.

Authors:  Wenli Xing; Chun Zeng
Journal:  Tumour Biol       Date:  2015-12-14

6.  Integrin-β4 is a novel transcriptional target of TAp73.

Authors:  Ningxia Xie; Polina Vikhreva; Margherita Annicchiarico-Petruzzelli; Ivano Amelio; Nicolai Barlev; Richard A Knight; Gerry Melino
Journal:  Cell Cycle       Date:  2018-02-08       Impact factor: 4.534

7.  p73 Regulates Primary Cortical Neuron Metabolism: a Global Metabolic Profile.

Authors:  Massimiliano Agostini; Maria Victoria Niklison-Chirou; Margherita Maria Annicchiarico-Petruzzelli; Sandro Grelli; Nicola Di Daniele; Ilias Pestlikis; Richard A Knight; Gerry Melino; Alessandro Rufini
Journal:  Mol Neurobiol       Date:  2017-05-06       Impact factor: 5.590

8.  Survivin overexpression is potentially associated with pituitary adenoma invasiveness.

Authors:  Xiangyi Kong; Shun Gong; Lijuan Su; Xinqi Cheng; Honglei Li; Tingting You; Yanguo Kong
Journal:  Oncotarget       Date:  2017-11-10

Review 9.  β1 Integrins as Therapeutic Targets to Disrupt Hallmarks of Cancer.

Authors:  Anne-Florence Blandin; Guillaume Renner; Maxime Lehmann; Isabelle Lelong-Rebel; Sophie Martin; Monique Dontenwill
Journal:  Front Pharmacol       Date:  2015-11-24       Impact factor: 5.810

Review 10.  Exploring the Role of RGD-Recognizing Integrins in Cancer.

Authors:  Markus Nieberler; Ute Reuning; Florian Reichart; Johannes Notni; Hans-Jürgen Wester; Markus Schwaiger; Michael Weinmüller; Andreas Räder; Katja Steiger; Horst Kessler
Journal:  Cancers (Basel)       Date:  2017-09-04       Impact factor: 6.639

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