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      Two different specific JNK activators are required to trigger apoptosis or compensatory proliferation in response to Rbf1 in Drosophila

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          ABSTRACT

          The Jun Kinase (JNK) signaling pathway responds to diverse stimuli by appropriate and specific cellular responses such as apoptosis, differentiation or proliferation. The mechanisms that mediate this specificity remain largely unknown. The core of this signaling pathway, composed of a JNK protein and a JNK kinase (JNKK), can be activated by various putative JNKK kinases (JNKKK) which are themselves downstream of different adaptor proteins. A proposed hypothesis is that the JNK pathway specific response lies in the combination of a JNKKK and an adaptor protein upstream of the JNKK. We previously showed that the Drosophila homolog of pRb (Rbf1) and a mutant form of Rbf1 (Rbf1 D253A) have JNK-dependent pro-apoptotic properties. Rbf1 D253A is also able to induce a JNK-dependent abnormal proliferation. Here, we show that Rbf1-induced apoptosis triggers proliferation which depends on the JNK pathway activation. Taking advantage of these phenotypes, we investigated the JNK signaling involved in either Rbf1-induced apoptosis or in proliferation in response to Rbf1-induced apoptosis. We demonstrated that 2 different JNK pathways involving different adaptor proteins and kinases are involved in Rbf1-apoptosis ( i.e. Rac1-dTak1-dMekk1-JNK pathway) and in proliferation in response to Rbf1-induced apoptosis ( i.e., dTRAF1-Slipper-JNK pathway). Using a transient induction of rbf1, we show that Rbf1-induced apoptosis activates a compensatory proliferation mechanism which also depends on Slipper and dTRAF1. Thus, these 2 proteins seem to be key players of compensatory proliferation in Drosophila.

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          Author and article information

          Journal
          Cell Cycle
          Cell Cycle
          KCCY
          Cell Cycle
          Taylor & Francis
          1538-4101
          1551-4005
          2016
          29 January 2016
          : 15
          : 2
          : 283-294
          Affiliations
          [a ] Université de Versailles Saint-Quentin-en-Yvelines, Laboratoire de Génétique et Biologie Cellulaire , EA4589, Montigny-le-Bretonneux; France
          [b ] Ecole Pratique des Hautes Etudes, Laboratoire de Génétique Moléculaire et Physiologique , Montigny-le-Bretonneux, France
          Author notes
          CONTACT Isabelle Guénal; isabelle.guenal@ 123456uvsq.fr

          Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/kccy.

          Supplemental material data for this article can be accessed on the publisher's website.

          Article
          PMC4825841 PMC4825841 4825841 1100776
          10.1080/15384101.2015.1100776
          4825841
          26825229
          741a995c-03a7-41d0-a207-1d18a9088dee
          © 2016 Taylor & Francis Group, LLC
          History
          : 15 July 2015
          : 9 September 2015
          : 22 September 2015
          Page count
          Figures: 7, Tables: 3, References: 35, Pages: 12
          Categories
          Report

          Rbf1,compensatory proliferation,dTRAF1,JNK,Rac1,Apoptosis
          Rbf1, compensatory proliferation, dTRAF1, JNK, Rac1, Apoptosis

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