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Control of Drosophila endocycles by E2F and CRL4(Cdt2)

Endocycles are variant cell cycles comprised of DNA Synthesis (S)- and Gap (G)- phases but lacking mitosis(1,2). Such cycles facilitate post-mitotic growth in many invertebrate and plant cells, and are so ubiquitous that they may account for up to half the world’s biomass(3,4). DNA replication in en...

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Autores principales: Zielke, Norman, Kim, Kerry J., Tran, Vuong, Shibutani, Shusaku T., Bravo, Maria-Jose, Nagarajan, Sabarish, van Straaten, Monique, Woods, Brigitte, von Dassow, George, Rottig, Carmen, Lehner, Christian F., Grewal, Savraj, Duronio, Robert J., Edgar, Bruce A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3330263/
https://www.ncbi.nlm.nih.gov/pubmed/22037307
http://dx.doi.org/10.1038/nature10579
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author Zielke, Norman
Kim, Kerry J.
Tran, Vuong
Shibutani, Shusaku T.
Bravo, Maria-Jose
Nagarajan, Sabarish
van Straaten, Monique
Woods, Brigitte
von Dassow, George
Rottig, Carmen
Lehner, Christian F.
Grewal, Savraj
Duronio, Robert J.
Edgar, Bruce A.
author_facet Zielke, Norman
Kim, Kerry J.
Tran, Vuong
Shibutani, Shusaku T.
Bravo, Maria-Jose
Nagarajan, Sabarish
van Straaten, Monique
Woods, Brigitte
von Dassow, George
Rottig, Carmen
Lehner, Christian F.
Grewal, Savraj
Duronio, Robert J.
Edgar, Bruce A.
author_sort Zielke, Norman
collection PubMed
description Endocycles are variant cell cycles comprised of DNA Synthesis (S)- and Gap (G)- phases but lacking mitosis(1,2). Such cycles facilitate post-mitotic growth in many invertebrate and plant cells, and are so ubiquitous that they may account for up to half the world’s biomass(3,4). DNA replication in endocycling Drosophila cells is triggered by Cyclin E/Cyclin Dependent Kinase 2 (CycE/Cdk2), but this kinase must be inactivated during each G-phase to allow the assembly of pre-Replication Complexes (preRCs) for the next S-phase(5,6). How CycE/Cdk2 is periodically silenced to allow re-replication has not been established. Here, using genetic tests in parallel with computational modeling, we show that Drosophila’s endocycles are driven by a molecular oscillator in which the E2F1 transcription factor promotes CycE expression and S-phase initiation, S-phase then activates the CRL4(Cdt2) ubiquitin ligase, and this in turn mediates the destruction of E2F1(7). We propose that it is the transient loss of E2F1 during S-phases that creates the window of low Cdk activity required for preRC formation. In support of this model over-expressed E2F1 accelerated endocycling, whereas a stabilized variant of E2F1 blocked endocycling by de-regulating target genes including CycE, as well as Cdk1 and mitotic Cyclins. Moreover, we find that altering cell growth by changing nutrition or TOR signaling impacts E2F1 translation, thereby making endocycle progression growth-dependent. Many of the regulatory interactions essential to this novel cell cycle oscillator are conserved in animals and plants(1,2,8), suggesting that elements of this mechanism act in most growth-dependent cell cycles.
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spelling pubmed-33302632012-06-01 Control of Drosophila endocycles by E2F and CRL4(Cdt2) Zielke, Norman Kim, Kerry J. Tran, Vuong Shibutani, Shusaku T. Bravo, Maria-Jose Nagarajan, Sabarish van Straaten, Monique Woods, Brigitte von Dassow, George Rottig, Carmen Lehner, Christian F. Grewal, Savraj Duronio, Robert J. Edgar, Bruce A. Nature Article Endocycles are variant cell cycles comprised of DNA Synthesis (S)- and Gap (G)- phases but lacking mitosis(1,2). Such cycles facilitate post-mitotic growth in many invertebrate and plant cells, and are so ubiquitous that they may account for up to half the world’s biomass(3,4). DNA replication in endocycling Drosophila cells is triggered by Cyclin E/Cyclin Dependent Kinase 2 (CycE/Cdk2), but this kinase must be inactivated during each G-phase to allow the assembly of pre-Replication Complexes (preRCs) for the next S-phase(5,6). How CycE/Cdk2 is periodically silenced to allow re-replication has not been established. Here, using genetic tests in parallel with computational modeling, we show that Drosophila’s endocycles are driven by a molecular oscillator in which the E2F1 transcription factor promotes CycE expression and S-phase initiation, S-phase then activates the CRL4(Cdt2) ubiquitin ligase, and this in turn mediates the destruction of E2F1(7). We propose that it is the transient loss of E2F1 during S-phases that creates the window of low Cdk activity required for preRC formation. In support of this model over-expressed E2F1 accelerated endocycling, whereas a stabilized variant of E2F1 blocked endocycling by de-regulating target genes including CycE, as well as Cdk1 and mitotic Cyclins. Moreover, we find that altering cell growth by changing nutrition or TOR signaling impacts E2F1 translation, thereby making endocycle progression growth-dependent. Many of the regulatory interactions essential to this novel cell cycle oscillator are conserved in animals and plants(1,2,8), suggesting that elements of this mechanism act in most growth-dependent cell cycles. 2011-10-30 /pmc/articles/PMC3330263/ /pubmed/22037307 http://dx.doi.org/10.1038/nature10579 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Zielke, Norman
Kim, Kerry J.
Tran, Vuong
Shibutani, Shusaku T.
Bravo, Maria-Jose
Nagarajan, Sabarish
van Straaten, Monique
Woods, Brigitte
von Dassow, George
Rottig, Carmen
Lehner, Christian F.
Grewal, Savraj
Duronio, Robert J.
Edgar, Bruce A.
Control of Drosophila endocycles by E2F and CRL4(Cdt2)
title Control of Drosophila endocycles by E2F and CRL4(Cdt2)
title_full Control of Drosophila endocycles by E2F and CRL4(Cdt2)
title_fullStr Control of Drosophila endocycles by E2F and CRL4(Cdt2)
title_full_unstemmed Control of Drosophila endocycles by E2F and CRL4(Cdt2)
title_short Control of Drosophila endocycles by E2F and CRL4(Cdt2)
title_sort control of drosophila endocycles by e2f and crl4(cdt2)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3330263/
https://www.ncbi.nlm.nih.gov/pubmed/22037307
http://dx.doi.org/10.1038/nature10579
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