>
Fa   |   Ar   |   En
   A General G1/S-Phase Cell-Cycle Control Module in the Flowering Plant Arabidopsis thaliana  
   
نویسنده zhao x. ,harashima h. ,dissmeyer n. ,pusch s. ,weimer a.k. ,bramsiepe j. ,bouyer d. ,rademacher s. ,nowack m.k. ,novak b. ,sprunck s. ,schnittger a.
منبع plos genetics - 2012 - دوره : 8 - شماره : 8
چکیده    The decision to replicate its dna is of crucial importance for every cell and,in many organisms,is decisive for the progression through the entire cell cycle. a comparison of animals versus yeast has shown that,although most of the involved cell-cycle regulators are divergent in both clades,they fulfill a similar role and the overall network topology of g1/s regulation is highly conserved. using germline development as a model system,we identified a regulatory cascade controlling entry into s phase in the flowering plant arabidopsis thaliana,which,as a member of the plantae supergroup,is phylogenetically only distantly related to opisthokonts such as yeast and animals. this module comprises the arabidopsis homologs of the animal transcription factor e2f,the plant homolog of the animal transcriptional repressor retinoblastoma (rb)-related 1 (rbr1),the plant-specific f-box protein f-box-like 17 (fbl17),the plant specific cyclin-dependent kinase (cdk) inhibitors krps,as well as cdka;1,the plant homolog of the yeast and animal cdc2+/cdk1 kinases. our data show that the principle of a double negative wiring of rb proteins is highly conserved,likely representing a universal mechanism in eukaryotic cell-cycle control. however,this negative feedback of rb proteins is differently implemented in plants as it is brought about through a quadruple negative regulation centered around the f-box protein fbl17 that mediates the degradation of cdk inhibitors but is itself directly repressed by rb. biomathematical simulations and subsequent experimental confirmation of computational predictions revealed that this regulatory circuit can give rise to hysteresis highlighting the here identified dosage sensitivity of cdk inhibitors in this network. © 2012 zhao et al.
آدرس department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg, France, department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg,france,trinationales institut für pflanzenforschung,strasbourg, France, department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg,france,leibniz institute of plant biochemistry (ipb),halle (saale), Germany, unigruppe am max-planck-institut für pflanzenzü chtungsforschung,lehrstuhl für botanik iii,universität zu köln,köln,germany,deutsches krebsforschungszentrum (dkfz),heidelberg, Germany, department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg, France, department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg, France, department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg, France, cell biology and plant biochemistry,university of regensburg,regensburg,germany,lehrstuhl für pflanzenzüchtung,wissenschaftszentrum weihenstephan,technische universität münchen,freising, Germany, department of plant systems biology,vib,gent,belgium,department of plant biotechnology and bioinformatics,ghent university,gent, Belgium, oxford centre for integrative systems biology,department of biochemistry,university of oxford,oxford, United Kingdom, cell biology and plant biochemistry,university of regensburg,regensburg, Germany, department of molecular mechanisms of phenotypic plasticity,institut de biologie moléculaire des plantes,centre national de la recherche scientifique,université de strasbourg,strasbourg,france,trinationales institut für pflanzenforschung,strasbourg,france,unigruppe am max-planck-institut für pflanzenzü chtungsforschung,lehrstuhl für botanik iii,universität zu köln,köln, Germany
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved