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   Cdc5-dependent asymmetric localization of Bfa1 fine-tunes timely mitotic exit  
   
نویسنده kim j. ,luo g. ,bahk y.y. ,song k.
منبع plos genetics - 2012 - دوره : 8 - شماره : 1
چکیده    In budding yeast,the major regulator of the mitotic exit network (men) is tem1,a gtpase,which is inhibited by the gtpase-activating protein (gap),bfa1/bub2. asymmetric bfa1 localization to the bud-directed spindle pole body (spb) during metaphase also controls mitotic exit,but the molecular mechanism and function of this localization are not well understood,particularly in unperturbed cells. we identified four novel cdc5 target residues within the bfa1 c-terminus: 452s,453s,454s,and 559s. a bfa1 mutant in which all of these residues had been changed to alanine (bfa1 4a) persisted on both spbs at anaphase and was hypo-phosphorylated,despite retaining its gap activity for tem1. a bfa1 phospho-mimetic mutant in which all of these residues were switched to aspartate (bfa1 4d) always localized asymmetrically to the spb. these observations demonstrate that asymmetric localization of bfa1 is tightly linked to its cdc5-dependent phosphorylation,but not to its gap activity. consistent with this,in kinase-defective cdc5-2 cells bfa1 was not phosphorylated and localized to both spbs,whereas bfa1 4d was asymmetrically localized. bfa1 4a cells progressed through anaphase normally but displayed delayed mitotic exit in unperturbed cell cycles,while bfa1 4d cells underwent mitotic exit with the same kinetics as wild-type cells. we suggest that cdc5 induces the asymmetric distribution of bfa1 to the bud-directed spb independently of bfa1 gap activity at anaphase and that bfa1 asymmetry fine-tunes the timing of men activation in unperturbed cell cycles. © 2012 kim et al.
آدرس department of biochemistry,college of biotechnology and life science,yonsei university,seoul, South Korea, department of biochemistry,college of biotechnology and life science,yonsei university,seoul, South Korea, department of biotechnology,konkuk university,chungju, South Korea, department of biochemistry,college of biotechnology and life science,yonsei university,seoul, South Korea
 
     
   
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