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Suppression of scant identifies endos as a substrate of greatwall kinase and a negative regulator of protein phosphatase 2a in mitosis
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نویسنده
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rangone h. ,wegel e. ,gatt m.k. ,yeung e. ,flowers a. ,debski j. ,dadlez m. ,janssens v. ,carpenter a.t.c. ,glover d.m.
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منبع
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plos genetics - 2011 - دوره : 7 - شماره : 8
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چکیده
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Protein phosphatase 2a (pp2a) plays a major role in dephosphorylating the targets of the major mitotic kinase cdk1 at mitotic exit,yet how it is regulated in mitotic progression is poorly understood. here we show that mutations in either the catalytic or regulatory twins/b55 subunit of pp2a act as enhancers of gwl scant,a gain-of-function allele of the greatwall kinase gene that leads to embryonic lethality in drosophila when the maternal dosage of the mitotic kinase polo is reduced. we also show that heterozygous mutant endos alleles suppress heterozygous gwl scant; many more embryos survive. furthermore,heterozygous pp2a mutations make females heterozygous for the strong mutation polo 11 partially sterile,even in the absence of gwl scant. heterozygosity for an endos mutation suppresses this pp2a/polo 11 sterility. homozygous mutation or knockdown of endos leads to phenotypes suggestive of defects in maintaining the mitotic state. in accord with the genetic interactions shown by the gwl scant dominant mutant,the mitotic defects of endos knockdown in cultured cells can be suppressed by knockdown of either the catalytic or the twins/b55 regulatory subunits of pp2a but not by the other three regulatory b subunits of drosophila pp2a. greatwall phosphorylates endos at a single site,ser68,and this is essential for endos function. together these interactions suggest that greatwall and endos act to promote the inactivation of pp2a-twins/b55 in drosophila. we discuss the involvement of polo kinase in such a regulatory loop. © 2011 rangone et al.
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آدرس
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department of genetics,university of cambridge,cambridge, United Kingdom, department of genetics,university of cambridge,cambridge, United Kingdom, department of genetics,university of cambridge,cambridge,united kingdom,inscience communications,wolters kluwer,auckland, New Zealand, department of genetics,university of cambridge,cambridge,united kingdom,imperial college school of medicine,london, United Kingdom, department of genetics,university of cambridge,cambridge,united kingdom,department of biotechnology and chemical sciences,roosevelt university,chicago,il, United States, laboratory of mass spectrometry,institute of biochemistry and biophysics,warsaw, Poland, laboratory of mass spectrometry,institute of biochemistry and biophysics,warsaw, Poland, department of molecular cell biology,faculty of medicine,katholieke universiteit leuven,leuven, Belgium, department of genetics,university of cambridge,cambridge, United Kingdom, department of genetics,university of cambridge,cambridge, United Kingdom
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Authors
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