首页> 外文期刊>Frontiers in Plant Science >Involvement of the Cohesin Cofactor PDS5 (SPO76) During Meiosis and DNA Repair in Arabidopsis thaliana
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Involvement of the Cohesin Cofactor PDS5 (SPO76) During Meiosis and DNA Repair in Arabidopsis thaliana

机译:粘蛋白辅因子PDS5(SPO76)在拟南芥的减数分裂和DNA修复过程中的参与

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Maintenance and precise regulation of sister chromatid cohesion is essential for faithful chromosome segregation during mitosis and meiosis. Cohesin cofactors contribute to cohesin dynamics and interact with cohesin complexes during cell cycle. One of these, PDS5, also known as SPO76, is essential during mitosis and meiosis in several organisms and also plays a role in DNA repair. In yeast, the complex Wapl-Pds5 controls cohesion maintenance and colocalizes with cohesin complexes into chromosomes. In Arabidopsis , AtWAPL proteins are essential during meiosis, however, the role of AtPDS5 remains to be ascertained. Here we have isolated mutants for each of the five AtPDS5 genes (A–E) and obtained, after different crosses between them, double, triple, and even quadruple mutants ( Atpds5a Atpds5b Atpds5c Atpds5e ). Depletion of AtPDS5 proteins has a weak impact on meiosis, but leads to severe effects on development, fertility, somatic homologous recombination (HR) and DNA repair. Furthermore, this cohesin cofactor could be important for the function of the AtSMC5/AtSMC6 complex. Contrarily to its function in other species, our results suggest that AtPDS5 is dispensable during the meiotic division of Arabidopsis , although it plays an important role in DNA repair by HR.
机译:维持和精确调节姐妹染色单体的内聚力对于在有丝分裂和减数分裂过程中忠实的染色体分离至关重要。粘着蛋白辅因子在细胞周期期间促进粘着蛋白动力学并与粘着蛋白复合物相互作用。其中之一,PDS5,也称为SPO76,在几种生物的有丝分裂和减数分裂过程中是必不可少的,并且在DNA修复中也起作用。在酵母中,复合物Wapl-Pds5控制内聚力维持,并与内聚蛋白复合物共定位到染色体中。在拟南芥中,AtWAPL蛋白在减数分裂过程中至关重要,但是,AtPDS5的作用尚待确定。在这里,我们为五个AtPDS5基因(A–E)中的每个基因分离了突变体,并在它们之间经过不同的杂交后获得了两倍,三倍甚至四倍的突变体(Atpds5a Atpds5b Atpds5c Atpds5e)。 AtPDS5蛋白质的消耗对减数分裂影响较弱,但对发育,繁殖力,体细胞同源重组(HR)和DNA修复产生严重影响。此外,这种粘着蛋白辅因子对于AtSMC5 / AtSMC6复合体的功能可能很重要。与它在其他物种中的功能相反,我们的结果表明AtPDS5在拟南芥的减数分裂过程中是可有可无的,尽管它在HR修复DNA中起着重要作用。

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