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The cohesin loader SCC2 contains a PHD finger that is required for meiosis in land plants

机译:Cohesin Loader SCC2含有植物植物中减数分裂所需的博士手指

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Cohesin, a multisubunit protein complex, is required for holding sister chromatids together during mitosis and meiosis. The recruitment of cohesin by the sister chromatid cohesion 2/4 (SCC2/4) complex has been extensively studied in Saccharomyces cerevisiae mitosis, but its role in mitosis and meiosis remains poorly understood in multicellular organisms, because complete loss-of-function of either gene causes embryonic lethality. Here, we identified a weak allele of Atscc2 ( Atscc2-5 ) that has only minor defects in vegetative development but exhibits a significant reduction in fertility. Cytological analyses of Atscc2-5 reveal multiple meiotic phenotypes including defects in chromosomal axis formation, meiosis-specific cohesin loading, homolog pairing and synapsis, and AtSPO11-1 -dependent double strand break repair. Surprisingly, even though AtSCC2 interacts with AtSCC4 in vitro and in vivo , meiosis-specific knockdown of AtSCC4 expression does not cause any meiotic defect, suggesting that the SCC2-SCC4 complex has divergent roles in mitosis and meiosis. SCC2 homologs from land plants have a unique plant homeodomain (PHD) motif not found in other species. We show that the AtSCC2 PHD domain can bind to the N terminus of histones and is required for meiosis but not mitosis. Taken together, our results provide evidence that unlike SCC2 in other organisms, SCC2 requires a functional PHD domain during meiosis in land plants.
机译:Cohesin是一种多层蛋白质复合物,需要在有丝分裂和减数分裂时将乳腺染色体持有。在酿酒酵母菌菌病菌症中广泛地研究了姐妹染色体凝聚力2/4(SCC2 / 4)复合物的募集,但其在多细胞生物体中的作用仍然仍然明显,因为它们的完全丧失了基因导致胚胎致死性。在这里,我们鉴定了ATSCC2(ATSCC2-5)的弱等位基因,其植物发育中具有轻微缺陷,但表现出生育率显着降低。 ATSCC2-5的细胞学分析揭示了多种减数分裂表型,包括染色体轴线形成,大学特异性休谷蛋白加载,同源物配对和突触,以及ATSPO11-1依赖双链断裂修复。令人惊讶的是,即使ATSCC2在体外和体内与ATSCC4与ATSCC4相互作用,ATSCC4表达的大学特异性敲低度都不会引起任何降低缺陷,表明SCC2-SCC4复合物在有丝分裂和减数分裂中具有不同的作用。来自土地植物的SCC2同源物具有独特的植物同性恋(PHD)图案在其他物种中未发现。我们表明ATSCC2 PHD结构域可以与组织末端的N末端结合,并且是减数分裂但没有有丝分裂所必需的。我们的结果提供了证据表明,与其他生物中的SCC2不同,SCC2需要在土地植物中减数分裂时的功能性博士学域。

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