植物凝聚素II是着丝粒和rDNA阵列之间正确的空间关系所必需的。

Takuya Sakamoto, Tomoya Sugiyama, Tomoe Yamashita, Sachihiro Matsunaga
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引用次数: 15

摘要

植物具有结构维持染色体(SMC)蛋白复合物内聚蛋白、凝聚蛋白和SMC5/6,它们在姐妹染色单体内聚、染色体凝聚和分离以及受损DNA修复等基本生物过程中起作用。最近,越来越多的证据表明,在一些生物体中,凝缩蛋白参与了间期染色质组织。在拟南芥(Arabidopsis thaliana)中,凝聚素II在整个间期都定位于细胞核中,被认为是保持着丝粒分离和染色质染色体臂组装所必需的。然而,凝缩蛋白II如何组织染色质结合仍不清楚。在这里,我们首先证明了凝缩蛋白II作为一种复合体的功能很可能是着丝粒分离所必需的。对rDNA阵列分布的分析表明,凝缩蛋白II对于着丝粒与rDNA阵列的结合也是必不可少的。凝缩蛋白II突变体中染色体轴向压实减少和基因组完整性受损与染色质组织的破坏无关。相反,在果蝇中,凝聚素II对染色体的轴向压实产生导致异源着丝粒分离的力。综上所述,我们的数据表明凝缩蛋白II在真核生物染色质组织中的功能是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Plant condensin II is required for the correct spatial relationship between centromeres and rDNA arrays.

Plant condensin II is required for the correct spatial relationship between centromeres and rDNA arrays.

Plant condensin II is required for the correct spatial relationship between centromeres and rDNA arrays.

Plant condensin II is required for the correct spatial relationship between centromeres and rDNA arrays.

Plants possess the structural maintenance of chromosome (SMC) protein complexes cohesin, condensin, and SMC5/6, which function in fundamental biological processes such as sister chromatid cohesion, chromosome condensation and segregation, and damaged DNA repair. Recently, increasing evidence in several organisms has suggested that condensin is involved in chromatin organizations during interphase. In Arabidopsis thaliana, condensin II is localized in the nucleus throughout interphase and is suggested to be required for keeping centromeres apart and the assembly of euchromatic chromosome arms. However, it remains unclear how condensin II organizes chromatin associations. Here, we first showed the high possibility that the function of condensin II as a complex is required for the disassociation of centromeres. Analysis of the rDNA array distribution revealed that condensin II is also indispensable for the association of centromeres with rDNA arrays. Reduced axial compaction of chromosomes and impaired genome integrity in condensin II mutants are not related to the disruption of chromatin organization. In contrast, the axial compaction of chromosomes by condensin II produces the force leading to the disassociation of heterologous centromeres in Drosophila melanogaster. Taken together, our data imply that the condensin II function in chromatin organization differs among eukaryotes.

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