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Two novel proteins, Dos1 and Dos2, interact with Rik1 to regulate heterochromatic RNA interference and histone modification

机译:两种新型蛋白质Dos1和Dos2与Rik1相互作用以调节异色RNA干扰和组蛋白修饰

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Background: Chromosomal behavior during mitosis and meiosis depends in part on heterochromatic modifications such as histone H3 lysine-9 methylation (H3K9me). In fission yeast, the Heterochromatin Protein 1 homolog Swi6 recognizes H3K9me, silences transcription, and retains cohesin at pericentromeric repeats. Heterochromatin formation also depends on processing of transcripts derived from centromeric repeats by the RNAi machinery. The DDB1 homolog, Rik1, and histone methyltransferase, CIr4, act in a complex to promote H3K9me. However, the mechanism underlying this interaction is poorly understood.Results: Using a cytological screen, we have identified two novel genes, dos1(+) and dos2(+), which are required for localization of Swi6. Deletion of either of these genes results in mitotic and meiotic chromosome missegregation, defects in mitotic centromeric cohesion and meiotic telomere clustering, and loss of heterochromatic silencing. Dos1 is predominantly located in the nucleus in a Dos2-dependent manner and directly interacts with Rik1. Each of these genes is required for the association of H3K9me with centromeric repeats, as well as for the production of small interfering RNAs.Conclusions: Dosl and Dos2 are required for the formation of heterochromatin in fission yeast. We hypothesize that the physical interaction between Dosl and Rik1 represents a role in regulating activity of the Rik1/ CIr4 complex. Dos2 contributes to this role by regulating Dosl localization. Our findings suggest a mechanism for recruitment of CIr4 in the RNAi-dependent heterochromatin pathway, in which Dos1 and Dos2 are essential.
机译:背景:有丝分裂和减数分裂过程中的染色体行为部分取决于异色修饰,例如组蛋白H3赖氨酸9甲基化(H3K9me)。在裂变酵母中,异染色质蛋白1的同系物Swi6识别H3K9me,使转录沉默,并在着丝粒中心重复处保留粘着素。异染色质的形成还取决于RNAi机制对着丝粒重复序列的转录产物的加工。 DDB1同源物Rik1和组蛋白甲基转移酶CIr4以复合物的形式促进H3K9me。然而,这种相互作用的机制尚不清楚。结果:通过细胞学筛选,我们确定了两个新基因,dos1(+)和dos2(+),这是Swi6定位所必需的。这些基因中任一个的缺失导致有丝分裂和减数分裂染色体错聚,有丝分裂着丝粒内聚力的缺陷和减数分裂端粒的聚集,以及异色沉默的丧失。 Dos1主要以Dos2依赖的方式位于细胞核中,并直接与Rik1相互作用。这些基因中的每一个对于H3K9me与着丝粒重复序列的结合以及小干扰RNA的产生都是必需的。结论:Dos1和Dos2是裂变酵母中异染色质形成的必需条件。我们假设Dosl和Rik1之间的物理相互作用代表在调节Rik1 / CIr4复合物的活性中的作用。 Dos2通过调节Dosl本地化来发挥这一作用。我们的发现表明在RNAi依赖的异染色质途径中募集CIr4的机制,其中Dos1和Dos2是必不可少的。

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