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RTR复合体伙伴RMI2和DNA解旋酶RTEL1均独立参与维持拟南芥45S rDNA重复序列的稳定性。

The RTR Complex Partner RMI2 and the DNA Helicase RTEL1 Are Both Independently Involved in Preserving the Stability of 45S rDNA Repeats in Arabidopsis thaliana.

作者信息

Röhrig Sarah, Schröpfer Susan, Knoll Alexander, Puchta Holger

机构信息

Botanical Institute II, Karlsruhe Institute of Technology, Karlsruhe, Germany.

出版信息

PLoS Genet. 2016 Oct 19;12(10):e1006394. doi: 10.1371/journal.pgen.1006394. eCollection 2016 Oct.

Abstract

The stability of repetitive sequences in complex eukaryotic genomes is safeguarded by factors suppressing homologues recombination. Prominent in this is the role of the RTR complex. In plants, it consists of the RecQ helicase RECQ4A, the topoisomerase TOP3α and RMI1. Like mammals, but not yeast, plants harbor an additional complex partner, RMI2. Here, we demonstrate that, in Arabidopsis thaliana, RMI2 is involved in the repair of aberrant replication intermediates in root meristems as well as in intrastrand crosslink repair. In both instances, RMI2 is involved independently of the DNA helicase RTEL1. Surprisingly, simultaneous loss of RMI2 and RTEL1 leads to loss of male fertility. As both the RTR complex and RTEL1 are involved in suppression of homologous recombination (HR), we tested the efficiency of HR in the double mutant rmi2-2 rtel1-1 and found a synergistic enhancement (80-fold). Searching for natural target sequences we found that RTEL1 is required for stabilizing 45S rDNA repeats. In the double mutant with rmi2-2 the number of 45S rDNA repeats is further decreased sustaining independent roles of both factors in this process. Thus, loss of suppression of HR does not only lead to a destabilization of rDNA repeats but might be especially deleterious for tissues undergoing multiple cell divisions such as the male germline.

摘要

复杂真核生物基因组中重复序列的稳定性由抑制同源重组的因子来保障。其中突出的是RTR复合体的作用。在植物中,它由RecQ解旋酶RECQ4A、拓扑异构酶TOP3α和RMI1组成。与哺乳动物一样,但与酵母不同,植物还有一个额外的复合体伙伴RMI2。在这里,我们证明,在拟南芥中,RMI2参与根分生组织中异常复制中间体的修复以及链内交联修复。在这两种情况下,RMI2的参与都独立于DNA解旋酶RTEL1。令人惊讶的是,RMI2和RTEL1同时缺失会导致雄性育性丧失。由于RTR复合体和RTEL1都参与抑制同源重组(HR),我们测试了双突变体rmi2-2 rtel1-1中HR的效率,发现有协同增强(80倍)。在寻找天然靶序列时,我们发现RTEL1是稳定45S rDNA重复序列所必需的。在与rmi2-2的双突变体中,45S rDNA重复序列的数量进一步减少,这表明这两个因子在这个过程中发挥独立作用。因此,HR抑制的丧失不仅会导致rDNA重复序列的不稳定,而且可能对经历多次细胞分裂的组织(如雄性生殖系)特别有害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3c1/5070779/658aca482a99/pgen.1006394.g001.jpg

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