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DNA 转位酶 RAD5A 独立于其他主要的 DNA 修复途径发挥作用,并且在拟南芥中其 ATP 酶和 RING 结构域对于活性都是必需的。

The DNA translocase RAD5A acts independently of the other main DNA repair pathways, and requires both its ATPase and RING domain for activity in Arabidopsis thaliana.

机构信息

Botanical Institute, Karlsruhe Institute of Technology, Kaiserstr. 12, 76131, Karlsruhe, Germany.

出版信息

Plant J. 2017 Aug;91(4):725-740. doi: 10.1111/tpj.13602. Epub 2017 Jun 25.

Abstract

Multiple pathways exist to repair DNA damage induced by methylating and crosslinking agents in Arabidopsis thaliana. The SWI2/SNF2 translocase RAD5A, the functional homolog of budding yeast Rad5 that is required for the error-free branch of post-replicative repair, plays a surprisingly prominent role in the repair of both kinds of lesions in Arabidopsis. Here we show that both the ATPase domain and the ubiquitination function of the RING domain of the Arabidopsis protein are essential for the cellular response to different forms of DNA damage. To define the exact role of RAD5A within the complex network of DNA repair pathways, we crossed the rad5a mutant line with mutants of different known repair factors of Arabidopsis. We had previously shown that RAD5A acts independently of two main pathways of replication-associated DNA repair defined by the helicase RECQ4A and the endonuclease MUS81. The enhanced sensitivity of all double mutants tested in this study indicates that the repair of damaged DNA by RAD5A also occurs independently of nucleotide excision repair (AtRAD1), single-strand break repair (AtPARP1), as well as microhomology-mediated double-strand break repair (AtTEB). Moreover, RAD5A can partially complement for a deficient AtATM-mediated DNA damage response in plants, as the double mutant shows phenotypic growth defects.

摘要

在拟南芥中,存在多条修复由甲基化和交联剂诱导的 DNA 损伤的途径。SWI2/SNF2 易位酶 RAD5A 是芽殖酵母 Rad5 的功能同源物,对于复制后修复的无差错分支是必需的,它在拟南芥中两种类型损伤的修复中起着惊人的突出作用。在这里,我们表明,拟南芥蛋白的 ATP 酶结构域和 RING 结构域的泛素化功能对于细胞对不同形式的 DNA 损伤的反应都是必需的。为了定义 RAD5A 在 DNA 修复途径的复杂网络中的确切作用,我们将 rad5a 突变体与不同的已知拟南芥修复因子的突变体进行了杂交。我们之前曾表明,RAD5A 独立于由解旋酶 RECQ4A 和核酸内切酶 MUS81 定义的两种主要复制相关 DNA 修复途径发挥作用。在这项研究中测试的所有双突变体的增强敏感性表明,RAD5A 修复受损 DNA 也独立于核苷酸切除修复(AtRAD1)、单链断裂修复(AtPARP1)以及微同源介导的双链断裂修复(AtTEB)。此外,RAD5A 可以部分补偿植物中 AtATM 介导的 DNA 损伤反应的缺陷,因为双突变体表现出表型生长缺陷。

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