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回文重复结构的结构参数决定了二级结构的核酸酶攻击的特异性。

Structural parameters of palindromic repeats determine the specificity of nuclease attack of secondary structures.

机构信息

School of Biological Sciences and Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GE 30332, USA.

Department of Biology and Rosenstiel Basic Medical Sciences Research Center, Waltham, MA 02454-9110, USA.

出版信息

Nucleic Acids Res. 2021 Apr 19;49(7):3932-3947. doi: 10.1093/nar/gkab168.

Abstract

Palindromic sequences are a potent source of chromosomal instability in many organisms and are implicated in the pathogenesis of human diseases. In this study, we investigate which nucleases are responsible for cleavage of the hairpin and cruciform structures and generation of double-strand breaks at inverted repeats in Saccharomyces cerevisiae. We demonstrate that the involvement of structure-specific nucleases in palindrome fragility depends on the distance between inverted repeats and their transcriptional status. The attack by the Mre11 complex is constrained to hairpins with loops <9 nucleotides. This restriction is alleviated upon RPA depletion, indicating that RPA controls the stability and/or formation of secondary structures otherwise responsible for replication fork stalling and DSB formation. Mus81-Mms4 cleavage of cruciforms occurs at divergently but not convergently transcribed or nontranscribed repeats. Our study also reveals the third pathway for fragility at perfect and quasi-palindromes, which involves cruciform resolution during the G2 phase of the cell cycle.

摘要

回文序列是许多生物中染色体不稳定性的一个重要来源,与人类疾病的发病机制有关。在这项研究中,我们研究了哪些核酸内切酶负责在酿酒酵母中发夹和十字结构的切割以及反向重复序列处双链断裂的产生。我们证明,结构特异性核酸内切酶在回文序列脆性中的参与取决于反向重复序列之间的距离及其转录状态。Mre11 复合物的攻击仅限于环长 <9 个核苷酸的发夹。当 RPA 耗尽时,这种限制得到缓解,表明 RPA 控制着二级结构的稳定性和/或形成,否则这些二级结构会导致复制叉停滞和 DSB 形成。Mus81-Mms4 对十字结构的切割发生在转录方向相反但不相同或非转录重复序列上。我们的研究还揭示了完美和拟回文序列脆性的第三种途径,该途径涉及细胞周期 G2 期的十字结构的解析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3184/8053094/8acf474eb7b2/gkab168fig1.jpg

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