Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing 100083, China.
College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing 100083, China.
Plant Physiol. 2020 Apr;182(4):2025-2034. doi: 10.1104/pp.19.01571. Epub 2020 Feb 13.
() is a mutant of the DNA2 homolog in Arabidopsis (), which was previously identified as being involved in DNA damage repair, cell cycle regulation, and meristem maintenance. A mutation at the 3' intron splice site of the 11th intron causes alternative splicing of this intron at two other sites, which results in frame shifts and premature stop codons. Here, we screened suppressors of to further study the function and regulatory networks of Three suppressors with wild-type-like phenotypes were obtained. Sequencing analysis results showed that each of the suppressors has a second mutation in that causes further alternative splicing of the intron and corrects the shifted reading frame with small insertions. Precursor mRNA sequence analysis and intron splice site evaluation results suggested that intron splicing was disturbed in the suppressors, and this switched the splice site, resulting in small insertions in the coding regions of JHS1. Structural analysis of JHS1 suggested that the insertions are in a disordered loop region of the DNA2 domain and do not seem to have much deleterious effect on the function of the protein. This work not only has implications for the evolution of protein sequences at exon junctions but also provides a strategy to study the mechanism of precursor mRNA splicing.
()是拟南芥()中 DNA2 同源物的突变体,先前被鉴定为参与 DNA 损伤修复、细胞周期调控和分生组织维持。第 11 内含子 3' 内含子剪接位点的突变导致该内含子在另外两个位点的选择性剪接,从而导致移码和提前终止密码子。在这里,我们筛选了以进一步研究的功能和调控网络。获得了三个具有野生型表型的抑制子。测序分析结果表明,每个抑制子在第二突变,导致内含子进一步的选择性剪接,并通过小插入纠正移位的阅读框。前体 mRNA 序列分析和内含子剪接位点评估结果表明,抑制子中的内含子剪接受到干扰,这改变了剪接位点,导致 JHS1 编码区的小插入。JHS1 的结构分析表明,插入位于 DNA2 结构域的无规卷曲环区,似乎对蛋白质功能没有太大的有害影响。这项工作不仅对exon 交界处的蛋白质序列进化有意义,而且为研究前体 mRNA 剪接机制提供了一种策略。