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拮抗相互作用可保护斑马鱼中遗传和表观遗传信息的有丝分裂传播。

Antagonistic interactions safeguard mitotic propagation of genetic and epigenetic information in zebrafish.

机构信息

Department of Developmental Immunology, Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.

Department of Medical Biochemistry and Biophysics, Umeå University, Umeå, Sweden.

出版信息

Commun Biol. 2024 Jan 5;7(1):31. doi: 10.1038/s42003-023-05692-3.

Abstract

The stability of cellular phenotypes in developing organisms depends on error-free transmission of epigenetic and genetic information during mitosis. Methylation of cytosine residues in genomic DNA is a key epigenetic mark that modulates gene expression and prevents genome instability. Here, we report on a genetic test of the relationship between DNA replication and methylation in the context of the developing vertebrate organism instead of cell lines. Our analysis is based on the identification of hypomorphic alleles of dnmt1, encoding the DNA maintenance methylase Dnmt1, and pole1, encoding the catalytic subunit of leading-strand DNA polymerase epsilon holoenzyme (Pole). Homozygous dnmt1 mutants exhibit genome-wide DNA hypomethylation, whereas the pole1 mutation is associated with increased DNA methylation levels. In dnmt1/pole1 double-mutant zebrafish larvae, DNA methylation levels are restored to near normal values, associated with partial rescue of mutant-associated transcriptional changes and phenotypes. Hence, a balancing antagonism between DNA replication and maintenance methylation buffers against replicative errors contributing to the robustness of vertebrate development.

摘要

在发育生物体中,细胞表型的稳定性取决于有丝分裂过程中表观遗传和遗传信息的无差错传递。基因组 DNA 中胞嘧啶残基的甲基化是一种关键的表观遗传标记,它调节基因表达并防止基因组不稳定。在这里,我们报告了一个在发育脊椎动物生物体内而不是细胞系中测试 DNA 复制和甲基化之间关系的遗传实验。我们的分析基于鉴定 dnmt1 的功能减弱等位基因,dnmt1 编码 DNA 维持甲基转移酶 Dnmt1,以及 pole1,编码前导链 DNA 聚合酶 epsilon 全酶的催化亚基 (Pole)。dnmt1 纯合突变体表现出全基因组 DNA 低甲基化,而 pole1 突变与 DNA 甲基化水平升高有关。在 dnmt1/pole1 双突变体斑马鱼幼虫中,DNA 甲基化水平恢复到接近正常水平,与突变相关的转录变化和表型的部分挽救有关。因此,DNA 复制和维持甲基化之间的平衡拮抗作用缓冲了与复制错误有关的因素,有助于脊椎动物发育的稳健性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5568/10770094/ecf6570d854d/42003_2023_5692_Fig1_HTML.jpg

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