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一项在小鼠中进行的N-乙基-N-亚硝基脲诱变筛选揭示了(某基因)中的一个突变(该突变改变了DNA甲基化状态并影响正确的胚胎发育)。 (注:原文括号部分内容缺失,补充完整是为了使译文逻辑更通顺,符合正常语境)

An N-ethyl-N-Nitrosourea Mutagenesis Screen in Mice Reveals a Mutation in ( Altering the DNA Methylation State and Correct Embryonic Development.

作者信息

Sorolla Maria Alba, Marqués Marta, Parisi Eva, Sorolla Anabel

机构信息

Research Group of Cancer Biomarkers, Lleida Institute for Biomedical Research Dr. Pifarré Foundation IRBLleida, 25198 Lleida, Spain.

Department of Medicine, University of Lleida, 25198 Lleida, Spain.

出版信息

Animals (Basel). 2021 Jul 15;11(7):2103. doi: 10.3390/ani11072103.

Abstract

We have established a genome-wide N-ethyl-N-nitrosourea (ENU) mutagenesis screen to identify novel genes playing a role in epigenetic regulation in mammals. We hypothesize that the ENU mutagenesis screen will lead to the discovery of unknown genes responsible of the maintenance of the epigenetic state as the genes found are modifiers of variegation of the transgene green fluorescent protein (GFP) expression in erythrocytes, which are named . Here we report the generation of a novel mutant mouse line, , that carries a new missense mutation producing an amino acid transversion (L71P) in the dimerization domain of Nuclear Respiratory Factor 1 (Nrf1). The molecular characterization of the mutation reveals a decrease in the mRNA levels and a novel role of Nrf1 in the maintenance of the DNA hypomethylation in vivo. The heritability of the mutation is consistent with paternal imprinting and haploinsufficiency. Homozygous mutants display embryonic lethality at 14.5 days post-coitum and developmental delay. This work adds a new epi-regulatory role to Nrf1 and uncovers unknown phenotypical defects of the hypomorph. The generated mouse line represents a valuable resource for studying NRF1-related diseases.

摘要

我们建立了全基因组N-乙基-N-亚硝基脲(ENU)诱变筛选,以鉴定在哺乳动物表观遗传调控中发挥作用的新基因。我们假设ENU诱变筛选将导致发现负责维持表观遗传状态的未知基因,因为所发现的基因是红细胞中转基因绿色荧光蛋白(GFP)表达斑驳化的修饰因子,这些基因被命名为 。在此,我们报告了一种新型突变小鼠品系 的产生,该品系携带一个新的错义突变,在核呼吸因子1(Nrf1)的二聚化结构域中产生氨基酸转换(L71P)。该突变的分子特征揭示了 mRNA水平的降低以及Nrf1在体内维持DNA低甲基化中的新作用。该突变的遗传特性与父本印记和单倍剂量不足一致。纯合突变体在交配后14.5天表现出胚胎致死性和发育延迟。这项工作为Nrf1增添了新的表观遗传调控作用,并揭示了 亚效等位基因未知的表型缺陷。所产生的小鼠品系是研究NRF1相关疾病的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5792/8300126/18a126897cfc/animals-11-02103-g001.jpg

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