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C9orf72 BAC 转基因小鼠中海马依赖性认知障碍与星形胶质细胞和神经元中沉默性表观遗传标记 H3K9me3 的广泛丢失有关。

Widespread loss of the silencing epigenetic mark H3K9me3 in astrocytes and neurons along with hippocampal-dependent cognitive impairment in C9orf72 BAC transgenic mice.

机构信息

Institute of Biomedical Sciences (ICB), Faculty of Medicine & Faculty of Life Sciences, Universidad Andres Bello, Santiago, Chile.

CARE Biomedical Research Center, Faculty of Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.

出版信息

Clin Epigenetics. 2020 Feb 18;12(1):32. doi: 10.1186/s13148-020-0816-9.

Abstract

BACKGROUND

Hexanucleotide repeat expansions of the GC motif in a non-coding region of the C9ORF72 gene are the most common genetic cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). Tissues from C9ALS/FTD patients and from mouse models of ALS show RNA foci, dipeptide-repeat proteins, and notably, widespread alterations in the transcriptome. Epigenetic processes regulate gene expression without changing DNA sequences and therefore could account for the altered transcriptome profiles in C9ALS/FTD; here, we explore whether the critical repressive marks H3K9me2 and H3K9me3 are altered in a recently developed C9ALS/FTD BAC mouse model (C9BAC).

RESULTS

Chromocenters that constitute pericentric constitutive heterochromatin were visualized as DAPI- or Nucblue-dense foci in nuclei. Cultured C9BAC astrocytes exhibited a reduced staining signal for H3K9me3 (but not for H3K9me2) at chromocenters that was accompanied by a marked decline in the global nuclear level of this mark. Similar depletion of H3K9me3 at chromocenters was detected in astrocytes and neurons of the spinal cord, motor cortex, and hippocampus of C9BAC mice. The alterations of H3K9me3 in the hippocampus of C9BAC mice led us to identify previously undetected neuronal loss in CA1, CA3, and dentate gyrus, as well as hippocampal-dependent cognitive deficits.

CONCLUSIONS

Our data indicate that a loss of the repressive mark H3K9me3 in astrocytes and neurons in the central nervous system of C9BAC mice represents a signature during neurodegeneration and memory deficit of C9ALS/FTD.

摘要

背景

C9ORF72 基因非编码区 GC 基序六核苷酸重复扩增是肌萎缩侧索硬化症(ALS)和额颞叶痴呆(FTD)最常见的遗传原因。C9ALS/FTD 患者和 ALS 小鼠模型的组织显示 RNA 焦点、二肽重复蛋白,值得注意的是,转录组发生广泛改变。表观遗传过程在不改变 DNA 序列的情况下调节基因表达,因此可以解释 C9ALS/FTD 中转录组谱的改变;在这里,我们探讨了最近开发的 C9ALS/FTD BAC 小鼠模型(C9BAC)中关键的抑制性标记 H3K9me2 和 H3K9me3 是否发生改变。

结果

构成着丝粒周围组成型异染色质的染色体中心在核中被 DAPI 或 Nucblue 密集染色焦点可视化。培养的 C9BAC 星形胶质细胞在染色体中心显示出 H3K9me3(而不是 H3K9me2)的染色信号减少,同时这种标记的整体核水平显著下降。在 C9BAC 小鼠的脊髓、运动皮层和海马体的星形胶质细胞和神经元中,也检测到染色体中心 H3K9me3 的明显耗竭。C9BAC 小鼠海马体中 H3K9me3 的改变导致我们在 CA1、CA3 和齿状回中发现了以前未检测到的神经元丢失,以及海马体依赖的认知缺陷。

结论

我们的数据表明,C9BAC 小鼠中枢神经系统中星形胶质细胞和神经元中抑制性标记 H3K9me3 的丧失代表了 C9ALS/FTD 神经退行性变和记忆缺陷的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b61/7029485/ff4312aebb8f/13148_2020_816_Fig1_HTML.jpg

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