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COP9 信号小体影响拟南芥的表观遗传景观。

The COP9 signalosome influences the epigenetic landscape of Arabidopsis thaliana.

机构信息

Department of Biomedical Engineering.

Sagol School of Neuroscience.

出版信息

Bioinformatics. 2019 Aug 15;35(16):2718-2723. doi: 10.1093/bioinformatics/bty1053.

Abstract

MOTIVATION

The COP9 signalosome is a highly conserved multi-protein complex consisting of eight subunits, which influences key developmental pathways through its regulation of protein stability and transcription. In Arabidopsis thaliana, mutations in the COP9 signalosome exhibit a number of diverse pleiotropic phenotypes. Total or partial loss of COP9 signalosome function in Arabidopsis leads to misregulation of a number of genes involved in DNA methylation, suggesting that part of the pleiotropic phenotype is due to global effects on DNA methylation.

RESULTS

We determined and analyzed the methylomes and transcriptomes of both partial- and total-loss-of-function Arabidopsis mutants of the COP9 signalosome. Our results support the hypothesis that the COP9 signalosome has a global genome-wide effect on methylation and that this effect is at least partially encoded in the DNA. Our analyses suggest that COP9 signalosome-dependent methylation is related to gene expression regulation in various ways. Differentially methylated regions tend to be closer in the 3D conformation of the genome to differentially expressed genes. These results suggest that the COP9 signalosome has a more comprehensive effect on gene expression than thought before, and this is partially related to regulation of methylation. The high level of COP9 signalosome conservation among eukaryotes may also suggest that COP9 signalosome regulates methylation not only in plants but also in other eukaryotes, including humans.

SUPPLEMENTARY INFORMATION

Supplementary data are available at Bioinformatics online.

摘要

动机

COP9 信号体是一个高度保守的多蛋白复合物,由八个亚基组成,通过调节蛋白质稳定性和转录来影响关键的发育途径。在拟南芥中,COP9 信号体的突变表现出许多不同的表型。拟南芥中 COP9 信号体的完全或部分丧失功能会导致参与 DNA 甲基化的许多基因的失调,这表明部分表型是由于对 DNA 甲基化的全局影响。

结果

我们确定并分析了拟南芥 COP9 信号体部分和完全功能丧失突变体的甲基组和转录组。我们的结果支持这样一种假设,即 COP9 信号体对甲基化具有全基因组的影响,这种影响至少部分编码在 DNA 中。我们的分析表明,COP9 信号体依赖性甲基化与基因表达调控以多种方式相关。差异甲基化区域在基因组的 3D 构象中往往更接近差异表达基因。这些结果表明,COP9 信号体对基因表达的影响比以前认为的更全面,这部分与甲基化的调节有关。真核生物中 COP9 信号体的高度保守性也可能表明,COP9 信号体不仅在植物中,而且在其他真核生物中,包括人类中,调节甲基化。

补充信息

补充数据可在“生物信息学”在线获取。

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