Genome‐wide distribution and functions of the AAE complex in epigenetic regulation in Arabidopsis

异染色质 生物 遗传学 聚腺苷酸 构成性异染色质 表观遗传学 异染色质蛋白1 常染色质 RNA剪接 基因 基因组 染色质 核糖核酸
作者
Yizhe Zhang,Juncheng Lin,Zhizhong Ren,Chun‐Xiang Chen,Daisuke Miki,Sisi Xie,Jian Zhang,Yanan Chang,Jing Jiang,Jun Yan,Qingshun Quinn Li,Jian‐Kang Zhu,Cheng‐Guo Duan
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:63 (4): 707-722 被引量:20
标识
DOI:10.1111/jipb.13068
摘要

Abstract Heterochromatin is widespread in eukaryotic genomes and has diverse impacts depending on its genomic context. Previous studies have shown that a protein complex, the ASI1‐AIPP1‐EDM2 (AAE) complex, participates in polyadenylation regulation of several intronic heterochromatin‐containing genes. However, the genome‐wide functions of AAE are still unknown. Here, we show that the ASI1 and EDM2 mostly target the common genomic regions on a genome‐wide level and preferentially interacts with genetic heterochromatin. Polyadenylation (poly(A) sequencing reveals that AAE complex has a substantial influence on poly(A) site usage of heterochromatin‐containing genes, including not only intronic heterochromatin‐containing genes but also the genes showing overlap with heterochromatin. Intriguingly, AAE is also involved in the alternative splicing regulation of a number of heterochromatin‐overlapping genes, such as the disease resistance gene RPP4 . We provided evidence that genic heterochromatin is indispensable for the recruitment of AAE in polyadenylation and splicing regulation. In addition to conferring RNA processing regulation at genic heterochromatin‐containing genes, AAE also targets some transposable elements (TEs) outside of genes (including TEs sandwiched by genes and island TEs) for epigenetic silencing. Our results reveal new functions of AAE in RNA processing and epigenetic silencing, and thus represent important advances in epigenetic regulation.
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