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Genome‐wide occupancy of Arabidopsis SWI/SNF chromatin remodeler SPLAYED provides insights into its interplay with its close homolog BRAHMA and Polycomb proteins

染色质 生物 拟南芥 转录组 基因组 拟南芥 染色质重塑 遗传学 基因 组蛋白 瑞士/瑞士法郎 计算生物学 染色质免疫沉淀 发起人 基因表达 突变体
作者
Jie Shu,Chen Chen,Chenlong Li,Raj Kumar Thapa,Jingpu Song,Xin Xie,Vi Nguyen,Shaomin Bian,Jun Li,Susanne E. Kohalmi,Yuhai Cui
出处
期刊:Plant Journal [Wiley]
卷期号:106 (1): 200-213 被引量:20
标识
DOI:10.1111/tpj.15159
摘要

SUMMARY SPLAYED (SYD) is a SWItch/Sucrose Non‐Fermentable (SWI/SNF)‐type chromatin remodeler identified in Arabidopsis thaliana (Arabidopsis). It is believed to play both redundant and differential roles with its closest homolog BRAHMA (BRM) in diverse plant growth and development processes. To better understand how SYD functions, we profiled the genome‐wide occupancy of SYD and its impact on the global transcriptome and trimethylation of histone H3 on lysine 27 (H3K27me3). To map the global occupancy of SYD, we generated a GFP‐tagged transgenic line and used it for chromatin immunoprecipitation experiments followed by next‐generation sequencing, by which more than 6000 SYD target genes were identified. Through integrating SYD occupancy and transcriptome profiles, we found that SYD preferentially targets to nucleosome‐free regions of expressed genes. Further analysis revealed that SYD occupancy peaks exhibit five distinct patterns, which were also shared by BRM and BAF60, a conserved SWI/SNF complex component, indicating the common target sites of these SWI/SNF chromatin remodelers and the functional relevance of such distinct patterns. To investigate the interplay between SYD and Polycomb‐group (PcG) proteins, we performed a genome‐wide analysis of H3K27me3 in syd‐5 . We observed both increases and decreases in H3K27me3 levels at a few hundred genes in syd‐5 compared to wild type. Our results imply that SYD can act antagonistically or synergistically with PcG at specific genes. Together, our SYD genome‐wide occupancy data and the transcriptome and H3K27me3 profiles provide a much‐needed resource for dissecting SYD’s crucial roles in the regulation of plant growth and development.
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