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K562细胞中N-乙酰基转移酶10的RNA结合图谱分析
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作者 李高原 王妍然 +1 位作者 王芳 余佳 《基础医学与临床》 2023年第5期739-744,共6页
目的对N-乙酰基转移酶10(NAT10)在人慢性髓原白血病细胞系K562中的RNA结合图谱进行描绘。方法利用紫外交联免疫沉淀技术(eCLIP)捕获NAT10在K562细胞中结合的转录本集合,对其进行高通量测序,并对数据进行生物信息学分析。通过peak-callin... 目的对N-乙酰基转移酶10(NAT10)在人慢性髓原白血病细胞系K562中的RNA结合图谱进行描绘。方法利用紫外交联免疫沉淀技术(eCLIP)捕获NAT10在K562细胞中结合的转录本集合,对其进行高通量测序,并对数据进行生物信息学分析。通过peak-calling分析和对peaks进行注释,鉴定NAT10结合位点。并对所结合基因的类型和结合区域进行分析。进一步通过基因功能富集分析,探索其结合的RNA的功能。结果NAT10主要结合于蛋白质编码基因的转录本,并在3′非翻译区域(3′UTR)富集,预测显示其结合的转录本与DNA损伤修复等功能相关。结论NAT10可能通过与DNA损伤修复相关信使RNA(mRNA)的3′UTR区域结合,实现基因表达调控作用。 展开更多
关键词 N-乙酰基转移酶10 K562细胞 紫外交联免疫沉淀测序技术(eclip-seq)
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The Features and Regulation of Co-transcriptional Splicing in Arabidopsis 被引量:2
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作者 Danling Zhu Fei Mao +6 位作者 Yuanchun Tian Xiaoya Lin Lianfeng Gu Hongya Gu Li-jia Qu Yufeng Wu Zhe Wu 《Molecular Plant》 SCIE CAS CSCD 2020年第2期278-294,共17页
Precursor mRNA(pre-mRNA)splicing is essential for gene expression in most eukaryotic organisms.Previous studies from mammals,Drosophila,and yeast show that the majority of splicing events occurs co-transcriptionally.I... Precursor mRNA(pre-mRNA)splicing is essential for gene expression in most eukaryotic organisms.Previous studies from mammals,Drosophila,and yeast show that the majority of splicing events occurs co-transcriptionally.In plants,however,the features of co-transcriptional splicing(CTS)and its regulation still remain largely unknown.Here,we used chromatin-bound RNA sequencing to study CTS in Arabidopsis thaliana.We found that CTS is widespread in Arabidopsis seedlings,with a large proportion of alternative splicing events determined co-transcriptionally.CTS efficiency correlated with gene expression level,the chromatin landscape and,most surprisingly,the number of introns and exons of individual genes,but is independent of gene length.In combination with enhanced crosslinking and immunoprecipitation sequencing analysis,we further showed that the hnRNP-like proteins RZ-1B and RZ-1C promote efficient CTS globally through direct binding,frequently to exonic sequences.Notably,this general effect of RZ-1B/1C on splicing promotion is mainly observed at the chromatin level,not at the mRNA level.RZ-1C promotes CTS of multiple-exon genes in association with its binding to regions both proximal and distal to the regulated introns.We propose that RZ-1C promotes efficient CTS of genes with multiple exons through cooperative interactions with many exons,introns,and splicing factors.Our work thus reveals important features of CTS in plants and provides methodologies for the investigation of CTS and RNA-binding proteins in plants. 展开更多
关键词 co-transcriptional SPLICING CB-RNA-seq eclip-seq RNA binding protein CHROMATIN TRANSCRIPTION
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