阿尔戈瑙特
RNA导向的DNA甲基化
生物
反式siRNA
DNA甲基化
RNA聚合酶Ⅲ
核糖核酸
遗传学
小干扰RNA
细胞生物学
分子生物学
RNA聚合酶
基因
基因表达
作者
Wanlu Liu,Sascha H. Duttke,Jonathan Hetzel,Martin Groth,Suhua Feng,Javier Gallego‐Bartolomé,Zhenhui Zhong,Hsuan Yu Kuo,Zonghua Wang,Jixian Zhai,Joanne Chory,Steven E. Jacobsen
出处
期刊:Nature plants
[Nature Portfolio]
日期:2018-01-26
卷期号:4 (3): 181-188
被引量:122
标识
DOI:10.1038/s41477-017-0100-y
摘要
Small RNAs regulate chromatin modifications such as DNA methylation and gene silencing across eukaryotic genomes. In plants, RNA-directed DNA methylation (RdDM) requires 24-nucleotide small interfering RNAs (siRNAs) that bind to ARGONAUTE 4 (AGO4) and target genomic regions for silencing. RdDM also requires non-coding RNAs transcribed by RNA polymerase V (Pol V) that probably serve as scaffolds for binding of AGO4–siRNA complexes. Here, we used a modified global nuclear run-on protocol followed by deep sequencing to capture Pol V nascent transcripts genome-wide. We uncovered unique characteristics of Pol V RNAs, including a uracil (U) common at position 10. This uracil was complementary to the 5′ adenine found in many AGO4-bound 24-nucleotide siRNAs and was eliminated in a siRNA-deficient mutant as well as in the ago4/6/9 triple mutant, suggesting that the +10 U signature is due to siRNA-mediated co-transcriptional slicing of Pol V transcripts. Expression of wild-type AGO4 in ago4/6/9 mutants was able to restore slicing of Pol V transcripts, but a catalytically inactive AGO4 mutant did not correct the slicing defect. We also found that Pol V transcript slicing required SUPPRESSOR OF TY INSERTION 5-LIKE (SPT5L), an elongation factor whose function is not well understood. These results highlight the importance of Pol V transcript slicing in RNA-mediated transcriptional gene silencing, which is a conserved process in many eukaryotes. In plants, RNA-directed DNA methylation requires non-coding RNAs transcribed by RNA polymerase V (Pol V). A modified global nuclear run-on protocol and deep sequencing to capture Pol V nascent transcripts uncovered unique characteristics of Pol V RNAs.
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