Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo. / Yang, Minglei; Woolfenden, Hugh C.; Zhang, Yueying; Fang, Xiaofeng; Liu, Qi; Vigh, Maria L.; Cheema, Jitender; Yang, Xiaofei; Norris, Matthew; Yu, Sha; Carbonell, Alberto; Brodersen, Peter; Wang, Jiawei; Ding, Yiliang.

In: Nucleic Acids Research, Vol. 48, No. 15, 2020, p. 8767-8781.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Yang, M, Woolfenden, HC, Zhang, Y, Fang, X, Liu, Q, Vigh, ML, Cheema, J, Yang, X, Norris, M, Yu, S, Carbonell, A, Brodersen, P, Wang, J & Ding, Y 2020, 'Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo', Nucleic Acids Research, vol. 48, no. 15, pp. 8767-8781. https://doi.org/10.1093/nar/gkaa577

APA

Yang, M., Woolfenden, H. C., Zhang, Y., Fang, X., Liu, Q., Vigh, M. L., Cheema, J., Yang, X., Norris, M., Yu, S., Carbonell, A., Brodersen, P., Wang, J., & Ding, Y. (2020). Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo. Nucleic Acids Research, 48(15), 8767-8781. https://doi.org/10.1093/nar/gkaa577

Vancouver

Yang M, Woolfenden HC, Zhang Y, Fang X, Liu Q, Vigh ML et al. Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo. Nucleic Acids Research. 2020;48(15):8767-8781. https://doi.org/10.1093/nar/gkaa577

Author

Yang, Minglei ; Woolfenden, Hugh C. ; Zhang, Yueying ; Fang, Xiaofeng ; Liu, Qi ; Vigh, Maria L. ; Cheema, Jitender ; Yang, Xiaofei ; Norris, Matthew ; Yu, Sha ; Carbonell, Alberto ; Brodersen, Peter ; Wang, Jiawei ; Ding, Yiliang. / Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo. In: Nucleic Acids Research. 2020 ; Vol. 48, No. 15. pp. 8767-8781.

Bibtex

@article{e5695ad03cf3451abe277bb928575eb7,
title = "Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo",
abstract = "MicroRNA (miRNA)-mediated cleavage is involved in numerous essential cellular pathways. miRNAs recognize target RNAs via sequence complementarity. In addition to complementarity, in vitro and in silico studies have suggested that RNA structure may influence the accessibility of mRNAs to miRNA-induced silencing complexes (miRISCs), thereby affecting RNA silencing. However, the regulatory mechanism of mRNA structure in miRNA cleavage remains elusive. We investigated the role of in vivo RNA secondary structure in miRNA cleavage by developing the new CAP-STRUCTURE-seq method to capture the intact mRNA structurome in Arabidopsis thaliana. This approach revealed that miRNA target sites were not structurally accessible for miRISC binding prior to cleavage in vivo. Instead, we found that the unfolding of the target site structure plays a key role in miRISC activity in vivo. We found that the single-strandedness of the two nucleotides immediately downstream of the target site, named Target Adjacent nucleotide Motif, can promote miRNA cleavage but not miRNA binding, thus decoupling target site binding from cleavage. Our findings demonstrate that mRNA structure in vivo can modulate miRNA cleavage, providing evidence of mRNA structure-dependent regulation of biological processes.",
author = "Minglei Yang and Woolfenden, {Hugh C.} and Yueying Zhang and Xiaofeng Fang and Qi Liu and Vigh, {Maria L.} and Jitender Cheema and Xiaofei Yang and Matthew Norris and Sha Yu and Alberto Carbonell and Peter Brodersen and Jiawei Wang and Yiliang Ding",
year = "2020",
doi = "10.1093/nar/gkaa577",
language = "English",
volume = "48",
pages = "8767--8781",
journal = "Nucleic Acids Research",
issn = "0305-1048",
publisher = "Oxford University Press",
number = "15",

}

RIS

TY - JOUR

T1 - Intact RNA structurome reveals mRNA structure-mediated regulation of miRNA cleavage in vivo

AU - Yang, Minglei

AU - Woolfenden, Hugh C.

AU - Zhang, Yueying

AU - Fang, Xiaofeng

AU - Liu, Qi

AU - Vigh, Maria L.

AU - Cheema, Jitender

AU - Yang, Xiaofei

AU - Norris, Matthew

AU - Yu, Sha

AU - Carbonell, Alberto

AU - Brodersen, Peter

AU - Wang, Jiawei

AU - Ding, Yiliang

PY - 2020

Y1 - 2020

N2 - MicroRNA (miRNA)-mediated cleavage is involved in numerous essential cellular pathways. miRNAs recognize target RNAs via sequence complementarity. In addition to complementarity, in vitro and in silico studies have suggested that RNA structure may influence the accessibility of mRNAs to miRNA-induced silencing complexes (miRISCs), thereby affecting RNA silencing. However, the regulatory mechanism of mRNA structure in miRNA cleavage remains elusive. We investigated the role of in vivo RNA secondary structure in miRNA cleavage by developing the new CAP-STRUCTURE-seq method to capture the intact mRNA structurome in Arabidopsis thaliana. This approach revealed that miRNA target sites were not structurally accessible for miRISC binding prior to cleavage in vivo. Instead, we found that the unfolding of the target site structure plays a key role in miRISC activity in vivo. We found that the single-strandedness of the two nucleotides immediately downstream of the target site, named Target Adjacent nucleotide Motif, can promote miRNA cleavage but not miRNA binding, thus decoupling target site binding from cleavage. Our findings demonstrate that mRNA structure in vivo can modulate miRNA cleavage, providing evidence of mRNA structure-dependent regulation of biological processes.

AB - MicroRNA (miRNA)-mediated cleavage is involved in numerous essential cellular pathways. miRNAs recognize target RNAs via sequence complementarity. In addition to complementarity, in vitro and in silico studies have suggested that RNA structure may influence the accessibility of mRNAs to miRNA-induced silencing complexes (miRISCs), thereby affecting RNA silencing. However, the regulatory mechanism of mRNA structure in miRNA cleavage remains elusive. We investigated the role of in vivo RNA secondary structure in miRNA cleavage by developing the new CAP-STRUCTURE-seq method to capture the intact mRNA structurome in Arabidopsis thaliana. This approach revealed that miRNA target sites were not structurally accessible for miRISC binding prior to cleavage in vivo. Instead, we found that the unfolding of the target site structure plays a key role in miRISC activity in vivo. We found that the single-strandedness of the two nucleotides immediately downstream of the target site, named Target Adjacent nucleotide Motif, can promote miRNA cleavage but not miRNA binding, thus decoupling target site binding from cleavage. Our findings demonstrate that mRNA structure in vivo can modulate miRNA cleavage, providing evidence of mRNA structure-dependent regulation of biological processes.

U2 - 10.1093/nar/gkaa577

DO - 10.1093/nar/gkaa577

M3 - Journal article

C2 - 32652041

AN - SCOPUS:85090491093

VL - 48

SP - 8767

EP - 8781

JO - Nucleic Acids Research

JF - Nucleic Acids Research

SN - 0305-1048

IS - 15

ER -

ID: 249862406