Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/181785
Title: Recognition of RNA secondary structures with a programmable peptide nucleic acid-based platform
Authors: Lu, Rongguang
Deng, Liping
Lian, Yun
Ke, Xin
Yang, Lixia
Xi, Kun
Ong, Alan Ann Lerk
Chen, Yanyu
Zhou, Hanting
Meng, Zhenyu
Lin, Ruiyu
Fan, Shijian
Liu, Yining
Toh, Desiree-Faye Kaixin
Zhan, Xuan
Krishna, Manchugondanahalli S.
Patil, Kiran M.
Lu, Yunpeng
Liu, Zheng
Zhu, Lizhe
Wang, Hongwei
Li, Guobao
Chen, Gang
Keywords: Chemistry
Issue Date: 2024
Source: Lu, R., Deng, L., Lian, Y., Ke, X., Yang, L., Xi, K., Ong, A. A. L., Chen, Y., Zhou, H., Meng, Z., Lin, R., Fan, S., Liu, Y., Toh, D. K., Zhan, X., Krishna, M. S., Patil, K. M., Lu, Y., Liu, Z., ...Chen, G. (2024). Recognition of RNA secondary structures with a programmable peptide nucleic acid-based platform. Cell Reports Physical Science, 5(9), 102150-. https://dx.doi.org/10.1016/j.xcrp.2024.102150
Journal: Cell Reports Physical Science 
Abstract: RNA secondary structures comprise double-stranded (ds) and single-stranded (ss) regions. Antisense peptide nucleic acids (asPNAs) enable the targeting of ssRNAs and weakly formed dsRNAs. Nucleobase-modified dsRNA-binding PNAs (dbPNAs) allow for dsRNA targeting. A programmable RNA-structure-specific targeting strategy is needed for the simultaneous recognition of dsRNAs and ssRNAs. Here, we report on combining dbPNAs and asPNAs (designated as daPNAs) for the targeting of dsRNA-ssRNA junctions. Our data suggest that combining traditional asPNA (with a 4-letter code: T, C, A, and G) and dbPNA (with a 4-letter code: T or s2U, L, Q, and E) scaffolds facilitates RNA-structure-specific tight binding (nM to μM). We further apply our daPNAs in substrate-specific inhibition of Dicer acting on precursor miRNA (pre-miR)-198 in a cell-free assay and regulating ribosomal frameshifting induced by model hairpins in both cell-free and cell culture assays. daPNAs would be a useful platform for developing chemical probes and therapeutic ligands targeting RNA.
URI: https://hdl.handle.net/10356/181785
ISSN: 2666-3864
DOI: 10.1016/j.xcrp.2024.102150
Schools: School of Physical and Mathematical Sciences 
Rights: © 2024 The Author(s). Published by Elsevier Inc. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:SPMS Journal Articles

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