Synthesis of Sensitive RNAs Using Fluoride‐Cleavable Groups as Linkers and Amino‐Group Protection

A Alexander Apostle (Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA) M Manoj Perera (Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA) D Daniel Middleton (Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA) W William Wittstock (College of Forest Resources and Environmental Science Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA) R Rohith Awasthy (Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA) Y Yinan Yuan (College of Forest Resources and Environmental Science Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA) S Shiyue Fang (Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA)

Abstract

Abstract A chemical method suitable for the synthesis of RNAs containing modifications such as N 4‐acetylcytidine (ac4C) that are unstable under the basic and nucleophilic conditions used by standard RNA synthesis methods is described. The method uses the 4‐(( t ‐butyldimethylsilyl)oxy)‐2‐methoxybutanoyl (SoM) group for the protection of exo ‐amino groups of nucleobases and the 4‐(( t ‐butyldimethylsilyl)oxy)‐2‐((aminophosphaneyl)oxy)butanoyl (SoA) group as the linker for solid phase synthesis. RNA cleavage and amino deprotection are achieved using fluoride under the same conditions used for the removal of the 2′‐OH silyl protecting groups. Using this method, a wide range of electrophilic and base‐sensitive groups including those that play structural and regulatory roles in biological systems and those that are artificially designed for various purposes are expected to be able to be incorporated into any position of any RNA sequences. As a proof of concept, several RNAs containing the highly sensitive ac4C epitranscriptomic modification was synthesized and purified with RP HPLC. MALDI MS analysis indicated that the ac4C modification is completely stable under the fluoride deprotection conditions. The sensitive RNA synthesis method is expected to be able to overcome the long‐lasting obstacle of accessing various modified sensitive RNAs to projects in areas such as epitranscriptomics, molecular biology and the development of nucleic acid therapeutics.

Article Details

Volume / Issue Vol. 64, Issue 25
Published June 17, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

A

Alexander Apostle

Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA

M

Manoj Perera

Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA

D

Daniel Middleton

Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA

W

William Wittstock

College of Forest Resources and Environmental Science Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA

R

Rohith Awasthy

Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA

Y

Yinan Yuan

College of Forest Resources and Environmental Science Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA

S

Shiyue Fang

Department of Chemistry and Health Research Institute Michigan Technological University 1400 Townsend Drive Houghton MI 49931 USA