Galactose Oxidase Oxidation and Glycosidase Digestion for GlycoRNA Analysis

Abstract

Ribonucleic acid (RNA), essential for protein production and immune function, undergoes glycosylation, a process that attaches glycans to RNA, generating unique glycoRNAs. These glycan-coated RNA molecules regulate immune responses and may be related to immune disorders. However, studying them is challenging due to RNA's fragility. Therefore, a robust method for identifying glycoRNA is important. To address this, we optimized parameters for RNA stability, oxidation, and digestion, thereby enriching and identifying glycoRNAs. This breakthrough paves the way for exploring their potential interactions with immune receptors and tumor suppression. Our approach involved investigating factors such as preservation reagent, enzyme buffer, digestion temperature, oxidant, glycosidase, and incubation time. We successfully optimized digestion conditions, achieving efficient cleavage of N-linked glycoRNAs at room temperature using 25 mM ammonium bicarbonate, demonstrating the effectiveness of this method. Additionally, RNA preservation in RNAlater at -80°C allows controlled release of glycoRNAs within hours. While sequential digestion of different glycoRNA types is possible, significant degradation occurs after the first glycosidase step. Thus, we recommend separate harvesting for each type of glycoRNA. These optimized protocols, utilizing SPCgRNA and TnORNA methods, pave the way for further research on N- in health and disease.

Supplementary files

Article information

Article type
Paper
Submitted
11 nov 2024
Accepted
29 dec 2024
First published
30 dec 2024

Anal. Methods, 2025, Accepted Manuscript

Galactose Oxidase Oxidation and Glycosidase Digestion for GlycoRNA Analysis

J. Deng, X. Miao, X. Wang, S. Wen, Z. Zhou, S. Li, J. Jiang, X. Yang and S. Yang, Anal. Methods, 2025, Accepted Manuscript , DOI: 10.1039/D4AY02046D

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