Literature DB >> 35467656

Identification of RNA Fragments Resulting from Enzymatic Degradation using MALDI-TOF Mass Spectrometry.

Shawn W Schowe1, Conner J Langeberg2, Erich G Chapman2, Kitty Brown3, Marino J E Resendiz4.   

Abstract

RNA is a biopolymer present in all domains of life, and its interactions with other molecules and/or reactive species, e.g., DNA, proteins, ions, drugs, and free radicals, are ubiquitous. As a result, RNA undergoes various reactions that include its cleavage, degradation, or modification, leading to biologically relevant species with distinct functions and implications. One example is the oxidation of guanine to 7,8-dihydro-8-oxoguanine (8-oxoG), which may occur in the presence of reactive oxygen species (ROS). Overall, procedures that characterize such products and transformations are largely valuable to the scientific community. To this end, matrix-assisted laser desorption ionization time-of-flight (MALDI-TOF) mass spectrometry is a widely used method. The present protocol describes how to characterize RNA fragments formed after enzymatic treatment. The chosen model uses a reaction between RNA and the exoribonuclease Xrn-1, where enzymatic digestion is halted at oxidized sites. Two 20-nucleotide long RNA sequences [5'-CAU GAA ACA A(8-oxoG)G CUA AAA GU] and [5'-CAU GAA ACA A(8-oxoG)(8-oxoG) CUA AAA GU] were obtained via solid-phase synthesis, quantified by UV-vis spectroscopy, and characterized via MALDI-TOF. The obtained strands were then (1) 5'-phosphorylated and characterized via MALDI-TOF; (2) treated with Xrn-1; (3) filtered and desalted; (4) analyzed via MALDI-TOF. This experimental setup led to the unequivocal identification of the fragments associated with the stalling of Xrn-1: [5'-H2PO4-(8-oxoG)G CUA AAA GU], [5'-H2PO4-(8-oxoG)(8-oxoG) CUA AAA GU], and [5'-H2PO4-(8-oxoG) CUA AAA GU]. The described experiments were carried out with 200 picomols of RNA (20 pmol used for MALDI analyses); however, lower amounts may result in detectable peaks with spectrometers using laser sources with more power than the one used in this work. Importantly, the described methodology can be generalized and potentially extended to product identification for other processes involving RNA and DNA, and may aid in the characterization/elucidation of other biochemical pathways.

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Year:  2022        PMID: 35467656      PMCID: PMC9208294          DOI: 10.3791/63720

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.424


  24 in total

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Authors:  M Karas; F Hillenkamp
Journal:  Anal Chem       Date:  1988-10-15       Impact factor: 6.986

2.  Sixteen Different Types of Lipid-Conjugated siRNAs Containing Saturated and Unsaturated Fatty Acids and Exhibiting Enhanced RNAi Potency.

Authors:  Takanori Kubo; Yoshio Nishimura; Yuichiro Sato; Kazuyoshi Yanagihara; Toshio Seyama
Journal:  ACS Chem Biol       Date:  2020-12-21       Impact factor: 5.100

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Authors:  R Kaufmann
Journal:  J Biotechnol       Date:  1995-07-31       Impact factor: 3.307

4.  Proofreading and DNA Repair Assay Using Single Nucleotide Extension and MALDI-TOF Mass Spectrometry Analysis.

Authors:  Kang-Yi Su; Steven D Goodman; Hung-Ming Lai; Rong-Syuan Yen; Wei-Yao Hu; Wern-Cherng Cheng; Liang-In Lin; Ya-Chien Yang; Woei-Horng Fang
Journal:  J Vis Exp       Date:  2018-06-19       Impact factor: 1.355

5.  Identification of Antibacterial Immunity Proteins in Escherichia coli using MALDI-TOF-TOF-MS/MS and Top-Down Proteomic Analysis.

Authors:  Clifton K Fagerquist; Ernesto Rojas
Journal:  J Vis Exp       Date:  2021-05-23       Impact factor: 1.355

6.  Enzymatic processing of platinated RNAs.

Authors:  Erich G Chapman; Victoria J DeRose
Journal:  J Am Chem Soc       Date:  2010-02-17       Impact factor: 15.419

7.  DNA Sequence Modulates the Efficiency of NEIL1-Catalyzed Excision of the Aflatoxin B1-Induced Formamidopyrimidine Guanine Adduct.

Authors:  Rachana Tomar; Irina G Minko; Andrew H Kellum; Markus W Voehler; Michael P Stone; Amanda K McCullough; R Stephen Lloyd
Journal:  Chem Res Toxicol       Date:  2021-02-17       Impact factor: 3.739

8.  7,8-Dihydro-8-oxoguanosine Lesions Inhibit the Theophylline Aptamer or Change Its Selectivity.

Authors:  Courtney Kiggins; Austin Skinner; Marino J E Resendiz
Journal:  Chembiochem       Date:  2020-01-30       Impact factor: 3.164

9.  Oxidation and alkylation stresses activate ribosome-quality control.

Authors:  Liewei L Yan; Carrie L Simms; Fionn McLoughlin; Richard D Vierstra; Hani S Zaher
Journal:  Nat Commun       Date:  2019-12-09       Impact factor: 14.919

10.  Oxidative Damage to RNA is Altered by the Presence of Interacting Proteins or Modified Nucleosides.

Authors:  Mariana Estevez; Satenik Valesyan; Manasses Jora; Patrick A Limbach; Balasubrahmanyam Addepalli
Journal:  Front Mol Biosci       Date:  2021-07-01
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