Javascript must be enabled to continue!
Liquid chromatography/electrospray mass spectrometric analysis of metabolites from an inhibitory RNA duplex
View through CrossRef
Abstract
Liquid chromatography/mass spectrometry (LC/MS) was used as a method for analyzing the metabolites of a model short interfering RNA (siRNA) duplex. The model siRNA duplex incorporated oligonucleotide stabilizing and protecting chemistries as these have been shown to increase the half‐life of oligonucleotides. Two complementary 23 nucleotide single strands were joined to form the duplex. The intact duplex was analyzed using ion‐pair reversed‐phase chromatography coupled to electrospray ionization mass spectrometry (ESI‐MS). The method used a hexafluoroisopropanol/triethylamine ion‐pairing buffer with a methanol gradient to separate single‐stranded oligonucleotide components from the duplex. This buffer system with ESI also preserved the duplex in the gas phase for analysis by a triple quadrupole mass spectrometer. Using this methodology,
in vitro
and
in vivo
metabolites from urine and rabbit ocular vitreous humor were determined and a pattern of duplex siRNA degradation was established. The masses of the metabolites were determined by ESI‐MS and used with the known sequence of the siRNA duplex to identify the metabolites. Over the time course of the metabolism experiments it was shown that the breakdown products of the siRNA are consistent with the nuclease protection given by chemical modifications and that the duplex structure adds additional stability compared to the single strands alone. This study demonstrates that the ability of LC/MS to analyze duplex oligonucleotides has unique benefits for the study of siRNA metabolism. Copyright © 2005 John Wiley & Sons, Ltd.
Title: Liquid chromatography/electrospray mass spectrometric analysis of metabolites from an inhibitory RNA duplex
Description:
Abstract
Liquid chromatography/mass spectrometry (LC/MS) was used as a method for analyzing the metabolites of a model short interfering RNA (siRNA) duplex.
The model siRNA duplex incorporated oligonucleotide stabilizing and protecting chemistries as these have been shown to increase the half‐life of oligonucleotides.
Two complementary 23 nucleotide single strands were joined to form the duplex.
The intact duplex was analyzed using ion‐pair reversed‐phase chromatography coupled to electrospray ionization mass spectrometry (ESI‐MS).
The method used a hexafluoroisopropanol/triethylamine ion‐pairing buffer with a methanol gradient to separate single‐stranded oligonucleotide components from the duplex.
This buffer system with ESI also preserved the duplex in the gas phase for analysis by a triple quadrupole mass spectrometer.
Using this methodology,
in vitro
and
in vivo
metabolites from urine and rabbit ocular vitreous humor were determined and a pattern of duplex siRNA degradation was established.
The masses of the metabolites were determined by ESI‐MS and used with the known sequence of the siRNA duplex to identify the metabolites.
Over the time course of the metabolism experiments it was shown that the breakdown products of the siRNA are consistent with the nuclease protection given by chemical modifications and that the duplex structure adds additional stability compared to the single strands alone.
This study demonstrates that the ability of LC/MS to analyze duplex oligonucleotides has unique benefits for the study of siRNA metabolism.
Copyright © 2005 John Wiley & Sons, Ltd.
Related Results
Joint Full-Duplex/Half-Duplex Transmission-Switching Scheduling and Transmission-Energy Allocation in Cognitive Radio Networks with Energy Harvesting
Joint Full-Duplex/Half-Duplex Transmission-Switching Scheduling and Transmission-Energy Allocation in Cognitive Radio Networks with Energy Harvesting
The full-duplex transmission protocol has been widely investigated in the literature in order to improve radio spectrum usage efficiency. Unfortunately, due to the effect of imperf...
Detecting RNA–RNA interactome
Detecting RNA–RNA interactome
AbstractThe last decade has seen a robust increase in various types of novel RNA molecules and their complexity in gene regulation. RNA molecules play a critical role in cellular e...
Conformational dynamics of RNA
Conformational dynamics of RNA
Two projects are presented in this thesis, showcasing the application of PELDOR spectroscopy, and, more specifically, orientation-selective PELDOR spectroscopy to the study of the ...
B-247 BLADE-R: streamlined RNA extraction for clinical diagnostics and high-throughput applications
B-247 BLADE-R: streamlined RNA extraction for clinical diagnostics and high-throughput applications
Abstract
Background
Efficient nucleic acid extraction and purification are crucial for cellular and molecular biology research, ...
Metabolite identification of small interfering RNA duplex by high‐resolution accurate mass spectrometry
Metabolite identification of small interfering RNA duplex by high‐resolution accurate mass spectrometry
Abstract
On‐line liquid chromatography/electrospray ionization high‐resolution mass spectrometry (LC/ESI‐HRMS) using an LTQ‐Orbitrap mass spe...
Breast Carcinoma within Fibroadenoma: A Systematic Review
Breast Carcinoma within Fibroadenoma: A Systematic Review
Abstract
Introduction
Fibroadenoma is the most common benign breast lesion; however, it carries a potential risk of malignant transformation. This systematic review provides an ove...
Mass spectrometry of oligosaccharides
Mass spectrometry of oligosaccharides
Abstract
I.
Introduction
162
II.
CHARACTERISTICS OF TANDEM MASS SPECTRA OF CARBOHYDRATES
163
A. Ionization of Carbohydrates
163
1. Electrospray Ionization (E...
Molecular Drivers of RNA Phase Separation
Molecular Drivers of RNA Phase Separation
Abstract
RNA molecules are essential in orchestrating the assembly of biomolecular condensates and membraneless compartments in cells. Many condensates form via the...

