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A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics

To further integrate mass spectrometry (MS)-based proteomics into biomedical research and especially into clinical settings, high throughput and robustness are essential requirements. They are largely met in high-flow rate chromatographic systems for small molecules but these are not sufficiently se...

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Autores principales: Bache, Nicolai, Geyer, Philipp E., Bekker-Jensen, Dorte B., Hoerning, Ole, Falkenby, Lasse, Treit, Peter V., Doll, Sophia, Paron, Igor, Müller, Johannes B., Meier, Florian, Olsen, Jesper V., Vorm, Ole, Mann, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6210218/
https://www.ncbi.nlm.nih.gov/pubmed/30104208
http://dx.doi.org/10.1074/mcp.TIR118.000853
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author Bache, Nicolai
Geyer, Philipp E.
Bekker-Jensen, Dorte B.
Hoerning, Ole
Falkenby, Lasse
Treit, Peter V.
Doll, Sophia
Paron, Igor
Müller, Johannes B.
Meier, Florian
Olsen, Jesper V.
Vorm, Ole
Mann, Matthias
author_facet Bache, Nicolai
Geyer, Philipp E.
Bekker-Jensen, Dorte B.
Hoerning, Ole
Falkenby, Lasse
Treit, Peter V.
Doll, Sophia
Paron, Igor
Müller, Johannes B.
Meier, Florian
Olsen, Jesper V.
Vorm, Ole
Mann, Matthias
author_sort Bache, Nicolai
collection PubMed
description To further integrate mass spectrometry (MS)-based proteomics into biomedical research and especially into clinical settings, high throughput and robustness are essential requirements. They are largely met in high-flow rate chromatographic systems for small molecules but these are not sufficiently sensitive for proteomics applications. Here we describe a new concept that delivers on these requirements while maintaining the sensitivity of current nano-flow LC systems. Low-pressure pumps elute the sample from a disposable trap column, simultaneously forming a chromatographic gradient that is stored in a long storage loop. An auxiliary gradient creates an offset, ensuring the re-focusing of the peptides before the separation on the analytical column by a single high-pressure pump. This simplified design enables robust operation over thousands of sample injections. Furthermore, the steps between injections are performed in parallel, reducing overhead time to a few minutes and allowing analysis of more than 200 samples per day. From fractionated HeLa cell lysates, deep proteomes covering more than 130,000 sequence unique peptides and close to 10,000 proteins were rapidly acquired. Using this data as a library, we demonstrate quantitation of 5200 proteins in only 21 min. Thus, the new system - termed Evosep One - analyzes samples in an extremely robust and high throughput manner, without sacrificing in depth proteomics coverage.
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spelling pubmed-62102182018-11-02 A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics Bache, Nicolai Geyer, Philipp E. Bekker-Jensen, Dorte B. Hoerning, Ole Falkenby, Lasse Treit, Peter V. Doll, Sophia Paron, Igor Müller, Johannes B. Meier, Florian Olsen, Jesper V. Vorm, Ole Mann, Matthias Mol Cell Proteomics Technological Innovation and Resources To further integrate mass spectrometry (MS)-based proteomics into biomedical research and especially into clinical settings, high throughput and robustness are essential requirements. They are largely met in high-flow rate chromatographic systems for small molecules but these are not sufficiently sensitive for proteomics applications. Here we describe a new concept that delivers on these requirements while maintaining the sensitivity of current nano-flow LC systems. Low-pressure pumps elute the sample from a disposable trap column, simultaneously forming a chromatographic gradient that is stored in a long storage loop. An auxiliary gradient creates an offset, ensuring the re-focusing of the peptides before the separation on the analytical column by a single high-pressure pump. This simplified design enables robust operation over thousands of sample injections. Furthermore, the steps between injections are performed in parallel, reducing overhead time to a few minutes and allowing analysis of more than 200 samples per day. From fractionated HeLa cell lysates, deep proteomes covering more than 130,000 sequence unique peptides and close to 10,000 proteins were rapidly acquired. Using this data as a library, we demonstrate quantitation of 5200 proteins in only 21 min. Thus, the new system - termed Evosep One - analyzes samples in an extremely robust and high throughput manner, without sacrificing in depth proteomics coverage. The American Society for Biochemistry and Molecular Biology 2018-11 2018-08-13 /pmc/articles/PMC6210218/ /pubmed/30104208 http://dx.doi.org/10.1074/mcp.TIR118.000853 Text en © 2018 Bache et al. Published by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Technological Innovation and Resources
Bache, Nicolai
Geyer, Philipp E.
Bekker-Jensen, Dorte B.
Hoerning, Ole
Falkenby, Lasse
Treit, Peter V.
Doll, Sophia
Paron, Igor
Müller, Johannes B.
Meier, Florian
Olsen, Jesper V.
Vorm, Ole
Mann, Matthias
A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics
title A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics
title_full A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics
title_fullStr A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics
title_full_unstemmed A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics
title_short A Novel LC System Embeds Analytes in Pre-formed Gradients for Rapid, Ultra-robust Proteomics
title_sort novel lc system embeds analytes in pre-formed gradients for rapid, ultra-robust proteomics
topic Technological Innovation and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6210218/
https://www.ncbi.nlm.nih.gov/pubmed/30104208
http://dx.doi.org/10.1074/mcp.TIR118.000853
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