Publications

LILY-lipidome isotope labeling of yeast: in vivo synthesis of 13C labeled reference lipids for quantification by mass spectrometry

Author(s)
Evelyn Rampler, Cristina Coman, Gerrit Hermann, Albert Sickmann, Robert Ahrends, Gunda Koellensperger
Abstract

Quantification is an essential task in comprehensive lipidomics studies challenged by the high number of lipids, their chemical diversity and their dynamic range of the lipidome. In this work, we introduce lipidome isotope labeling of yeast (LILY) in order to produce (non-radioactive) isotopically labeled eukaryotic lipid standards in yeast for normalization and quantification in mass spectrometric assays. More specifically, LILY is a fast and efficient in vivo labeling strategy in Pichia pastoris for the production of

13C labeled lipid library further paving the way to comprehensive compound-specific internal standardization in quantitative mass spectrometry based assays. More than 200 lipid species (from PA, PC, PE, PG, PI, PS, LysoGP, CL, DAG, TAG, DMPE, Cer, HexCer, IPC, MIPC) were obtained from yeast extracts with an excellent

13C enrichment >99.5%, as determined by complementary high resolution mass spectrometry based shotgun and high resolution LC-MS/MS analysis. In a first proof of principle study we tested the relative and absolute quantification capabilities of the

13C enriched lipids obtained by LILY using a parallel reaction monitoring based LC-MS approach. In relative quantification it could be shown that compound specific internal standardization was essential for the accuracy extending the linear dynamic range to four orders of magnitude. Excellent analytical figures of merit were observed for absolute quantification for a selected panel of 5 investigated glycerophospholipids (e.g. LOQs around 5 fmol absolute; typical concentrations ranging between 1 to 10 nmol per 10

8 yeast cell starting material; RSDs <10% (N = 4)).

Organisation(s)
Department of Analytical Chemistry
External organisation(s)
Leibniz-Institut für Analytische Wissenschaften, ISOtopic Solutions, University of Aberdeen, Ruhr-Universität Bochum (RUB)
Journal
The Analyst
Volume
142
Pages
1891-1899
No. of pages
9
ISSN
0003-2654
DOI
https://doi.org/10.1039/c7an00107j
Publication date
06-2017
Peer reviewed
Yes
Austrian Fields of Science 2012
104002 Analytical chemistry
Keywords
ASJC Scopus subject areas
Analytical Chemistry, Biochemistry, Spectroscopy, Electrochemistry, Environmental Chemistry
Portal url
https://ucrisportal.univie.ac.at/en/publications/db4af8a6-cdba-42a9-a34a-3a23ab1cbd77

Projects

LILY-lipidome isotope labeling of yeast: in vivo synthesis of 13C labeled reference lipids for quantification by mass spectrometry

Author(s)
Evelyn Rampler, Cristina Coman, Gerrit Hermann, Albert Sickmann, Robert Ahrends, Gunda Koellensperger
Abstract

Quantification is an essential task in comprehensive lipidomics studies challenged by the high number of lipids, their chemical diversity and their dynamic range of the lipidome. In this work, we introduce lipidome isotope labeling of yeast (LILY) in order to produce (non-radioactive) isotopically labeled eukaryotic lipid standards in yeast for normalization and quantification in mass spectrometric assays. More specifically, LILY is a fast and efficient in vivo labeling strategy in Pichia pastoris for the production of

13C labeled lipid library further paving the way to comprehensive compound-specific internal standardization in quantitative mass spectrometry based assays. More than 200 lipid species (from PA, PC, PE, PG, PI, PS, LysoGP, CL, DAG, TAG, DMPE, Cer, HexCer, IPC, MIPC) were obtained from yeast extracts with an excellent

13C enrichment >99.5%, as determined by complementary high resolution mass spectrometry based shotgun and high resolution LC-MS/MS analysis. In a first proof of principle study we tested the relative and absolute quantification capabilities of the

13C enriched lipids obtained by LILY using a parallel reaction monitoring based LC-MS approach. In relative quantification it could be shown that compound specific internal standardization was essential for the accuracy extending the linear dynamic range to four orders of magnitude. Excellent analytical figures of merit were observed for absolute quantification for a selected panel of 5 investigated glycerophospholipids (e.g. LOQs around 5 fmol absolute; typical concentrations ranging between 1 to 10 nmol per 10

8 yeast cell starting material; RSDs <10% (N = 4)).

Organisation(s)
Department of Analytical Chemistry
External organisation(s)
Leibniz-Institut für Analytische Wissenschaften, ISOtopic Solutions, University of Aberdeen, Ruhr-Universität Bochum (RUB)
Journal
The Analyst
Volume
142
Pages
1891-1899
No. of pages
9
ISSN
0003-2654
DOI
https://doi.org/10.1039/c7an00107j
Publication date
06-2017
Peer reviewed
Yes
Austrian Fields of Science 2012
104002 Analytical chemistry
Keywords
ASJC Scopus subject areas
Analytical Chemistry, Biochemistry, Spectroscopy, Electrochemistry, Environmental Chemistry
Portal url
https://ucrisportal.univie.ac.at/en/publications/db4af8a6-cdba-42a9-a34a-3a23ab1cbd77

Talks

LILY-lipidome isotope labeling of yeast: in vivo synthesis of 13C labeled reference lipids for quantification by mass spectrometry

Author(s)
Evelyn Rampler, Cristina Coman, Gerrit Hermann, Albert Sickmann, Robert Ahrends, Gunda Koellensperger
Abstract

Quantification is an essential task in comprehensive lipidomics studies challenged by the high number of lipids, their chemical diversity and their dynamic range of the lipidome. In this work, we introduce lipidome isotope labeling of yeast (LILY) in order to produce (non-radioactive) isotopically labeled eukaryotic lipid standards in yeast for normalization and quantification in mass spectrometric assays. More specifically, LILY is a fast and efficient in vivo labeling strategy in Pichia pastoris for the production of

13C labeled lipid library further paving the way to comprehensive compound-specific internal standardization in quantitative mass spectrometry based assays. More than 200 lipid species (from PA, PC, PE, PG, PI, PS, LysoGP, CL, DAG, TAG, DMPE, Cer, HexCer, IPC, MIPC) were obtained from yeast extracts with an excellent

13C enrichment >99.5%, as determined by complementary high resolution mass spectrometry based shotgun and high resolution LC-MS/MS analysis. In a first proof of principle study we tested the relative and absolute quantification capabilities of the

13C enriched lipids obtained by LILY using a parallel reaction monitoring based LC-MS approach. In relative quantification it could be shown that compound specific internal standardization was essential for the accuracy extending the linear dynamic range to four orders of magnitude. Excellent analytical figures of merit were observed for absolute quantification for a selected panel of 5 investigated glycerophospholipids (e.g. LOQs around 5 fmol absolute; typical concentrations ranging between 1 to 10 nmol per 10

8 yeast cell starting material; RSDs <10% (N = 4)).

Organisation(s)
Department of Analytical Chemistry
External organisation(s)
Leibniz-Institut für Analytische Wissenschaften, ISOtopic Solutions, University of Aberdeen, Ruhr-Universität Bochum (RUB)
Journal
The Analyst
Volume
142
Pages
1891-1899
No. of pages
9
ISSN
0003-2654
DOI
https://doi.org/10.1039/c7an00107j
Publication date
06-2017
Peer reviewed
Yes
Austrian Fields of Science 2012
104002 Analytical chemistry
Keywords
ASJC Scopus subject areas
Analytical Chemistry, Biochemistry, Spectroscopy, Electrochemistry, Environmental Chemistry
Portal url
https://ucrisportal.univie.ac.at/en/publications/db4af8a6-cdba-42a9-a34a-3a23ab1cbd77