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Updated: Mar 27, 2026

Lipid Droplet Isolation for Quantitative Mass Spectrometry Analysis
Published on: April 17, 2017
Identification of mumps virus protein and lipid composition by mass spectrometry
Marija Brgles1,2, Maximilian Bonta3, Maja Šantak4,5
1University of Zagreb, Centre for Research and Knowledge Transfer in Biotechnology, Rockefellerova 10, HR-10000, Zagreb, Croatia. mbrgles@gmail.com.
Background:
Mumps virus is a negative-sense, single stranded RNA virus consisting of a ribonucleocapsid core enveloped by a lipid membrane derived from host cell, which causes mumps disease preventable by vaccination. Since virus lipid envelope and glycosylation pattern are not encoded by the virus but dependent on the host cell at least to some extent, the aim of this work was to analyse L-Zagreb (L-Zg) mumps virus lipids and proteins derived from two cell types; Vero and chicken embryo fibroblasts (CEF). Jeryl Lynn 5 (JL5) mumps strain lipids were also analysed.
Methods:
Virus lipids were isolated by organic phase extraction and subjected to 2D-high performance thin layer chromatography followed by lipid extraction and identification by matrix-assisted laser desorption/ionization mass spectrometry (MALDI MS). Virus samples were also subjected to gel electrophoresis under denaturating conditions and protein bands were excised, in-gel trypsinized and identified by MS as well as tandem MS.
Results:
Results showed that lipids of both mumps virus strains derived from Vero cells contained complex glycolipids with up to five monosaccharide units whereas the lipid pattern of mumps virus derived from CEF was less complex. Mumps virus was found to contain expected structural proteins with exception of fusion (F) protein which was not detected but on the other hand, V protein was detected. Most interesting finding related to the mumps proteins is the detection of several forms of nucleoprotein (NP), some of which appear to be C-terminally truncated.
Conclusions:
Differences found in lipid and protein content of mumps virus demonstrated the importance of detailed biochemical characterization of mumps virus and the methodology described here could provide a means for a more comprehensive quality control in vaccine production.
Insights
Mumps virus lipid and protein content varies by host cell. This biochemical analysis of mumps virus strains provides insights for improved vaccine quality control.
Area of Science:
- Virology
- Biochemistry
- Immunology
Background:
- Mumps virus is a negative-sense, single-stranded RNA virus causing a vaccine-preventable disease.
- Virus lipid envelope and glycosylation depend on host cells, influencing viral composition.
Purpose of the Study:
- To analyze lipids and proteins of L-Zagreb (L-Zg) mumps virus from Vero cells and chicken embryo fibroblasts (CEF).
- To compare L-Zg and Jeryl Lynn 5 (JL5) mumps virus lipid profiles.
Main Methods:
- Lipid isolation via organic extraction, 2D-TLC, and MALDI MS identification.
- Protein analysis using SDS-PAGE, in-gel trypsinization, MS, and tandem MS.
Main Results:
- Mumps virus from Vero cells showed complex glycolipids; virus from CEF had less complex lipids.
- Fusion (F) protein was undetected; V protein was detected.
- Multiple forms of nucleoprotein (NP), some C-terminally truncated, were identified.
Conclusions:
- Host cell type significantly impacts mumps virus lipid and protein composition.
- Detailed biochemical characterization is crucial for mumps virus.
- The described methodology can enhance mumps vaccine quality control.
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