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Method Article
We describe a new quantitative lipidomics method for identifying numerous lipid species in yeast using survey-scan electrospray ionization mass spectrometry (ESI/MS). This method exceeds currently available methods for lipid identification and quantification in the ability to resolve various molecular forms of lipids, sensitivity, and speed.
Materials and methods
Lipid extraction
This is a modification of the protocol described by Bligh and Dyer8. All manipulations with extracted lipids should be done using glass pipettes or syringes; plastics will create a large background signal if they come into contact with chloroform. The exact volumes are not critical as long as the ratios of 1:2:0.8 for chloroform - MeOH - H2O at step 3 and 2:2:1.8 for chloroform - MeOH - H2O at step 7 are conserved.
Analysis of lipids by mass spectrometry
A stock mix of lipid standards in chloroform should be prepared beforehand as per Table 1, as well as a stock solution of MeOH - chloroform (1:1) with 0.1% (v/v) ammonium hydroxide.
Table 1. Internal lipid standards, their concentrations in the standard mix, and the MS mode for their analysis.
Lipid class | Standard chain composition | Mass of standard | Concentration (μg/ml) | MS mode |
Phosphatidic acid | 14:0/14:0 | 591.40 | 100 | Negative |
Phosphatidylethanolamine | 14:0/14:0 | 634.45 | 200 | Negative |
Phosphatidylinositol | N/A | N/A | N/A | Negative |
Phosphatidylserine | 14:0/14:0 | 622.37 | 40 | Negative |
Cardiolipin | 4x14:0 | 619.92 | 100 | Negative |
Free fatty acids | 19:0 | 297.28 | 100 | Negative |
Phosphatidylcholine | 14:0/14:0 | 650.48 | 100 | Positive |
Triacylglycerols | 13:0/13:0/13:0 | 698.63 | 200 | Positive |
Table 2. Instrument settings for a Micromass Q-ToF 2 (Waters, Milford, MA, USA) equipped with a nano-electrospray source.
Flow rate | Cone voltage | Capillary voltage | Collision gas | |
Positive mode | 1μl/min | -28 v | 3.0 kv | 10 |
Negative mode | 1μl/min | 30 v | -3.2 kv | 10 |
This method enables a rapid quantitative assessment of the yeast lipidome using readily available, inexpensive materials. The method allows the identification of most of the lipid species found in yeast cells with the exception of diacylglycerols, ergosterols and ergosteryl esters, although these lipids can be identified by replacing ammonium hydroxide with lithium hydroxide. The described method enables lipid identification and quantification at the concentrations as low as μg/ml, with the concentration linearity spr...
We are grateful to Alain Tessier for valuable advise, discussions, and technical support. We acknowledge the Centre for Biological Applications of Mass Spectrometry at Concordia University for outstanding services. This work was supported by grants from the CIHR and the NSERC of Canada. V.I.T. is a CIHR New Investigator and Concordia University Research Chair in Genomics, Cell Biology and Aging.
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