| Literature DB >> 28770378 |
Kotaro Hama1, Yuko Fujiwara2, Hidetsugu Tabata2, Hideyo Takahashi2, Kazuaki Yokoyama2.
Abstract
Sphingomyelin (ceramide-phosphocholine, CerPCho) is a common sphingolipid in mammalian cells and is composed of phosphorylcholine and ceramide as polar and hydrophobic components, respectively. In this study, a qualitative liquid chromatography-electrospray ionization tandem mass spectrometry (LC-ESI-MS/MS/MS) analysis is proposed in which CerPCho structures were assigned based on product ion spectra corresponding to sphingosylphosphorylcholine and N-acyl moieties. From MS/MS/MS analysis of CerPCho, we observed product ion spectra of the N-acyl fatty acids as [RCO2]- ions as well as sphingosylphosphorylcholine. A calibration curve for CerPCho was constructed using two stable isotopically labeled CerPCho species and then used to quantify the CerPCho species in HeLa cells as a proof-of-principle study. The present study proposes an accurate method for quantifying and assigning structures to each CerPCho species in crude biologic samples by LC-ESI-MS/MS/MS analysis.Entities:
Keywords: Liquid chromatography-electrospray ionization-tandem mass spectrometry; MS/MS/MS analysis; N-Acyl fatty acid; Sphingomyelin
Mesh:
Substances:
Year: 2017 PMID: 28770378 PMCID: PMC5583271 DOI: 10.1007/s11745-017-4279-5
Source DB: PubMed Journal: Lipids ISSN: 0024-4201 Impact factor: 1.880
Comparison of methods for structural assignment of sphingomyelin species
| Polarity | Method | References | LCB |
| ||
|---|---|---|---|---|---|---|
| Numbera | Positiona | Numbera | Positiona | |||
| Positive | LC–MS/MS | [ | Sphingosineb | ✖ | ✖e | ✖ |
| MS/MS + alkaline metal (infusion) | [ | Sphingosineb | ✖ | ✔ | ✖ | |
| LC–MS/MS + O3, e−, UV | [ | Sphingosineb | ✔d | ✔d,f | ✔d, f | |
| Negative | LC–MS/MS | [ | SPCc | ✖ | ✖e | ✖ |
| LC–MS/MS + O3, radical | [ | SPCc | ✔d | ✔d,f | ✔d, f | |
| LC–MS/MS/MS using Q2 and LIT | SPCc | ✖ | Fatty acid [RCO2]− | ✖ | ||
a Number: number of carbons and double bonds; position: position of double bond in a sphingoid long chain base (LCB) and an N-acyl moiety (N-FA)
b Other LCBs such as sphinganine and sphingadienine were also directly detected
c Other LCBs such as sphinganine-1-phosphocholine and sphingadienine-1-phosphocholine were also directly detected
d Multiple fragment ions were produced according to the dissociation between C–C or C=C bonds in LCB and an N-FA
e The number of carbons and double bonds of N-FA were predicted by differential analysis between precursor ion and LCB ion
f Product ions corresponding to N-FA were different between each method for dissociation between C–C or C=C bonds
Fig. 1Scheme of CerPCho analysis in this study. The structure of each CerPCho was determined by product ion spectra obtained in negative ion mode. The first precursor ion ([M + HCOO]−) was demethylated in a Q2 quadrupole as a collision cell. Product ions from the second precursor ion of [M − CH3]− were produced in a Q3/linear ion trap (LIT) and were detected by an electron multiplier. Two product ion spectra corresponding to a sphingosylphosphorylcholine (SPC) and an N-acyl moiety were utilized to assign the molecular species of each CerPCho. In contrast, the amount of each CerPCho was quantified by multiple reaction monitoring (MRM) analysis in positive ion mode. Phosphorylcholine ([C5H15NO4P]+) dissociated from precursor ion ([M + H]+) in Q2 was selectively passed through Q3/LIT and detected. To determine the quantitative range, a calibration curve was constructed using standard samples containing two stable isotopically labeled CerPCho species (d18:1/(D9)-18:1 and d18:1/(D31)-16:0 CerPCho for a standard and an internal standard compound, respectively) with cell homogenates as biologic matrix
Fig. 2Product ion spectra of CerPCho in MS3 analysis. a Fragmentation pattern of CerPCho in MS3 analysis. b MS3 spectra derived from d18:1/18:1 CerPCho (top panel), d18:1/24:0 CerPCho (middle panel) and d18:1/(D31)-16:0 CerPCho (lower panel) in negative ion mode. A 20-µM solution of each CerPCho in methanol/acetonitrile/water/isopropanol (18/18/9/20, by vol) with 0.1% formic acid and 0.028% ammonia was infused at a rate of 10 µL/min. The m/z values of the first and second precursor ions analyzed in MS3 analysis are indicated in each panel. The choline moiety is represented as “Ch.”
Fig. 3Accurate mass analysis of product ions from CerPCho. 12.5 nmol of d18:1/18:1 CerPCho (upper panel) and d18:1/(D31)-16:0 CerPCho (lower panel) in methanol was infused at 50 µL/min with acetonitrile/water (70/30, by vol) into an IT-TOF MS instrument, and MS/MS spectra derived from a precursor ion ([M − CH3]−) were obtained. Peaks corresponding to [RCO2]− and SPC were observed
Calibration curve for sphingomyelin species
| Compound | Range (pmol) | Weight | Linearity | Precision (CV(%))a | Accuracy (%) | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Slope | Intercept |
| QC-Lb | QC-Mb | QC-Hb | QC-Lb | QC-Mb | QC-Hb | ||||
| (D9) CerPCho/(D31) CerPCho | 0.1–50 | 1/ | 0.200 | −0.052 | 0.985 | Intra-day ( | 3.9 | 2.2 | 1.9 | 3.2 | 2.3 | 10.1 |
| Inter-day ( | 6.8 | 6.0 | 2.0 | 7.8 | 4.8 | 12.3 | ||||||
a Precision was calculated as the coefficient of variation (CV)
b Three samples with 0.1, 1 and 10 pmol of d18:1/(D9)-18:1 CerPCho with 10 pmol of d18:1/(D31)-16:0 CerPCho per injection were analyzed as QC-L, QC-M and QC-H, respectively
Fig. 4MS3 spectra of specific m/z signals of CerPCho in HeLa cells. Samples extracted from HeLa cells were separated by HPLC equipped with a C18 column and analyzed by ESI-MS3 employing [M + HCOO]− and [M − CH3]− as first and second precursor ions, respectively. Each spectrum corresponding to N-acyl moieties and SPC are indicated with m/z. Each CerPCho species was determined by assigning both product ions of the N-acyl moiety and SPC, and they are summarized in Table 3. The m/z of first and second precursor ions analyzed in MS3 analysis are indicated in each panel. Note that the peaks of m/z 253 and 466 (f), 333 and 466 (m) or 333 and 494 (s) might have been the product ions from coeluted choline plasmalogen species with an isotope. MS3 spectral data presented in panel a–h, k, m–q and s were derived from non-treated HeLa cells. The data in i, j, l, r, t and u were from HeLa cells transfected with pcDNA3.1-hELOVL1 plasmid
Molecular species of sphingomyelin in HeLa cells
| Signalsa | Amount (pmol/mg protein) |
| Retention time (min) |
| SPC ( | Molecular species | Panel in Fig. | |
|---|---|---|---|---|---|---|---|---|
| Non-treated | ELOVL1b | |||||||
| 32:1 CerPCho | 115.5 | 173.2 | 719 | 13.3 | 14:0 (227) | d18:1 (449) | d18:1/14:0 | a |
| 16:0 (255) | d16:1 (421) | d16:1/16:0 | a | |||||
| 33:1 CerPCho | 239.8 | 150.7 | 733 | 14.7 | 16:0 (255) | d17:1 (435) | d17:1/16:0 | b |
| 34:2 CerPCho | 449.9 | 477.0 | 745 | 13.9 | 16:0 (255) | d18:2 (447) | d18:2/16:0 | c |
| 34:1 CerPCho | 3355.1 | 4545.8 | 747 | 16.3 | 16:0 (255) | d18:1 (449) | d18:1/16:0 | d |
| 34:0 CerPCho | 203.8 | 342.0 | 749 | 17.7 | 16:0 (255) | d18:0 (451) | d18:0/16:0 | e |
| 35:1 CerPCho | 106.3 | 322.6 | 761 | 18.4 | 17:0 (269) | d18:1 (449) | d18:1/17:0 | f |
| 36:2 CerPCho | 26.5 | 32.6 | 773 | 17.0 | 18:0 (283) | d18:2 (447) | d18:2/18:0 | g |
| 36:1 CerPCho | 94.9 | 76.2 | 775 | 19.9 | 16:1 (253) | d20:0 (479) | d20:0/16:1 | h |
| 18:0 (283) | d18:1 (449) | d18:1/18:0 | h | |||||
| 38:1 CerPCho | N.D.d | 34.9 | 803 | 24.0 | 20:0 (311) | d18:1 (449) | d18:1/20:0 | i |
| 40:2 CerPCho | 102.3 | 112.5 | 829 | 24.2 | 22:0 (339) | d18:2 (447) | d18:2/22:0 | j |
| 22:1 (337) | d18:1 (449) | d18:1/22:1e | j | |||||
| 40:1 CerPCho | 235.0 | 159.3 | 831 | 28.0 | 22:0 (339) | d18:1 (449) | d18:1/22:0 | k |
| 40:0 CerPCho | N.D.d | 8.0 | 833 | 29.7 | 22:0 (339) | d18:0 (451) | d18:0/22:0 | l |
| 41:2 CerPCho | 83.3 | 140.9 | 843 | 25.9 | 23:1 (351) | d18:1 (449) | d18:1/23:1 | m |
| 41:1 CerPCho | 23.9 | 31.1 | 845 | 30.1 | 23:0 (353) | d18:1 (449) | d18:1/23:0 | n |
| 42:3 CerPCho | 286.5 | 255.1 | 855 | 24.6 | 24:2 (363) | d18:1 (449) | d18:1/24:2 | o |
| 24:1 (365) | d18:2 (447) | d18:2/24:1 | o | |||||
| 42:2 CerPCho | 853.2 | 1104.3 | 857 | 27.9 | 24:1 (365) | d18:1 (449) | d18:1/24:1 | p |
| 42:1 CerPCho | 94.6 | 20.7 | 859 | 32.1 | 24:0 (367) | d18:1 (449) | d18:1/24:0 | q |
| 42:0 CerPCho | N.D.d | 26.9 | 861 | 33.7 | 24:0 (367) | d18:0 (451) | d18:0/24:0 | r |
| 43:2 CerPCho | 12.9 | 24.2 | 871 | 29.6 | 25:1 (379) | d18:1 (449) | d18:1/25:1 | s |
| 43:1 CerPCho | N.D.d | 3.3 | 873 | 34.3 | 25:0 (381) | d18:1 (449) | d18:1/25:0 | t |
| 44:2 CerPCho | N.D.d | 12.3 | 885 | 31.9 | 26:1 (393) | d18:1 (449) | d18:1/26:1 | u |
a Each sphingomyelin (CerPCho) species observed in quantitative analysis was represented by the total carbon and double bond number of a LCB and an N-acyl moiety
b HeLa cells were transfected with pcDNA3.1-hELOVL1 plasmid and cultured in culture medium with 10% FCS. Cells were harvested 72 h after transfection
c Product ion spectra for each CerPCho species were presented in each panel of Fig. 4
d CerPCho species that fragment spectra could not be assigned in the qualitative analysis were referred to as ‘N.D.’
e Product ion spectra for d18:1/22:1 CerPCho were observed in HeLa cells transfected with pcDNA3.1-hELOVL1 plasmid but not in non-treated cells
Fig. 5The amount of each sphingomyelin species in non-treated HeLa cells (indicated as ‘−’) or HeLa cells transfected with pcDNA3.1-hELOVL1 plasmid (as ‘+’) is represented on a logarithmic scale (pmol/mg protein). CerPCho species with amounts less than the quantitative range or the species whose structure was not determined in qualitative analysis are indicated in white; actual values listed in Table 3