Record Information |
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Version | 5.0 |
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Status | Expected but not Quantified |
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Creation Date | 2008-10-29 14:51:07 UTC |
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Update Date | 2022-11-30 19:03:55 UTC |
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HMDB ID | HMDB0011153 |
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Secondary Accession Numbers | |
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Metabolite Identification |
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Common Name | MG(P-18:0/0:0/0:0) |
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Description | 1-(1Z-octadecenyl)-sn-glycerol is an ether lipid. Ether lipids are lipids in which one or more of the carbon atoms on glycerol is bonded to an alkyl chain via an ether linkage, as opposed to the usual ester linkage. Plasmalogens are glycerol ether phospholipids. They are of two types, alkyl ether (-O-CH2-) and alkenyl ether (-O-CH=CH-). Dihydroxyacetone phosphate (DHAP) serves as the glycerol precursor for the synthesis of plasmalogens. Three major classes of plasmalogens have been identified: choline, ethanolamine and serine derivatives. Ethanolamine plasmalogen is prevalent in myelin. Choline plasmalogen is abundant in cardiac tissue. Usually, the highest proportion of the plasmalogen form is in the ethanolamine class with rather less in choline, and commonly little or none in other phospholipids such as phosphatidylinositol. In choline plasmalogens of most tissues, a higher proportion is often of the O-alkyl rather than the O-alkenyl form, but the reverse tends to be true in heart lipids. In animal tissues, the alkyl and alkenyl moieties in both non-polar and phospholipids tend to be rather simple in composition with 16:0, 18:0 and 18:1 (double bond in position 9) predominating. Ether analogues of triacylglycerols, i.e. 1-alkyldiacyl-sn-glycerols, are present at trace levels only if at all in most animal tissues, but they can be major components of some marine lipids. |
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Structure | [H][C@](O)(CO)CO\C=C/CCCCCCCCCCCCCCCC InChI=1S/C21H42O3/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18-24-20-21(23)19-22/h17-18,21-23H,2-16,19-20H2,1H3/b18-17-/t21-/m0/s1 |
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Synonyms | Value | Source |
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1-(1Z-Octadecenyl)-sn-glycerol | HMDB | MAG(18:1) | HMDB | MAG(p-18:0) | HMDB | MAG(p-18:0/0:0/0:0) | HMDB | MG(18:1) | HMDB | MG(p-18:0) | HMDB | MG(O-18:1(1Z)) | HMDB | MG(O-18:1(1Z)/0:0/0:0) | HMDB | (2S)-3-[(1Z)-1-Octadecen-1-yloxy]-1,2-propanediol | HMDB | MAG(O-18:1(1Z)) | HMDB | MAG(O-18:1(1Z)/0:0/0:0) | HMDB | MG(P-18:0/0:0/0:0) | HMDB |
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Chemical Formula | C21H42O3 |
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Average Molecular Weight | 342.5564 |
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Monoisotopic Molecular Weight | 342.31339521 |
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IUPAC Name | (2S)-3-[(1Z)-octadec-1-en-1-yloxy]propane-1,2-diol |
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Traditional Name | (2S)-3-[(1Z)-octadec-1-en-1-yloxy]propane-1,2-diol |
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CAS Registry Number | 18330-10-4 |
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SMILES | [H][C@](O)(CO)CO\C=C/CCCCCCCCCCCCCCCC |
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InChI Identifier | InChI=1S/C21H42O3/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18-24-20-21(23)19-22/h17-18,21-23H,2-16,19-20H2,1H3/b18-17-/t21-/m0/s1 |
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InChI Key | WXWPBUKRBCYIMR-OGLOHFSISA-N |
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Chemical Taxonomy |
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Description | Belongs to the class of organic compounds known as glycerol vinyl ethers. These are lipids containing a vinyl ether derivative of glycerol. |
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Kingdom | Organic compounds |
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Super Class | Lipids and lipid-like molecules |
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Class | Glycerolipids |
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Sub Class | Glycerol vinyl ethers |
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Direct Parent | Glycerol vinyl ethers |
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Alternative Parents | |
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Substituents | - Glycerol vinyl ether
- Monoradylglycerol
- Secondary alcohol
- 1,2-diol
- Organic oxygen compound
- Hydrocarbon derivative
- Primary alcohol
- Organooxygen compound
- Alcohol
- Aliphatic acyclic compound
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Molecular Framework | Aliphatic acyclic compounds |
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External Descriptors | Not Available |
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Ontology |
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Physiological effect | Not Available |
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Disposition | |
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Process | Not Available |
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Role | Not Available |
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Physical Properties |
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State | Solid |
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Experimental Molecular Properties | Property | Value | Reference |
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Melting Point | Not Available | Not Available | Boiling Point | Not Available | Not Available | Water Solubility | Not Available | Not Available | LogP | Not Available | Not Available |
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Experimental Chromatographic Properties | Not Available |
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Predicted Molecular Properties | |
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Predicted Chromatographic Properties | Predicted Collision Cross SectionsPredicted Kovats Retention IndicesUnderivatizedDerivatizedDerivative Name / Structure | SMILES | Kovats RI Value | Column Type | Reference |
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MG(P-18:0/0:0/0:0),1TMS,isomer #1 | CCCCCCCCCCCCCCCC/C=C\OC[C@H](CO)O[Si](C)(C)C | 2676.8 | Semi standard non polar | 33892256 | MG(P-18:0/0:0/0:0),1TMS,isomer #2 | CCCCCCCCCCCCCCCC/C=C\OC[C@@H](O)CO[Si](C)(C)C | 2679.4 | Semi standard non polar | 33892256 | MG(P-18:0/0:0/0:0),2TMS,isomer #1 | CCCCCCCCCCCCCCCC/C=C\OC[C@H](CO[Si](C)(C)C)O[Si](C)(C)C | 2718.0 | Semi standard non polar | 33892256 | MG(P-18:0/0:0/0:0),1TBDMS,isomer #1 | CCCCCCCCCCCCCCCC/C=C\OC[C@H](CO)O[Si](C)(C)C(C)(C)C | 2904.3 | Semi standard non polar | 33892256 | MG(P-18:0/0:0/0:0),1TBDMS,isomer #2 | CCCCCCCCCCCCCCCC/C=C\OC[C@@H](O)CO[Si](C)(C)C(C)(C)C | 2894.4 | Semi standard non polar | 33892256 | MG(P-18:0/0:0/0:0),2TBDMS,isomer #1 | CCCCCCCCCCCCCCCC/C=C\OC[C@H](CO[Si](C)(C)C(C)(C)C)O[Si](C)(C)C(C)(C)C | 3179.4 | Semi standard non polar | 33892256 |
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| GC-MS SpectraSpectrum Type | Description | Splash Key | Deposition Date | Source | View |
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Predicted GC-MS | Predicted GC-MS Spectrum - MG(P-18:0/0:0/0:0) GC-MS (Non-derivatized) - 70eV, Positive | splash10-03di-9522000000-0648546cc503b4c8335c | 2017-09-01 | Wishart Lab | View Spectrum | Predicted GC-MS | Predicted GC-MS Spectrum - MG(P-18:0/0:0/0:0) GC-MS (2 TMS) - 70eV, Positive | splash10-00di-9541300000-efd7e4fb3112e64dc9d6 | 2017-10-06 | Wishart Lab | View Spectrum | Predicted GC-MS | Predicted GC-MS Spectrum - MG(P-18:0/0:0/0:0) GC-MS (Non-derivatized) - 70eV, Positive | Not Available | 2021-10-12 | Wishart Lab | View Spectrum |
MS/MS SpectraSpectrum Type | Description | Splash Key | Deposition Date | Source | View |
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Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 10V, Positive-QTOF | splash10-0006-1029000000-86a28a90d96e2a6e724f | 2017-09-01 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 20V, Positive-QTOF | splash10-0kdi-9364000000-6eb94753fc24766bbe39 | 2017-09-01 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 40V, Positive-QTOF | splash10-0zic-9660000000-0fc2fabe0d71efa65840 | 2017-09-01 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 10V, Negative-QTOF | splash10-0006-2039000000-2b365febf58959bf1d8c | 2017-09-01 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 20V, Negative-QTOF | splash10-060c-8094000000-f790818d7e947f008d85 | 2017-09-01 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 40V, Negative-QTOF | splash10-0abc-9040000000-2297dbd7a9f5424a259a | 2017-09-01 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 10V, Positive-QTOF | splash10-056u-9135000000-ced185e311bc29fba73d | 2021-09-23 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 20V, Positive-QTOF | splash10-0a6r-9232000000-5c9fbf28d6fdc56a0e2d | 2021-09-23 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 40V, Positive-QTOF | splash10-0a4i-9000000000-ed5d55a35b491f17e3af | 2021-09-23 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 10V, Negative-QTOF | splash10-0006-1019000000-3b0002a435a4257345df | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 20V, Negative-QTOF | splash10-00r6-9040000000-e897728eb787640c14c5 | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - MG(P-18:0/0:0/0:0) 40V, Negative-QTOF | splash10-014r-4390000000-0ebabe6a97ee569852b6 | 2021-09-24 | Wishart Lab | View Spectrum |
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General References | - Simons K, Toomre D: Lipid rafts and signal transduction. Nat Rev Mol Cell Biol. 2000 Oct;1(1):31-9. [PubMed:11413487 ]
- Watson AD: Thematic review series: systems biology approaches to metabolic and cardiovascular disorders. Lipidomics: a global approach to lipid analysis in biological systems. J Lipid Res. 2006 Oct;47(10):2101-11. Epub 2006 Aug 10. [PubMed:16902246 ]
- Sethi JK, Vidal-Puig AJ: Thematic review series: adipocyte biology. Adipose tissue function and plasticity orchestrate nutritional adaptation. J Lipid Res. 2007 Jun;48(6):1253-62. Epub 2007 Mar 20. [PubMed:17374880 ]
- Lingwood D, Simons K: Lipid rafts as a membrane-organizing principle. Science. 2010 Jan 1;327(5961):46-50. doi: 10.1126/science.1174621. [PubMed:20044567 ]
- Ghosh S, Strum JC, Bell RM: Lipid biochemistry: functions of glycerolipids and sphingolipids in cellular signaling. FASEB J. 1997 Jan;11(1):45-50. [PubMed:9034165 ]
- Gunstone, Frank D., John L. Harwood, and Albert J. Dijkstra (2007). The lipid handbook with CD-ROM. CRC Press.
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