Literature DB >> 27165858

Elucidating the chemical structure of native 1-deoxysphingosine.

Regula Steiner1, Essa M Saied2, Alaa Othman1, Christoph Arenz2, Alan T Maccarone3, Berwyck L J Poad4, Stephen J Blanksby4, Arnold von Eckardstein1, Thorsten Hornemann5.   

Abstract

The 1-deoxysphingolipids (1-deoxySLs) are formed by an alternate substrate usage of the enzyme, serine-palmitoyltransferase, and are devoid of the C1-OH-group present in canonical sphingolipids. Pathologically elevated 1-deoxySL levels are associated with the rare inherited neuropathy, HSAN1, and diabetes type 2 and might contribute to β cell failure and the diabetic sensory neuropathy. In analogy to canonical sphingolipids, it was assumed that 1-deoxySLs also bear a (4E) double bond, which is normally introduced by sphingolipid delta(4)-desaturase 1. This, however, was never confirmed. We therefore supplemented HEK293 cells with isotope-labeled D3-1-deoxysphinganine and compared the downstream formed D3-1-deoxysphingosine (1-deoxySO) to a commercial synthetic SPH m18:1(4E)(3OH) standard. Both compounds showed the same m/z, but differed in their RPLC retention time and atmospheric pressure chemical ionization in-source fragmentation, suggesting that the two compounds are structural isomers. Using dimethyl disulfide derivatization followed by MS(2) as well as differential-mobility spectrometry combined with ozone-induced dissociation MS, we identified the carbon-carbon double bond in native 1-deoxySO to be located at the (Δ14) position. Comparing the chromatographic behavior of native 1-deoxySO to chemically synthesized SPH m18:1(14Z) and (14E) stereoisomers assigned the native compound to be SPH m18:1(14Z). This indicates that 1-deoxySLs are metabolized differently than canonical sphingolipids.
Copyright © 2016 by the American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  deoxysphingolipids; differential-mobility spectrometry; dimethyl disulfide adducts; double bond position; mass spectrometry; ozone-induced dissociation; structural isomers

Mesh:

Substances:

Year:  2016        PMID: 27165858      PMCID: PMC4918849          DOI: 10.1194/jlr.M067033

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  17 in total

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Review 2.  Analysis of unsaturated lipids by ozone-induced dissociation.

Authors:  Simon H J Brown; Todd W Mitchell; Stephen J Blanksby
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3.  Ozone-induced dissociation of conjugated lipids reveals significant reaction rate enhancements and characteristic odd-electron product ions.

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Journal:  Diabetes       Date:  2014-10-02       Impact factor: 9.461

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Authors:  Michael C Thomas; Todd W Mitchell; David G Harman; Jane M Deeley; Jessica R Nealon; Stephen J Blanksby
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  15 in total

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Authors:  Irina Alecu; Alaa Othman; Anke Penno; Essa M Saied; Christoph Arenz; Arnold von Eckardstein; Thorsten Hornemann
Journal:  J Lipid Res       Date:  2016-11-21       Impact factor: 5.922

3.  Localization of 1-deoxysphingolipids to mitochondria induces mitochondrial dysfunction.

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4.  Online Ozonolysis Combined with Ion Mobility-Mass Spectrometry Provides a New Platform for Lipid Isomer Analyses.

Authors:  Berwyck L J Poad; Xueyun Zheng; Todd W Mitchell; Richard D Smith; Erin S Baker; Stephen J Blanksby
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5.  Analytical separations for lipids in complex, nonpolar lipidomes using differential mobility spectrometry.

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Review 8.  Druggable Sphingolipid Pathways: Experimental Models and Clinical Opportunities.

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Review 9.  A Comprehensive Review: Sphingolipid Metabolism and Implications of Disruption in Sphingolipid Homeostasis.

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10.  Hereditary sensory neuropathy type 1-associated deoxysphingolipids cause neurotoxicity, acute calcium handling abnormalities and mitochondrial dysfunction in vitro.

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