- P-ISSN 2233-4203
- E-ISSN 2093-8950
Drosophila melanogaster (fruits fly) is a representative model system widely used in biological studies because its brain function and basic cellular processes are similar to human beings. The whole head of the fly is often used to obtain the key function in brain-related diseases like degenerative brain diseases; however the biomolecular distribution of the head may be slightly different from that of a brain. Herein, lipid profiles of the head and dissected brain samples of Drosophila were studied using electrospray ionization-mass spectrometry (ESI-MS). According to the sample types, the detection of phospholipid ions was suppressed by triacylglycerol (TAG), or the specific phospholipid signals that are absent in the mass spectrum were mea-sured. The lipid distribution was found to be different in the wild-type and the microRNA-14 deficiency model (miR-14Δ 1 ) with abnormal lipid metabolism. A few phospholipids were also profiled by comparison of the head and the brain in two fly model systems. The mass spectra showed that the phospholipid distributions in the miR-14Δ 1 model and the wild-type were different, and principal component analysis revealed a correlation between some phospholipids (phosphatidylethanolamine (PE), phos-phatidylinositol (PI), and phosphatidylserine (PS)) in miR-14Δ 1 . The overall results suggested that brain-related lipids should be profiled using fly samples after dissection for more accurate analysis.
Gaskell, S. J.. (1997). . J. Mass Spectrom, 32, 677-.
Wilm, M.. (2011). . Proteomics, 10, M111.00940-.
Banerjee, S. (2012). . Int. J. Anal. Chem, 2012, 1-.
Glish, G. L. (1984). . Anal. Chem, 56, 2291-.
Chernushevich, I. V. (2001). . J. Mass Spectrom, 36, 849-.
Van Den Heuvel, R. H. H. (2006). . Anal. Chem, 78, 7473-.
Draper, J. (2013). . Metabolomics, 9, 4-.
Loo, J. A.. (1997). . Mass Spectrom. Rev, 16, 1-.
Han, X. (2005). . Mass Spectrom. Rev, 24, 367-.
Beck, J. L. (2001). . Mass Spectrom. Rev, 20, 61-.
강교빈. (2016). UHPLC-ESI-qTOF-MS Analysis of Cyclopeptide Alkaloids in the Seeds of Ziziphus jujuba var. spinosa. Mass Spectrometry Letters, 7(2), 45-49. http://dx.doi.org/10.5478/MSL.2016.7.2.45.
이재욱. (2018). Direct Quantitation of Amino Acids in Human Serum Using a Stepwise- Dilution Strategy and a Mixed-Mode Liquid Chromatography-Tandem Mass Spectrometry Method. Mass Spectrometry Letters, 9(1), 30-36. http://dx.doi.org/10.5478/MSL.2017.9.1.30.
Van Meer, G. (2008). . Nat. Rev. Mol. Cell Biol, 9, 1124-.
Athenstaedt, K. (2006). . Cell. Mol. Life Sci, 63, 1355-.
Gilbert, L. I.. (2008). . Mol. Cell. Endocrinol, 293, 25-.
Kosicek, M. (2013). . Int. J. Mol. Sci, 14, 1310-.
Shevchenko, A. (2010). . Nat. Rev. Mol. Cell Biol, 11, 593-.
Carvalho, M. (2012). . Mol. Syst. Biol, 8, 1-.
Li, L. (2014). . Int. J. Mol. Sci, 15, 10492-.
McGurk, L. (2015). . Genetics, 201, 377-.
Baker, K. D. (2007). . Cell Metab, 6, 257-.
Bilen, J. (2005). . Annu. Rev. Genet, 39, 153-.
Kliman, M. (2010). . Mol. Biosyst, 6, 958-.
Phan, N. T. N. (2013). . Anal. Chem, 85, 8448-.
Phan, N. T. N. (2015). . Anal. Chem, 87, 4063-.
Philipsen, M. H. (2018). . ACS Chem. Neurosci, 9(6), 1462-.
Le, M. U. T. (2018). . Biointerphases, 13, 03-414.
Nuwal, T. (2011). . J Proteome Res, 10, 541-.
Jeffries, K. A. (2014). . J. FEBS Lett, 588, 1596-.
Singh, V. (2017). . J. Proteome Res, 16, 3863-.
Xu, P. (2003). . Curr. Biol, 13, 790-.
Hammad, L. A. (2011). . Rapid Commun. Mass Spectrom, 25, 2959-.