Structural Determination of Lysosphingomyelin-509 and Discovery of Novel Class Lipids from Patients with Niemann-Pick Disease Type C.
Masamitsu MaekawaIsamu JinnohYotaro MatsumotoAya NaritaRyuichi MashimaHidenori TakahashiAnna IwahoriDaisuke SaigusaKumiko FujiiAi AbeKatsumi HigakiShosei YamauchiYuji OzekiKazutaka ShimodaYoshihisa TomiokaTorayuki OkuyamaYoshikatsu EtoKousaku OhnoPeter T ClaytonHiroaki YamaguchiNariyasu ManoPublished in: International journal of molecular sciences (2019)
Niemann-Pick disease type C (NPC) is an autosomal recessive disorder caused by the mutation of cholesterol-transporting proteins. In addition, early treatment is important for good prognosis of this disease because of the progressive neurodegeneration. However, the diagnosis of this disease is difficult due to a variety of clinical spectrum. Lysosphingomyelin-509, which is one of the most useful biomarkers for NPC, was applied for the rapid and easy detection of NPC. The fact that its chemical structure was unknown until recently implicates the unrevealed pathophysiology and molecular mechanisms of NPC. In this study, we aimed to elucidate the structure of lysosphingomyelin-509 by various mass spectrometric techniques. As our identification strategy, we adopted analytical and organic chemistry approaches to the serum of patients with NPC. Chemical derivatization and hydrogen abstraction dissociation-tandem mass spectrometry were used for the determination of function groups and partial structure, respectively. As a result, we revealed the exact structure of lysosphingomyelin-509 as N-acylated and O-phosphocholine adducted serine. Additionally, we found that a group of metabolites with N-acyl groups were increased considerably in the serum/plasma of patients with NPC as compared to that of other groups using targeted lipidomics analysis. Our techniques were useful for the identification of lysosphingomyelin-509.
Keyphrases
- tandem mass spectrometry
- solid phase extraction
- liquid chromatography
- simultaneous determination
- ms ms
- small molecule
- multiple sclerosis
- autism spectrum disorder
- mass spectrometry
- fatty acid
- density functional theory
- bioinformatics analysis
- gas chromatography mass spectrometry
- intellectual disability
- molecularly imprinted
- quantum dots
- single cell
- protein kinase
- duchenne muscular dystrophy