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Abstrakty
Long chain base compositions of gangliosides containing mainly stearic acid could be determined without any chemical modification by matrix-assisted laser desorption ionization time-of-flight mass spectrometry with delayed ion extraction (DE MALDI-TOF MS). The analytical results for the long chain base compositions of various samples of GM1 from the brain tissues of patients with different diseases at different ages confirmed that the proportion of d20:1 (icosasphingosine) and d20 (icosa-sphinganine) of the total sphingosine bases increased quickly until adolescent or adult age and then remained constant slightly exceeding 50%; this value was evidently higher than the proportion of d20:1 and d20 of GM1 in various adult mammalian brains. A long chain base composition of GM1 from the brain tissue of a patient with infantile type of GM1-gangliosidosis at 4y2m was abnormal and so was in two sibling patients with Spielmeyer-Vogt type of juvenile amaurotic idiocy at 19y and 21y in spite of that in the latter there was no accumulation of GM1 in the brain tissue. On the other hand, a patient with adult type of GM1 gangliosidosis at 66y showed a local accumulation of GM1 in the putamen and caudate nucleus, but its long chain base composition was found to be normal. It was of interest that the white matter of Eker rat with hereditary renal carcinoma contained a large amount of plasmalocerebroside as compared with the amount of cerebroside and sphingomyelin. The individual molecular species of plasmalocerebroside were identified by DE MALDI-TOF MS.
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Opis fizyczny
p.987-999,fig.
Twórcy
autor
- Shinshu University School of Medicine, Matsumoto 390, Japan
autor
autor
autor
Bibliografia
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- 2. Taketomi, T., Hara, A., Uemura. K., Kura- hashi, H. & Sugiyama, E. (1996) A microwave- mediated saponification of galactosylcera-mide and galactosylceramide I -sulfate and identification of their lyso-coiupuund by delayed extraction matrix-assisted laser desorption ionization time-of-flight mass spectrometry. Biochem. Biophys. Res. Commun. 224, 462-467.
- 3. Taketomi, T., Hara, A., Uemura, K., Kura- hashi, H. & Sugiyama, E. (1997) Preparation of various lysogangliosides including lyso- fucosyl G^i and delayed extraction matrix- assisted laser desorption ionization time-of- flight mass spectrometric analysis. J. Bio- chem. (Tokyo), 121, 264-269.
- 4. Sugiyama, E., Hara, A., Uemura, K. & Taketomi, T. (1997) Application of matrix-assisted laser desorption ionization time-of-flight mass spectrometry with delayed ion extraction to ganglioside analyses. Glycobiology 7, 719-724.
- 5. Naoi, M. & Klenk, E. (1972) The sphingosine bases of the gangliosides from developing human brain and from brains of amaurotic idiots. Hoppe-Seyler's Z. Physiol. Chem. 353, 1677-1683.
- 6. Mansson, J.-E., Vanier, M.-T. & Svenner- holm, L. (1978) Change in the fatty acid and sphingosine composition of the major gangliosides of human brain with age. J. Neurochem. 10, 613-623.
- 7. Sonnino, S., Bassi, R., Chigorno, V. & Tetta- manti, G. (1990) Further studies on the changes of chicken brain gangliosides during prenatal and postnatal life. J. Neurochem. 54, 1653-1660.
- 8. Palestini, P., Masserini, M., Sonnino, S., Giuliani, A. & Tettamanti, G. (1990) Changes in the ceramide composition of rat forebrain gangliosides with age. J. Neurochem. 54, 230-235.
- 9. Kawamura, N. & Taketomi, T. (1977) A new procedure for the isolation of brain gangliosides and determination of their long chain base compositions. J. Biochem. (Tokyo), 81, 1217-1225.
- 10. Levery, S.B.. Nudelman, E.D. & Hakomori, S. (1992) Novel modification of glycosphingolip- ids by long-chain cyclic acetals: Isolation and characterization of plasmalocerebroside from human brain. Biochemistry 31, 5335-5340.
- 11. Yachida, Y., Kashiwagi, M., Mikami, T., Tsuchihashi, K., Daino, T., Akino, T. & Gasa, S. (1998) Stereochemical structures of synthesized and natural plasmalogalactosylcera- mides from equine brain. J. Lipid Res. 39, 1039-1045.
- 12. Taketomi, T. & Kawamura, N. (1974) Sphingosine bases of gangliosides in juvenile amaurotic family idiocy (Spielmeyer-Vogt Type). J. Biochem. (Tokyo), 75, 1403-1406.
- 13. Kawamura, N. & Taketomi, T. (1975) Further study on cerebral sphingolipids including gangliosides in two cases of juvenile amaurotic family idiocy (Spielmeyer-Vogt type) using a new analytical procedure of sphingolipids. Jpn. J. Exp. Med. 45, 489-500.
- 14. Taketomi, T., Hara. A. & Kasama, T. (1984) Cerebral and visceral organ gangliosides and related glycolipids in G^rgangliosidosis type 1, type 2 and chronic type. Adv. Exp. Med. Biol 174, 419-429.
- 15. Yoshida, K., Ikeda, S., Kawaguchi, K. & Yan- agisawa, N. (1994) Adult Gnyu gangliosidosis: Immunohistochemical and uitrastructural findings in an autopsy case. Neurology 44, 2376-2382.
- 16. Nudelman, E.D., Levery, S.B., Igarashi, Y. & Hakomori, S. (1992) Plasmalopsychosine, a novel plasmal (fatty aldehyde) conjugate of psychosine with cyclic acetal linkage. Isolation and characterization from human brain white matter. J. Biol. Chem. 267, 11007- 11016.
- 17. Taketomi, T. & Kawamura, N. (1972) Degradation of sphingosine bases during acidic hydrolysis of sphingomyelin, cerebroside or psychosine. J. Biochem (Tokyo), 72, 189-193.
- 18. Kisic, A., Tsuda, M., Kulmacz, R.J., Wilson, W.K. & Schroefer, G.J., Jr. (1995) Sphin- golipid bases. A revisitation of the O-methyl derivatives of sphingosine. Isolation and characterization of diacetate assignments for D- e/yi/iro-sphingosine. J. Lipid Res. 36, 787- 803.
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Bibliografia
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