The role of CMP-N-acetylneuraminic acid hydroxylase in determining the level of N-glycolylneuraminic acid in porcine tissues

被引:0
作者
Yanina N. Malykh
Lee Shaw
Roland Schauer
机构
[1] Shemyakin & Ovchinnikov Institute of Bioorganic Chemistry,ul. Miklukho
[2] iochemisches Institut,Maklaya 16
[3] Christian-Albrechts-Universität zu Kiel,10, 117871
[4] Olshausenstr. 40,undefined
来源
Glycoconjugate Journal | 1998年 / 15卷
关键词
hydroxylase; sialic acids; N-glycolylneuraminic acid; CMP-N-acetylneuraminic acid; porcine tissues; ELISA; regulation;
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摘要
The biosynthesis of the sialic acid N-glycolylneuraminic acid (Neu5Gc) occurs by the action of cytidine monophosphate-N-acetylneuraminate (CMP-Neu5Ac) hydroxylase. Previous investigations on a limited number of tissues suggest that the activity of this enzyme governs the extent of glycoconjugate sialylation with Neu5Gc. Using improved analytical procedures and a panel of nine porcine tissues, each expressing different amounts of Neu5Gc, we have readdressed the issue of the regulation of Neu5Gc incorporation into glycoconjugates. The following parameters were measured for each tissue: the molar ratio Neu5Gc/Neu5Ac, the activity of the hydroxylase, and the relative amount of hydroxylase protein, as determined by enzyme-linked immunosorbent assay (ELISA). A positive correlation between the activity of the hydroxylase and the molar ratio Neu5Gc/Neu5Ac was observed for each tissue. In addition, the hydroxylase activity correlated with the amount of enzyme protein, though in heart and lung disproportionately large amounts of immunoreactive protein were detected. Taken together, the results suggest that the incorporation of Neu5Gc into glycoconjugates is generally controlled by the amount of hydroxylase protein expressed in a tissue.
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页码:885 / 893
页数:8
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共 112 条
  • [1] Schauer R(1991)undefined Carbohydr Res 213 353-59
  • [2] Stoll S(1988)undefined J Biol Chem 263 15540-5
  • [3] Reuter G(1990)undefined FEBS Lett 275 9-14
  • [4] Bouhour D(1988)undefined Biol Chem Hoppe-Seyler 369 477-86
  • [5] Bouhours JF(1989)undefined Biochem J 263 355-63
  • [6] Hokke CH(1994)undefined Glycobiology 4 675-83
  • [7] Bergwerff AA(1994)undefined J Biol Chem 269 9024-9
  • [8] van Dedem GWK(1996)undefined FEBS Lett 385 197-200
  • [9] van Oostrum J(1990)undefined J Biochem 108 704-6
  • [10] Kamerling JP(1994)undefined Eur J Biochem 219 1001-11