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马脾铁蛋白和大鼠肝铁蛋白的非酶糖基化作用。

Non-enzymic glycosylation of horse spleen and rat liver ferritins.

作者信息

Zaman Z, Verwilghen R L

出版信息

Biochim Biophys Acta. 1981 Jul 28;669(2):120-4. doi: 10.1016/0005-2795(81)90232-4.

Abstract

Incubation of horse spleen ferritin and rat liver ferritin with [14C]glucose, [14C]mannose or [14C]fucose resulted in the covalent incorporation of the sugar into ferritin. The rate of reaction depended on the concentrations of ferritin and sugar and time of incubation. The order of this nonenzymic incorporation was glucose greater than mannose greater than or equal to fucose. Glucosylated or mannosylated ferritin was not retained by concanavalin A. The plasma half-life of rat liver ferritin and apoferritin was found to be 20 min. This value remained unaffected by in vitro glucosylation or mannosylation of ferritin. It is suggested that varying degrees of glycosylation might account for the occurrence of isoferritins.

摘要

将马脾铁蛋白和大鼠肝铁蛋白与[¹⁴C]葡萄糖、[¹⁴C]甘露糖或[¹⁴C]岩藻糖一起温育,导致糖共价结合到铁蛋白中。反应速率取决于铁蛋白和糖的浓度以及温育时间。这种非酶促结合的顺序为葡萄糖>甘露糖≥岩藻糖。伴刀豆球蛋白A不能保留糖基化的铁蛋白。发现大鼠肝铁蛋白和脱铁铁蛋白的血浆半衰期为20分钟。该值不受铁蛋白体外糖基化或甘露糖基化的影响。有人提出,不同程度的糖基化可能是同型铁蛋白出现的原因。

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