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人α-L-岩藻糖苷酶对岩藻糖贮积症成纤维细胞的代谢校正

Metabolic correction of fucosidosis fibroblasts by human alpha-L-fucosidase.

作者信息

Turner B M, Turner V S, Hirschhorn K

出版信息

J Cell Physiol. 1979 Jan;98(1):225-35. doi: 10.1002/jcp.1040980124.

Abstract

Human alpha-L-fucosidase, purified from placenta, was taken up from the culture medium by skin fibroblasts from patients with fucosidosis (alpha-L-fucosidase deficiency). The rate of uptake was low (uptake coefficient = 6 X 10(-4) ml.mg-1.h-1). Intracellular alpha-L-fucosidase activity was directly proportional to enzyme in the medium up to an activity of at least 40 nmoles/min/ml. No evidence for saturation of specific cell-surface receptors was seen. However, uptake was reduced by 75% by 1 mM mannose-6-phosphate and by 50% by 1mM glucose-6-phosphate, suggesting that uptake may be mediated by a receptor recognising a phosphorylated sugar or an analagous compound. Enzyme taken up by the cells was most active in subcellular fractions enriched with lysosomes and had an isozyme pattern, by isoelectric focusing, identical to that of the original enzyme preparation. Fucosidosis fibroblasts were shown to accumulate low molecular-weight, fucose-containing compounds to a level several times greater than control cells. This stored material was eluted from Sephadex G-25 as an asymmetrical peak with an elution volume of approximately twice the void volume of the column. Addition of placental alpha-L-fucosidase to the culture medium of fucosidosis fibroblasts prevented excessive accumulation of fucose-containing material and accelerated the breakdown of material accumulated prior to enzyme uptake.

摘要

从胎盘中纯化得到的人α-L-岩藻糖苷酶,可被岩藻糖贮积症(α-L-岩藻糖苷酶缺乏症)患者的皮肤成纤维细胞从培养基中摄取。摄取速率较低(摄取系数 = 6×10⁻⁴ ml·mg⁻¹·h⁻¹)。细胞内α-L-岩藻糖苷酶活性与培养基中的酶呈直接比例关系,直至活性至少达到40纳摩尔/分钟/毫升。未观察到特异性细胞表面受体饱和的证据。然而,1 mM甘露糖-6-磷酸可使摄取减少75%,1 mM葡萄糖-6-磷酸可使摄取减少50%,这表明摄取可能由识别磷酸化糖或类似化合物的受体介导。细胞摄取的酶在富含溶酶体的亚细胞组分中活性最高,通过等电聚焦分析,其同工酶模式与原始酶制剂相同。研究表明,岩藻糖贮积症成纤维细胞积累的低分子量含岩藻糖化合物水平比对照细胞高几倍。这种储存物质从Sephadex G-25上洗脱下来呈现不对称峰,洗脱体积约为柱空体积的两倍。向岩藻糖贮积症成纤维细胞的培养基中添加胎盘α-L-岩藻糖苷酶可防止含岩藻糖物质的过度积累,并加速酶摄取前积累物质的分解。

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