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人类红细胞中的甘露糖代谢。

Mannose metabolism in the human erythrocyte.

作者信息

Beutler E, Teeple L

出版信息

J Clin Invest. 1969 Mar;48(3):461-6. doi: 10.1172/JCI106003.

Abstract

The metabolism of mannose by human erythrocytes has been investigated. Phosphorylation of mannose is achieved by an enzyme with electrophoretic mobility on starch gel indistinguishable from the glucose-phosphorylating enzyme. Mannose phosphorylation is competitively inhibited by glucose; glucose phosphorylation is competitively inhibited by mannose. The K(i) values of inhibition are similar to the K(m) values for uninhibited phosphorylation. The normal average mannose-phosphorylating activity was found to be 0.69 U/g of Hb; the normal average glucose-phosphorylating activity was found to be 0.64 U/g of Hb. The ratio of mannose-phosphorylating activity to glucose-phosphorylating activity of a hemolysate prepared from the red cells of a subject with hexokinase deficiency was found to be within the normal range.Phosphomannose isomerase (PMI) activity of the red cells was found to average 0.064 U/g of Hb at its pH optimum of 5.9 with a mannose-6-phosphate (Man-6-P) concentration of 5 mmoles/liter. The enzyme activity in young cells was greater than activity in old cells. When human erythrocytes are incubated with mannose rapid accumulation of Man-6-P occurs, a finding indicating that PMI and not hexokinase is the limiting enzyme in the over-all conversion of mannose to fructose by the red cell. The ratio of mannose utilization to glucose utilization in hexokinase-deficient cells was greater than normal, as has been reported previously. These cells were found to have greatly increased PMI activity, presumably because of their young mean cell age. Consequently, Man-6-P accumulated only approximately one-third as rapidly as normal in hexokinase-deficient cells incubated with mannose. It is believed that the more rapid utilization of mannose relative to glucose by intact hexokinase-deficient cells may be explained on the basis of the regulatory effect of the PMI reaction on the rate of mannose utilization.

摘要

对人红细胞中甘露糖的代谢进行了研究。甘露糖的磷酸化是由一种酶实现的,该酶在淀粉凝胶上的电泳迁移率与葡萄糖磷酸化酶无法区分。甘露糖磷酸化受到葡萄糖的竞争性抑制;葡萄糖磷酸化受到甘露糖的竞争性抑制。抑制的K(i)值与未受抑制的磷酸化的K(m)值相似。发现正常平均甘露糖磷酸化活性为0.69 U/g Hb;正常平均葡萄糖磷酸化活性为0.64 U/g Hb。由己糖激酶缺乏症患者的红细胞制备的溶血产物中,甘露糖磷酸化活性与葡萄糖磷酸化活性的比值在正常范围内。发现红细胞的磷酸甘露糖异构酶(PMI)活性在pH最适值为5.9、甘露糖-6-磷酸(Man-6-P)浓度为5 mmol/L时平均为0.064 U/g Hb。年轻细胞中的酶活性大于老年细胞中的活性。当人红细胞与甘露糖一起孵育时,Man-6-P会迅速积累,这一发现表明PMI而非己糖激酶是红细胞将甘露糖整体转化为果糖过程中的限速酶。如先前报道的那样,己糖激酶缺乏细胞中甘露糖利用与葡萄糖利用的比值高于正常水平。发现这些细胞的PMI活性大幅增加,推测是由于其平均细胞年龄较小。因此,在与甘露糖孵育的己糖激酶缺乏细胞中,Man-6-P的积累速度仅约为正常速度的三分之一。据信,完整的己糖激酶缺乏细胞相对于葡萄糖对甘露糖的利用更快,这可以基于PMI反应对甘露糖利用速率的调节作用来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d2b/535710/fdc4b3f93fb9/jcinvest00209-0062-a.jpg

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