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Anomeric preferences of D-glucose uptake and utilization by cerebral cortex slices of rats.

作者信息

Nagata Y, Nanba T, Ando M, Miwa I, Okuda J

出版信息

Neurochem Res. 1979 Aug;4(4):505-16. doi: 10.1007/BF00964644.

DOI:10.1007/BF00964644
PMID:225692
Abstract

On aerobic incubation of rat cerebral cortex slices with anomers of D-glucose and with 2-deoxy-D-glucose (2DG) for 5 min, the disappearance of beta-D-glucose from the incubation mixture was greater than that of alpha-D-glucose and both anomers had a greater rate of disappearance than that of 2DG. In addition, there were significantly greater consumption of oxygen and production of lactate with the beta-anomer than with the alpha-anomer. In similar experiments with 3H-labeled D-glucose anomers and [1-3H]-3-O-methyl-D-glucose (3MG), the accumulation of [1-3H]-beta-D-glucose (up to 5 min) by rat cerebral cortex slices was greater than that of [1-3H]-alpha-D-glucose. Although initially lower than that of the anomers, the accumulation of [1-3H]-3MG increased at a greater rate and, by 5 min of incubation, was greater than that of both glucose anomers. This preferential accumulation was seen to disappear when the slices were preincubated with 2DG (hexokinase inhibitor) or when the temperature of incubation was reduced to 20 degrees C. Under those conditions the data with the glucose anomers were similar to those obtained with 3MG. Our data then suggested that the greater accumulation of beta-D-glucose than of alpha-D-glucose by the slices was probably not due to differences in transport through brain cell membranes but rather to the preferential metabolism of the beta-D-glucose.

摘要

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本文引用的文献

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DISTRIBUTION OF A "MUTAROTASE" ACTIVITY IN RAT TISSUES AND POSSIBLE FUNCTION IN ACTIVE TRANSPORT OF SUGARS.大鼠组织中“变旋酶”活性的分布及其在糖类主动运输中的可能功能
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Some observations on the effect of D-glutamate on the glucose metabolism and the accumulation of potassium ions in brain cortex slices.
关于D-谷氨酸对大脑皮层切片中葡萄糖代谢及钾离子积累影响的一些观察
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Specificity and kinetic properties of monosaccharide uptake into guinea pig cerebral cortex in vitro.豚鼠大脑皮层体外单糖摄取的特异性和动力学特性
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