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来自同位素标记葡萄糖的氘的代谢损失。

Metabolic loss of deuterium from isotopically labeled glucose.

作者信息

Ben-Yoseph O, Kingsley P B, Ross B D

机构信息

Department of Radiology, School of Medicine, University of Michigan Medical Center, Ann Arbor.

出版信息

Magn Reson Med. 1994 Sep;32(3):405-9. doi: 10.1002/mrm.1910320317.

Abstract

The isotopically substituted molecule (6-13C, 1, 6, 6-2H3)glucose was evaluated to determine whether metabolic 2H loss would prevent its use in quantitating pentose phosphate pathway (PPP) activity. PPP activity causes the C1 of glucose to be lost as CO2, while C6 can appear in lactate. 2H NMR analysis of the lactate produced from this glucose can distinguish (3-2H)-lactate (from C1 of glucose) from (3-13C, 3, 3-2H2)lactate (from C6 of glucose). 2H NMR spectroscopic analysis of medium containing (6-13C, 1, 6, 6-2H3)glucose after incubation with cultured rat 9L glioma cells suggested a 30.8 +/- 2.1% PPP activity as compared with 6.0 +/- 0.8% from separate, parallel incubations with (1-13C)glucose and (6-13C)glucose. Subsequent experiments with other isotopically labeled glucose molecules suggest that this discrepancy is due to selective loss of 2H from the C1 position of glucose, catalyzed by phosphomannose isomerase. Failure to consider 2H exchange from the C1 and C6 positions of glucose can lead to incorrect conclusions in metabolic studies utilizing this and other deuterated or tritiated glucose molecules.

摘要

对同位素取代分子(6-¹³C,1,6,6-²H₃)葡萄糖进行了评估,以确定代谢过程中²H的损失是否会妨碍其用于定量磷酸戊糖途径(PPP)的活性。PPP活性会使葡萄糖的C1以CO₂形式丢失,而C6会出现在乳酸中。对由这种葡萄糖产生的乳酸进行²H NMR分析,可以区分(3-²H)-乳酸(来自葡萄糖的C1)和(3-¹³C,3,3-²H₂)-乳酸(来自葡萄糖的C6)。在用培养的大鼠9L胶质瘤细胞孵育后,对含有(6-¹³C,1,6,6-²H₃)葡萄糖的培养基进行²H NMR光谱分析,结果表明PPP活性为30.8±2.1%,而与单独用(1-¹³C)葡萄糖和(6-¹³C)葡萄糖进行的平行孵育相比,该活性为6.0±0.8%。随后对其他同位素标记的葡萄糖分子进行的实验表明,这种差异是由于磷酸甘露糖异构酶催化葡萄糖C1位置的²H选择性丢失所致。在利用这种以及其他氘代或氚代葡萄糖分子进行的代谢研究中,如果不考虑葡萄糖C1和C6位置的²H交换,可能会得出错误的结论。

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