Effects of barbiturates on facilitative glucose transporters are pharmacologically specific and isoform selective.

Effects of barbiturates on facilitative glucose transporters are pharmacologically specific and isoform selective.
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巴比妥类药物对促进性葡萄糖转运蛋白的作用具有药理学特异性和亚型选择性。

DOI:
10.1007/pl00005900
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发表时间:
1999
期刊:
The Journal of membrane biology
影响因子:
--
通讯作者:
Simpson,IA
Simpson,IA
中科院分区:
--
文献类型:
--
作者:
Haspel,HC;Stephenson,KN;Davies-Hill,T;El-Barbary,A;Lobo,JF;Croxen,RL;Mougrabi,W;Koehler-Stec,EM;Fenstermacher,JD;Simpson,IA

文献摘要

相似文献

Barbiturates inhibit GLUT-1-mediated glucose transport across the blood-brain barrier, in cultured mammalian cells, and in human erythrocytes. Barbiturates also interact directly with GLUT-1. The hypotheses that this inhibition of glucose transport is (i) selective, preferring barbiturates over halogenated hydrocarbon inhalation anesthetics, and (ii) specific, favoring some GLUT-# isoforms over others were tested. Several oxy- and thio-barbiturates inhibited [3H]-2-deoxyglucose uptake by GLUT-1 expressing murine fibroblasts with IC50s of 0.2–2.9 mm. Inhibition of GLUT-1 by barbiturates correlates with their overall lipid solubility and pharmacology, and requires hydrophobic side chains on the core barbiturate structure. In contrast, several halogenated hydrocarbons and ethanol (all ≤10 mm) do not significantly inhibit glucose transport. The interaction of these three classes of anesthetics with purified GLUT-1 was evaluated by quenching of intrinsic protein fluorescence and displayed similar specificities and characteristics. The ability of barbiturates to inhibit other facilitative glucose transporters was determined in cell types expressing predominantly one isoform. Pentobarbital inhibits [3H]-2-deoxyglucose and [14C]-3-O-methyl-glucose uptake in cells expressing GLUT-1, GLUT-2, and GLUT-3 with IC50s of ∼1 mm. In contrast, GLUT-4 expressed in insulin-stimulated rat adipocytes was much less sensitive than the other isoforms to inhibition by pentobarbital (IC50of >10 mm). Thus, barbiturates selectively inhibit glucose transport by some, but not all, facilitative glucose transporter isoforms.