D'Amore T, Lo T C
J Cell Physiol. 1986 Apr;127(1):106-13. doi: 10.1002/jcp.1041270114.
The importance of sulfhydryl groups for hexose transport in undifferentiated L6 rat myoblasts was investigated. N-ethylmaleimide (NEM) and p-chloromercuribenzenesulfonic acid (pCMBS) inhibited 2-deoxy-D-glucose (2-DOG) transport in a time and concentration-dependent manner. The inhibition produced by both reagents was virtually complete within 5 min, although neither reagent inhibited transport more than 70-80% regardless of the concentrations or incubation times used. Furthermore, the inhibition of 2-DOG transport by pCMBS or NEM could not be prevented by simultaneous preincubation of cells with 20 mM D-glucose or 20 mM 2-DOG. This suggests that sulfhydryl groups required for transport are separate from the hexose binding and transport site. By comparing the effects of the membrane impermeant pCMBS to those of the membrane permeant NEM, cell surface sulfhydryl groups were shown to be essential for hexose binding and transport. In contrast to the inhibition of 2-DOG transport, pCMBS and NEM had much less of an effect on 3-O-methyl-D-glucose (3-OMG) transport. For example, 1 mM NEM inhibited 2-DOG transport by 66%, whereas 3-OMG transport was inhibited by only 7%. This supports the suggestion that these hexose analogues may be transported by different carriers. Kinetic analysis of transport shows that treatment of cells with 1 mM NEM or 1 pCMBS results in inactivation of the high affinity 2-DOG transport system, whereas the low affinity transport system is unaffected. 3-OMG is preferentially transported by the low affinity system.
研究了巯基对未分化的L6大鼠成肌细胞中己糖转运的重要性。N-乙基马来酰亚胺(NEM)和对氯汞苯磺酸(pCMBS)以时间和浓度依赖性方式抑制2-脱氧-D-葡萄糖(2-DOG)的转运。尽管无论使用何种浓度或孵育时间,两种试剂对转运的抑制均未超过70-80%,但在5分钟内两种试剂产生的抑制几乎完全。此外,同时用20 mM D-葡萄糖或20 mM 2-DOG预孵育细胞并不能阻止pCMBS或NEM对2-DOG转运的抑制。这表明转运所需的巯基与己糖结合和转运位点是分开的。通过比较膜不透性的pCMBS和膜渗透性的NEM的作用,表明细胞表面巯基对于己糖结合和转运至关重要。与对2-DOG转运的抑制相反,pCMBS和NEM对3-O-甲基-D-葡萄糖(3-OMG)转运的影响要小得多。例如,1 mM NEM抑制2-DOG转运66%,而3-OMG转运仅被抑制7%。这支持了这些己糖类似物可能由不同载体转运的观点。转运的动力学分析表明,用1 mM NEM或1 pCMBS处理细胞会导致高亲和力2-DOG转运系统失活,而低亲和力转运系统不受影响。3-OMG优先由低亲和力系统转运。