Clarson L H, Glazier J D, Sides M K, Sibley C P
Department of Child Health, School of Biological Sciences, University of Manchester, St Mary's Hospital, UK.
Placenta. 1997 May;18(4):333-9. doi: 10.1016/s0143-4004(97)80068-9.
The expression of GLUT1 and GLUT3 mRNA and protein in human placental trophoblast-derived cells was investigated. A dividing choriocarcinoma derived cell line (JAr) was compared to differentiating cytotrophoblast cells, isolated from human term placenta, following 18 (mononucleate) and 66 h (multinucleate) in culture. JAr cells treated with 8-bromoadenosine, which inhibits growth and induces differentiation, were also studied. GLUT1 mRNA and protein expression were similar in the four groups of cells. However, GLUT3 mRNA expression was significantly higher (six- to sevenfold) in both control and 8-bromoadenosine-treated JAr cells compared to cytotrophoblast cells and was also significantly higher in untreated versus treated JAr cells. Western blotting showed that GLUT3 protein was undetectable in either cytotrophoblast cell groups, but was abundant in both groups of JAr cells. GLUT3 protein in JAr cells treated with 8-bromoadenosine was also significantly lower than in untreated JAr cells, in agreement with the mRNA data. We conclude that GLUT1 expression is unaffected by either growth or differentiation of trophoblast cells whereas GLUT3 expression is associated with dividing cells. We propose that in the placenta, GLUT3 may be involved in maintaining metabolic requirements of dividing trophoblast cells, rather than having a direct role in transport of glucose to the fetus.
研究了人胎盘滋养层来源细胞中葡萄糖转运蛋白1(GLUT1)和葡萄糖转运蛋白3(GLUT3)的mRNA及蛋白表达情况。将一种增殖性绒毛膜癌细胞系(JAr)与从足月人胎盘分离的正在分化的细胞滋养层细胞进行比较,细胞滋养层细胞分别培养18小时(单核)和66小时(多核)。还研究了用8-溴腺苷处理的JAr细胞,8-溴腺苷可抑制生长并诱导分化。四组细胞中GLUT1的mRNA和蛋白表达相似。然而,与细胞滋养层细胞相比,对照及8-溴腺苷处理的JAr细胞中GLUT3的mRNA表达显著更高(6至7倍),且未处理的JAr细胞中的GLUT3 mRNA表达也显著高于处理后的细胞。蛋白质印迹法显示,在任一细胞滋养层细胞组中均未检测到GLUT3蛋白,但在两组JAr细胞中GLUT3蛋白含量丰富。与mRNA数据一致,用8-溴腺苷处理的JAr细胞中的GLUT3蛋白也显著低于未处理的JAr细胞。我们得出结论,滋养层细胞的生长或分化均不影响GLUT1的表达,而GLUT3的表达与增殖细胞相关。我们提出,在胎盘中,GLUT3可能参与维持增殖性滋养层细胞的代谢需求,而非在将葡萄糖转运至胎儿过程中直接发挥作用。