Maher F, Simpson I A
EDMNS, NIDDK, National Institutes of Health, Bethesda, MD 20892.
Biochem J. 1994 Jul 15;301 ( Pt 2)(Pt 2):379-84. doi: 10.1042/bj3010379.
Cerebellar granule neurons in primary culture express increasing levels of two glucose transporter isoforms, GLUT1 and GLUT3, as they differentiate in vitro. We have determined the relative abundance of GLUT1 and GLUT3 in these neurons by three different labelling methods. (1) Photoaffinity cell surface labelling of neurons with an impermeant bis-mannose photolabel revealed 6-10-fold more GLUT3 than GLUT1 and dissociation constants (Kd) for the photolabel of 55-68 microM (GLUT3) and 146-169 microM (GLUT1). Binding to both transporters was inhibited by cytochalasin B. (2) Photoaffinity labelling of neuronal membranes with a permeant forskolin derivative showed 5.5-8-fold more GLUT3 than GLUT1, whereas in rat brain membranes containing both neuronal and glial membranes, GLUT3 and GLUT1 were detected in similar proportions. (3) Biosynthetic labelling of neurons with [35S]methionine and [35S]cysteine showed GLUT3 to be 6-10-fold more abundant than GLUT1. Thus GLUT3 is quantitatively the predominant glucose-transport isoform in cultured cerebellar granule neurons.
原代培养的小脑颗粒神经元在体外分化过程中,两种葡萄糖转运异构体GLUT1和GLUT3的表达水平不断增加。我们通过三种不同的标记方法确定了这些神经元中GLUT1和GLUT3的相对丰度。(1)用一种非渗透性双甘露糖光标记物对神经元进行光亲和细胞表面标记,结果显示GLUT3比GLUT1多6 - 10倍,光标记物的解离常数(Kd)分别为55 - 68微摩尔(GLUT3)和146 - 169微摩尔(GLUT1)。细胞松弛素B可抑制与这两种转运体的结合。(2)用一种渗透性福司可林衍生物对神经元膜进行光亲和标记,结果显示GLUT3比GLUT1多5.5 - 8倍,而在含有神经元和胶质细胞膜的大鼠脑膜中,检测到的GLUT3和GLUT1比例相似。(3)用[35S]甲硫氨酸和[35S]半胱氨酸对神经元进行生物合成标记,结果显示GLUT3比GLUT1丰富6 - 10倍。因此,在培养的小脑颗粒神经元中,GLUT3在数量上是主要的葡萄糖转运异构体。