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Cell surface modulation of gene expression in brain cells by down regulation of glucocorticoid receptors

机译:下调糖皮质激素受体调节脑细胞基因表达的细胞表面调节

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摘要

The concentration of glycerol-3-phosphate dehydrogenase (GPDH; sn-glycerol-3-phosphate:NAD+ 2-oxidoreductase, EC 1.1.1.8) had previously been determined to be regulated by glucocorticoids in rat brain cells in vivo and in cell culture. We now demonstrate that concanavalin A (Con A) can inhibit the induction of GPDH in dose-dependent manner in C6 rat glioma cells and in primary cultures of rat brain oligodendrocytes. Con A is not cytotoxic, because its effect can be prevented or reversed by α-methyl mannoside. The inhibition specifically prevents the appearance of new molecules of GPDH, although Con A does not significantly inhibit protein synthesis in these cells, nor does it affect the activity of another soluble enzyme, lactate dehydrogenase. The ability to block enzyme induction is not limited to Con A, because other lectins also inhibit induction, with Ricinus communis agglutinin 60 being the most potent (50% inhibition of induction at 0.0083 μM) and wheat germ agglutinin being the least potent (50% inhibition of induction at 1.2 μM). The molecular mechanism by which Con A inhibits GPDH induction appears to be by the “down regulation” of the cytoplasmic glucocorticoid receptors, because exposure to Con A results in the loss of more than 90% of the receptor activity. Con A does not inhibit the receptor assay and no direct interaction between the receptor and Con A could be demonstrated. This down regulation is not tumor cell specific and appears to be a general phenomenon, because it occurs in normal oligodendrocytes and even in normal astrocytes (a cell type in which the gene for GPDH is not expressed). The down regulation of glucocorticoid receptors in normal brain cells suggests two important corollaries. First, it demonstrates the existence of a rate-limiting step controlling the glucocorticoid-dependent gene expression in brain cells and possibly represents a regulatory site common to all glucocorticoid target cells. Second, it suggests that the response to glucocorticoids of oligodendrocytes and astrocytes can be regulated in vivo by cell surface contact with endogenous lectins, neighboring cells, or both.
机译:先前已确定大鼠大脑中的糖皮质激素可调节甘油3-磷酸脱氢酶(GPDH; sn-甘油-3-磷酸:NAD + 2-氧化还原酶,EC 1.1.1.8)的浓度。体内和细胞培养中的细胞。我们现在证明伴刀豆球蛋白A(Con A)可以以剂量依赖的方式抑制C6大鼠神经胶质瘤细胞和大鼠脑少突胶质细胞的原代培养中GPDH的诱导。 Con A没有细胞毒性,因为它的作用可以被α-甲基甘露糖苷阻止或逆转。尽管Con A不会显着抑制这些细胞中蛋白质的合成,也不会影响另一种可溶性酶乳酸脱氢酶的活性,但这种抑制作用特异性地阻止了GPDH新分子的出现。阻断酶诱导的能力不限于Con A,因为其他凝集素也抑制诱导,其中蓖麻蓖麻凝集素60最有效(0.0083μM时抑制50%诱导),而小麦胚芽凝集素最低效(50%)。在1.2μM时抑制诱导)。 Con A抑制GPDH诱导的分子机制似乎是通过细胞质糖皮质激素受体的“下调”,因为暴露于Con A会导致受体活性损失超过90%。 Con A不会抑制受体测定,因此无法证明受体与Con A之间存在直接相互作用。这种下调不是肿瘤细胞特异性的,而是普遍现象,因为它发生在正常的少突胶质细胞甚至正常的星形胶质细胞(一种不表达GPDH基因的细胞类型)中。正常脑细胞中糖皮质激素受体的下调提示两个重要的推论。首先,它证明了控制脑细胞中糖皮质激素依赖性基因表达的限速步骤的存在,并且可能代表了所有糖皮质激素靶细胞共有的调控位点。其次,这表明通过与内源性凝集素,邻近细胞或两者的细胞表面接触,可以在体内调节对少突胶质细胞和星形胶质细胞对糖皮质激素的反应。

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