Perrone-Bizzozero N I, Isaacson T V, Keidan G M, Eriqat C, Meiri K F, Savage D D, Allan A M
Department of Neurosciences, University of New Mexico Health Sciences Center, Albuquerque 87131-5223, USA.
J Neurochem. 1998 Nov;71(5):2104-11. doi: 10.1046/j.1471-4159.1998.71052104.x.
Consumption of moderate quantities of ethanol during pregnancy produces deficits in long-term potentiation in the hippocampal formation of adult offspring. Protein kinase C (PKC)-mediated phosphorylation of the presynaptic protein GAP-43 is critical for the induction of long-term potentiation. We tested the hypothesis that this system is affected in fetal alcohol-exposed (FAE) rats by measuring GAP-43 phosphorylation and PKC activity in the hippocampus of adult offspring of rat dams that had consumed one of three diets throughout gestation: (a) a 5% ethanol liquid diet, which produced a maternal blood ethanol concentration of 83 mg/dl (FAE); (b) an isocalorically equivalent 0% ethanol diet (pair-fed); or (c) lab chow ad libitum. Western blot analysis using specific antibodies to PKC-phosphorylated GAP-43 revealed that FAE rats had an approximately 50% reduction in the proportion of phosphorylated GAP-43. Similarly, we found that PKC-mediated incorporation of 32P into GAP-43 was reduced by 85% in hippocampal slices from FAE rats compared with both control groups. FAE animals also showed a 50% reduction in total hippocampal PKC activity, whereas the levels of six major PKC isozymes did not change in any of the diet groups. These results suggest that GAP-43 phosphorylation deficits in rats prenatally exposed to moderate levels of ethanol are not due to alterations in the expression of either the enzyme or substrate protein, but rather to a defect in kinase activation.
孕期适量摄入乙醇会导致成年子代海马结构的长时程增强出现缺陷。蛋白激酶C(PKC)介导的突触前蛋白GAP - 43磷酸化对于长时程增强的诱导至关重要。我们通过测量成年子代海马体中GAP - 43磷酸化和PKC活性,来检验这一系统在胎儿酒精暴露(FAE)大鼠中是否受到影响。这些成年子代的母鼠在整个孕期食用三种饮食之一:(a)5%乙醇液体饮食,其母体血液乙醇浓度为83 mg/dl(FAE);(b)等热量的0%乙醇饮食(配对喂养);或(c)随意进食实验室饲料。使用针对PKC磷酸化GAP - 43的特异性抗体进行蛋白质印迹分析表明,FAE大鼠中磷酸化GAP - 43的比例降低了约50%。同样,我们发现与两个对照组相比,FAE大鼠海马切片中PKC介导的32P掺入GAP - 43的量减少了85%。FAE动物海马体中的总PKC活性也降低了50%,而六个主要PKC同工酶的水平在任何饮食组中均未发生变化。这些结果表明,产前暴露于中等水平乙醇的大鼠中GAP - 43磷酸化缺陷并非由于酶或底物蛋白表达的改变,而是由于激酶激活缺陷。