首页> 外文期刊>Brain research. Developmental brain research >Protein kinase C inhibitors counteract the ethanol effects on myelin basic protein expression in differentiating CG-4 oligodendrocytes.
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Protein kinase C inhibitors counteract the ethanol effects on myelin basic protein expression in differentiating CG-4 oligodendrocytes.

机译:蛋白激酶C抑制剂可抵消乙醇对分化CG-4少突胶质细胞中髓鞘碱性蛋白表达的影响。

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Abnormal formation of myelin appears to be one defect contributing to the development of the neuropathology associated with the fetal alcohol syndrome. Using the CG-4 cell line we previously showed that 25-75 mM EtOH downregulates the expression of myelin basic protein (MBP) in differentiating oligodendrocytes (OLGs) without affecting morphological development (Dev. Brain Res. 128 (2001) 9). Here we showed that a relatively low concentration of 12-phorbol-13-myristate acetate (PMA) mimicked the EtOH-caused inhibition of MBP expression without affecting morphology. The inhibition of MBP expression by 100 mM EtOH or 1 nM PMA was completely counteracted by three inhibitors of protein kinase C (PKC), bisindolylmaleimide I, chelerythrine chloride, and calphostin C, indicating that EtOH downregulated MBP expression by activating PKC. We investigated whether the EtOH activation resulted, in part, from upregulation of the expression of PKC isozymes. Of 11 PKC isozymes examined, CG-4 OLGs expressed nine; PKCs alpha, beta1, beta2; delta, varepsilon, eta; lambda, zeta; &mgr;; while PKC isozymes gamma and theta were not detected. Only five PKC isozymes, alpha, beta1, beta2, eta, and &mgr;, displayed developmental changes in expression. However, EtOH did not upregulate the early expression of any PKC isozyme during the first 2 days of differentiation, the developmental stage when it downregulates MBP expression in CG-4 cells. The similar effects of PMA and EtOH indicate that EtOH delays MBP expression by activating at least one phorbol ester-sensitive PKC isozyme in oligodendrocytes without upregulating its expression.
机译:髓磷脂的异常形成似乎是导致与胎儿酒精综合症相关的神经病理学发展的一种缺陷。使用CG-4细胞系,我们先前显示25-75 mM EtOH下调了分化少突胶质细胞(OLG)中的髓磷脂碱性蛋白(MBP)的表达,而不影响形态发育(Dev。Brain Res。128(2001)9)。在这里,我们显示相对较低浓度的12-phorbol-13-肉豆蔻酸乙酸酯(PMA)模仿了EtOH引起的MBP表达抑制,而没有影响形态。 100 mM EtOH或1 nM PMA对MBP表达的抑制作用被三种蛋白激酶C(PKC),双吲哚基马来酰亚胺I,白屈菜红碱氯化物和钙磷蛋白C的抑制剂完全抵消,表明EtOH通过激活PKC下调了MBP表达。我们调查了EtOH活化是否部分是由于PKC同工酶表达的上调所致。在检查的11种PKC同工酶中,CG-4 OLG表达9种。 PKC alpha,beta1,beta2;三角洲,瓦雷普西隆(Delta), λ,zeta; &mgr ;;而未检测到PKC同工酶γ和θ。只有五个PKC同工酶,alpha,beta1,beta2,eta和&mgr;表现出表达的发育变化。但是,EtOH在分化的前两天并没有下调任何PKC同工酶的早期表达,而在CG-4细胞中它下调MBP表达的发育阶段。 PMA和EtOH的相似作用表明EtOH通过激活少突胶质细胞中的至少一种佛波酯敏感的PKC同工酶来延迟MBP表达,而不上调其表达。

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