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蛋白激酶C活性调节富集少突胶质细胞中的髓鞘基因表达。

Protein kinase C activity modulates myelin gene expression in enriched oligodendrocytes.

作者信息

Asotra K, Macklin W B

机构信息

Department of Psychiatry and Biobehavioral Sciences, UCLA Medical Center.

出版信息

J Neurosci Res. 1993 Apr 1;34(5):571-88. doi: 10.1002/jnr.490340509.

Abstract

Protein kinase C (PKC) and its potential role in myelin gene expression were investigated in primary cultured rat oligodendrocytes. The major myelin genes were expressed in a developmentally coordinated manner in cultured oligodendrocytes. PKC activity in these cells was similarly regulated with differential expression of PKC isozyme mRNAs. PKC-gamma mRNA was expressed transiently and was most abundant in 9-day cells in vitro. PKC-alpha and PKC-beta mRNAs were present at low levels throughout development in these cells, and their expression increased in 18-25 day cells. Immunocytochemical colocalization of PKC with oligodendrocyte-specific markers--O4, galactosyl cerebroside, MBP, and PLP--in enriched oligodendrocyte cultures suggested that the PKC enzyme activities assayed in these cultures were predominantly contributed by oligodendrocytes. PKC inhibition resulting from long-term exposure to 4 beta-phorbol-12,13-dibutyrate (4 beta-PDB) reduced steady-state levels of MBP, PLP, MAG, CNP, and PKC-alpha mRNAs, as detected by slot blots or in situ hybridization, and downregulated the oligodendrocyte-specific markers O4, galactosyl cerebroside, and the major constituent proteins MBP and PLP, as detected by immunocytochemistry. PKC-mediated downmodulation of myelin gene expression was most profound in normally differentiating oligodendrocytes at or before the onset of myelin protein synthesis. Six-day oligodendrocytes were most susceptible to such modulation. To elucidate the mechanism of reduction in various myelin gene messages upon modulation of PKC, we analyzed mRNA levels in oligodendrocytes, which were pretreated with either the transcriptional inhibitor actinomycin D or the protein synthesis blocker cycloheximide before exposure to 4 beta-PDB. Our results demonstrate that the PKC inhibition-mediated loss in myelin mRNA levels did not require the transcription of any genes, but appeared to be at least partially dependent on continuous protein synthesis.

摘要

在原代培养的大鼠少突胶质细胞中研究了蛋白激酶C(PKC)及其在髓鞘基因表达中的潜在作用。主要的髓鞘基因在培养的少突胶质细胞中以发育协调的方式表达。这些细胞中的PKC活性与PKC同工酶mRNA的差异表达类似地受到调节。PKC-γmRNA短暂表达,在体外培养9天的细胞中最为丰富。PKC-α和PKC-βmRNA在这些细胞的整个发育过程中含量较低,其表达在18至25天的细胞中增加。在富集的少突胶质细胞培养物中,PKC与少突胶质细胞特异性标志物——O4、半乳糖脑苷脂、髓鞘碱性蛋白(MBP)和髓鞘脂蛋白(PLP)的免疫细胞化学共定位表明,在这些培养物中检测到的PKC酶活性主要由少突胶质细胞贡献。长期暴露于4β-佛波醇-12,13-二丁酸酯(4β-PDB)导致的PKC抑制降低了MBP、PLP、髓鞘相关糖蛋白(MAG)、2',3'-环核苷酸3'-磷酸二酯酶(CNP)和PKC-αmRNA的稳态水平,通过狭缝印迹或原位杂交检测到,并且下调了少突胶质细胞特异性标志物O4、半乳糖脑苷脂以及主要组成蛋白MBP和PLP,通过免疫细胞化学检测到。PKC介导的髓鞘基因表达下调在髓鞘蛋白合成开始时或之前正常分化的少突胶质细胞中最为显著。培养6天的少突胶质细胞对这种调节最敏感。为了阐明PKC调节后各种髓鞘基因信息减少的机制,我们分析了在暴露于4β-PDB之前用转录抑制剂放线菌素D或蛋白质合成阻断剂环己酰亚胺预处理的少突胶质细胞中的mRNA水平。我们的结果表明,PKC抑制介导的髓鞘mRNA水平的丧失不需要任何基因的转录,但似乎至少部分依赖于持续的蛋白质合成。

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