首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Cellular expression, developmental regulation, and phylogenic conservation of PEA-15, the astrocytic major phosphoprotein and protein kinase C substrate.
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Cellular expression, developmental regulation, and phylogenic conservation of PEA-15, the astrocytic major phosphoprotein and protein kinase C substrate.

机译:PEA-15(星形细胞主要的磷蛋白和蛋白激酶C底物)的细胞表达,发育调控和系统发育性保护。

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摘要

PEA-15 has recently been identified as a major phosphoprotein in astrocytes and an endogenous substrate for protein kinase C. This 15-kDa protein exists under three molecular forms, an unphosphorylated form, N, and two phosphorylated forms, Pa and Pb. Antisera were raised against synthetic peptides corresponding to the internal sequences of the mouse protein containing the two specific phosphorylation sites and affinity-purified antibodies were used for immunoblotting. PEA-15 was found mainly in the cytosol, but its protein kinase C-phosphorylated form, Pb, was also detectable in association with the membrane and remained with the fraction that contains stabilized microtubules. Abundant in astrocytes, particularly in the hippocampus, PEA-15 was also detected in all cultured brain cell types examined, indicating a more ubiquitous distribution of the protein, further demonstrated by its detection in the eye and in the lung. Parallel to the increase in expression levels, phosphorylation of PEA-15 also increased during development. This paralleled results obtained in primary cultures, whereas PEA-15 levels increase with cell maturation. Finally, physiological importance of PEA-15 phosphorylation was illustrated by immunoreactivity observed in brain homogenates of different mammals, birds, amphibians, and fish.
机译:PEA-15最近被确定为星形胶质细胞中的主要磷蛋白和蛋白激酶C的内源性底物。该15 kDa蛋白以三种分子形式存在,一种是非磷酸化形式N,一种是磷酸化形式Pa和Pb。产生针对对应于含有两个特定磷酸化位点的小鼠蛋白质内部序列的合成肽的抗血清,并将亲和纯化的抗体用于免疫印迹。 PEA-15主要存在于细胞质中,但其蛋白激酶C磷酸化形式Pb也可与膜结合检测到,并与包含稳定微管的馏分一起保留。在星形胶质细胞,特别是海马中,PEA-15含量也很高,在所有培养的脑细胞类型中都检出了PEA-15,表明该蛋白分布更为广泛,进一步在眼和肺中检出该蛋白。与表达水平的增加平行,PEA-15的磷酸化在发育过程中也增加。这与在原代培养中获得的结果相似,而PEA-15水平随细胞成熟而增加。最后,在不同哺乳动物,鸟类,两栖动物和鱼类的脑匀浆中观察到的免疫反应性说明了PEA-15磷酸化的生理重要性。

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