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首页> 外文期刊>Journal of neurobiology >Different regulation of Purkinje cell dendritic development in cerebellar slice cultures by protein kinase Calpha and -beta.
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Different regulation of Purkinje cell dendritic development in cerebellar slice cultures by protein kinase Calpha and -beta.

机译:小脑切片培养物中蛋白激酶Cα和-β对浦肯野细胞树突发育的不同调节。

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摘要

Activity of protein kinase C (PKC), and in particular the PKCgamma-isoform, has been shown to strongly affect and regulate Purkinje cell dendritic development, suggesting an important role for PKC in activity-dependent Purkinje cell maturation. In this study we have analyzed the role of two additional Ca(2+)-dependent PKC isoforms, PKCalpha and -beta, in Purkinje cell survival and dendritic morphology in slice cultures using mice deficient in the respective enzymes. Pharmacological PKC activation strongly reduced basal Purkinje cell dendritic growth in wild-type mice whereas PKC inhibition promoted branching. Purkinje cells from mice deficient in PKCbeta, which is expressed in two splice forms by granule but not Purkinje cells, did not yield measurable morphological differences compared to respective wild-type cells under either experimental condition. In contrast, Purkinje cell dendrites in cultures from PKCalpha-deficient mice were clearly protected from the negative effects on dendritic growth of pharmacological PKC activation and showed an increased branching response to PKC inhibition as compared to wild-type cells. Together with our previous work on the role of PKCgamma, these data support a model predicting that normal Purkinje cell dendritic growth is mainly regulated by the PKCgamma-isoform, which is highly activated by developmental processes. The PKCalpha isoform in this model forms a reserve pool, which only becomes activated upon strong stimulation and then contributes to the limitation of dendritic growth. The PKCbeta isoform appears to not be involved in the signaling cascades regulating Purkinje cell dendritic maturation in cerebellar slice cultures.
机译:蛋白激酶C(PKC),特别是PKCgamma同工型的活性已显示出强烈影响和调节浦肯野细胞树突状发育,提示PKC在依赖于活性的浦肯野细胞成熟中具有重要作用。在这项研究中,我们分析了另外两种Ca(2+)依赖的PKC亚型PKCalpha和-beta在Purkinje细胞存活和树突形态学中使用缺乏相应酶的小鼠的作用。药理PKC激活大大降低了野生型小鼠基底浦肯野细胞树突状细胞的生长,而PKC抑制则促进了分支。与任一实验条件下的野生型细胞相比,缺乏PKCβ的小鼠的Purkinje细胞通过颗粒以两种剪接形式表达,但不是Purkinje细胞,与两种野生型细胞相比均未产生可测量的形态学差异。相比之下,来自PKCalpha缺陷小鼠的培养物中的浦肯野细胞树突明显受到保护,不受药理PKC活化对树突生长的负面影响,并且与野生型细胞相比,对PKC抑制作用的分支反应增加。这些数据与我们先前关于PKCgamma的作用一起,支持了一个模型,该模型预测正常的Purkinje细胞树突状生长主要受PKCgamma同工型调节,而PKCgamma同工型被发育过程高度激活。该模型中的PKCalpha亚型形成一个储备库,该储备库只有在强烈刺激下才被激活,然后有助于限制树突状细胞的生长。在小脑切片培养物中,PKCbeta亚型似乎不参与调节浦肯野细胞树突成熟的信号级联反应。

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