PKC iota的表达至少部分独立于激酶功能影响PC12细胞的神经元分化。

Alana Doonachar, Alan R Schoenfeld
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引用次数: 0

摘要

非典型PKC (aPKC)在建立细胞极性中发挥作用,并已被证明在大鼠嗜铬细胞瘤PC12细胞的神经元分化和极化中起作用,包括神经突的形成,尽管其机制尚不清楚。本研究研究了aPKC异构体PKC iota (PKCι)在PC12细胞早期神经元分化中的作用。稳定表达外源性野生型pkc1的ngf处理的PC12细胞显示神经内分泌标记物的表达降低,神经元标记物的表达增加,神经突形成增加。稳定表达激酶无活性的PKCι,但缺乏调节结构域的PKCι不构成活性,具有类似的作用,但效力较弱。在亲代PC12细胞中,药物抑制内源性aPKC激酶活性并没有抑制神经突的形成,这表明PKCι表达对神经元分化的影响是不依赖于激酶的。有趣的是,外源表达野生型和激酶失活PKCι对PKCι的总体活性几乎没有影响,但导致PKCζ (PKCζ)激酶活性降低,这表明两种亚型之间的相互作用可能是观察到的结果的基础。总的来说,这些发现表明,在PC12和其他神经内分泌前体细胞中,PKCι可能通过影响PKCζ的功能,影响神经内分泌(染色质)和交感神经元细胞系之间的早期分化决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Expression of PKC iota affects neuronal differentiation of PC12 cells at least partly independent of kinase function.

Expression of PKC iota affects neuronal differentiation of PC12 cells at least partly independent of kinase function.

Expression of PKC iota affects neuronal differentiation of PC12 cells at least partly independent of kinase function.

Expression of PKC iota affects neuronal differentiation of PC12 cells at least partly independent of kinase function.

Atypical PKC (aPKC) plays a role in establishing cell polarity and has been indicated in neuronal differentiation and polarization, including neurite formation in rat pheochromocytoma PC12 cells, albeit by unclear mechanisms. Here, the role of the aPKC isoform, PKC iota (PKCι), in the early neuronal differentiation of PC12 cells was investigated. NGF-treated PC12 cells with stably expressed exogenous wild-type PKCι showed decreased expression of a neuroendocrine marker, increased expression of a neuronal marker, and increased neurite formation. Stable expression of a kinase- inactive PKCι, but not constitutively active PKCι lacking a regulatory domain, had similar although less potent effects. Pharmacological inhibition of endogenous aPKC kinase activity in parental PC12 cells did not inhibit neurite formation, suggesting that some of the observed effects of PKCι expression on neuronal differentiation are kinase- independent. Interestingly, exogenous expression of wild-type and kinase-inactive PKCι had little effect on overall PKCι activity, but caused a decrease in PKC zeta (PKCζ) kinase activity, suggesting an interplay between the two isoforms that may underlie the observed results. Overall, these findings suggest that in PC12 and perhaps other neuroendocrine precursor cells, PKCι influences an early differentiation decision between the neuroendocrine (chromaffin) and sympathetic neuron cell lineages, potentially by affecting PKCζ function.

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