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Protein Kinase MARK/PAR-1 Is Required for Neurite Outgrowth and Establishment of Neuronal Polarity

机译:蛋白激酶MARK / PAR-1是神经突生长和神经元极性建立所必需的

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摘要

Protein kinases of the microtubule affinity-regulating kinase (MARK) family were originally discovered because of their ability to phosphorylate certain sites in tau protein (KXGS motifs in the repeat domain). This type of phosphorylation is enhanced in abnormal tau from Alzheimer brain tissue and causes the detachment of tau from microtubules. MARK-related kinases (PAR-1 and KIN1) occur in various organisms and are involved in establishing and maintaining cell polarity. Herein, we report the ability of MARK2 to affect the differentiation and outgrowth of cell processes from neuroblastoma and other cell models. MARK2 phosphorylates tau protein at the KXGS motifs; this results in the detachment of tau from microtubules and their destabilization. The formation of neurites in N2a cells is blocked if MARK2 is inactivated, either by transfecting a dominant negative mutant, or by MARK2 inhibitors such as hymenialdisine. Alternatively, neurites are blocked if the target KXGS motifs on tau are rendered nonphosphorylatable by point mutations. The results suggest that MARK2 contributes to the plasticity of microtubules needed for neuronal polarity and the growth of neurites.
机译:最初发现微管亲和力调节激酶(MARK)家族的蛋白激酶是因为它们能够磷酸化tau蛋白(重复域中的KXGS基序)中的某些位点。这种类型的磷酸化在阿尔茨海默氏症脑组织的异常tau中增强,并导致tau从微管中脱离。 MARK相关的激酶(PAR-1和KIN1)存在于各种生物中,并参与建立和维持细胞极性。本文中,我们报道了MARK2影响神经母细胞瘤和其他细胞模型的细胞过程分化和生长的能力。 MARK2使tau蛋白在KXGS基序处磷酸化;这导致tau与微管分离并使其不稳定。如果通过转染显性阴性突变体或通过MARK2抑制剂(如膜虫二胺)使MARK2失活,则N2a细胞中神经突的形成将被阻止。或者,如果tau上的目标KXGS基序因点突变而变得不可磷酸化,则神经突被阻断。结果表明,MARK2有助于神经元极性和神经突生长所需的微管的可塑性。

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