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MARKK a Ste20-like kinase activates the polarity-inducing kinase MARK/PAR-1

机译:MARKK是一种Ste20样激酶可激活极性诱导激酶MARK / PAR-1。

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摘要

MARK, a kinase family related to PAR-1 involved in establishing cell polarity, phosphorylates microtubule-associated proteins (tau/MAP2/MAP4) at KXGS motifs, causes detachment from microtubules, and their disassembly. The sites are prominent in tau from Alzheimer’s disease brains. We studied the activation of MARK and identified the upstream kinase, MARKK, a member of the Ste20 kinase family. It phosphorylates MARK within the activation loop (T208 in MARK2). A fraction of MARK in brain tissue is doubly phosphorylated (at T208/S212), reminiscent of the activation of MAP kinase; however, the phosphorylation of the second site in MARK (S212) is inhibitory. In cells the activity of MARKK enhances microtubule dynamics through the activation of MARK and leads to phosphorylation and detachment of tau or equivalent MAPs from microtubules. Overexpression of MARK eventually leads to microtubule breakdown and cell death, but in neuronal cells the primary effect is to allow the development of neurites during differentiation.
机译:MARK,与参与建立细胞极性的PAR-1相关的激酶家族,在KXGS基序处使微管相关蛋白(tau / MAP2 / MAP4)磷酸化,引起与微管的分离以及它们的拆卸。这些地点在阿尔茨海默氏病大脑中的tau上很显眼。我们研究了MARK的激活并确定了上游激酶MARKK(Ste20激酶家族的成员)。它使激活环内的MARK磷酸化(MARK2中的T208)。脑组织中的MARK的一部分被双重磷酸化(在T208 / S212处),使人联想到MAP激酶的激活。然而,MARK(S212)中第二个位点的磷酸化具有抑制作用。在细胞中,MARKK的活性通过MARK的激活增强了微管的动力学,并导致tau或等效MAP从微管中磷酸化和脱离。 MARK的过度表达最终会导致微管破裂和细胞死亡,但在神经元细胞中,主要作用是允许神经突在分化过程中发展。

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