首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Quantitative mapping of microtubule-associated protein 2c (MAP2c) phosphorylation and regulatory protein 14-3-3ζ-binding sites reveals key differences between MAP2c and its homolog Tau
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Quantitative mapping of microtubule-associated protein 2c (MAP2c) phosphorylation and regulatory protein 14-3-3ζ-binding sites reveals key differences between MAP2c and its homolog Tau

机译:微管相关蛋白2c(MAP2c)磷酸化和调节蛋白14-3-3ζ结合位点的定量作图揭示了MAP2c及其同系物Tau之间的关键差异

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摘要

Microtubule-associated protein 2c (MAP2c) is involved in neuronal development and is less characterized than its homolog Tau, which has various roles in neurodegeneration. Using NMR methods providing single-residue resolution and quantitative comparison, we investigated molecular interactions important for the regulatory roles of MAP2c in microtubule dynamics. We found that MAP2c and Tau significantly differ in the position and kinetics of sites that are phosphorylated by cAMP-dependent protein kinase (PKA), even in highly homologous regions. We determined the binding sites of unphosphorylated and phosphorylated MAP2c responsible for interactions with the regulatory protein 14-3-3ζ. Differences in phosphorylation and in charge distribution between MAP2c and Tau suggested that both MAP2c and Tau respond to the same signal (phosphorylation by PKA) but have different downstream effects, indicating a signaling branch point for controlling microtubule stability. Although the interactions of phosphorylated Tau with 14-3-3ζ are supposed to be a major factor in microtubule destabilization, the binding of 14-3-3ζ to MAP2c enhanced by PKA-mediated phosphorylation is likely to influence microtubule-MAP2c binding much less, in agreement with the results of our tubulin co-sedimentation measurements. The specific location of the major MAP2c phosphorylation site in a region homologous to the muscarinic receptor-binding site of Tau suggests that MAP2c also may regulate processes other than microtubule dynamics.
机译:微管相关蛋白2c(MAP2c)参与神经元的发育,其特征不如其同源物Tau,后者在神经退行性变中具有多种作用。使用提供单一残基拆分和定量比较的NMR方法,我们研究了分子相互作用对MAP2c在微管动力学中的调节作用很重要。我们发现,即使在高度同源的区域中,MAP2c和Tau在由cAMP依赖性蛋白激酶(PKA)磷酸化的位点的位置和动力学上也存在显着差异。我们确定了未磷酸化和磷酸化的MAP2c与调节蛋白14-3-3ζ相互作用的结合位点。 MAP2c和Tau之间的磷酸化和电荷分布上的差异表明MAP2c和Tau都响应相同的信号(通过PKA进行磷酸化),但具有不同的下游效应,表明控制微管稳定性的信号分支点。尽管磷酸化的Tau与14-3-3ζ的相互作用被认为是微管失稳的主要因素,但14-3-3ζ与MAP2c的结合(通过PKA介导的磷酸化作用增强)可能对微管-MAP2c的结合的影响较小,与我们的微管蛋白共同沉降测量结果一致。主要MAP2c磷酸化位点在与Tau毒蕈碱受体结合位点同源的区域中的特定位置表明,MAP2c还可能调节微管动力学以外的过程。

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