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Effect of Pin1 or Microtubule Binding on Dephosphorylation of FTDP-17 Mutant Tau*

机译:Pin1或微管结合对FTDP-17突变Tau *的去磷酸化的影响

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摘要

Neurodegenerative tauopathies, including Alzheimer disease, are characterized by abnormal hyperphosphorylation of the microtubule-associated protein Tau. One group of tauopathies, known as frontotemporal dementia with parkinsonism linked to chromosome 17 (FTDP-17), is directly associated with mutations of the gene tau. However, it is unknown why mutant Tau is highly phosphorylated in the patient brain. In contrast to in vivo high phosphorylation, FTDP-17 Tau is phosphorylated less than wild-type Tau in vitro. Because phosphorylation is a balance between kinase and phosphatase activities, we investigated dephosphorylation of mutant Tau proteins, P301L and R406W. Tau phosphorylated by Cdk5-p25 was dephosphorylated by protein phosphatases in rat brain extracts. Compared with wild-type Tau, R406W was dephosphorylated faster and P301L slower. The two-dimensional phosphopeptide map analysis suggested that faster dephosphorylation of R406W was due to a lack of phosphorylation at Ser-404, which is relatively resistant to dephosphorylation. We studied the effect of the peptidyl-prolyl isomerase Pin1 or microtubule binding on dephosphorylation of wild-type Tau, P301L, and R406W in vitro. Pin1 catalyzes the cis/trans isomerization of phospho-Ser/Thr-Pro sequences in a subset of proteins. Dephosphorylation of wild-type Tau was reduced in brain extracts of Pin1-knockout mice, and this reduction was not observed with P301L and R406W. On the other hand, binding to microtubules almost abolished dephosphorylation of wild-type and mutant Tau proteins. These results demonstrate that mutation of Tau and its association with microtubules may change the conformation of Tau, thereby suppressing dephosphorylation and potentially contributing to the etiology of tauopathies.
机译:神经退行性疾病,包括阿尔茨海默氏病,其特征在于微管相关蛋白Tau的异常过度磷酸化。一组tauopathies,称为额颞叶痴呆,伴有与17号染色​​体相关的帕金森病(FTDP-17),与tau基因突变直接相关。然而,尚不清楚为什么突变体Tau在患者大脑中被高度磷酸化。与体内高磷酸化相反,FTDP-17 Tau在体外的磷酸化程度低于野生型Tau。因为磷酸化是激酶和磷酸酶活性之间的平衡,所以我们研究了突变的Tau蛋白P301L和R406W的去磷酸化。 Cdk5-p25磷酸化的Tau被大鼠脑提取物中的蛋白磷酸酶去磷酸化。与野生型Tau相比,R406W的去磷酸作用更快,而P301L的则更慢。二维磷酸肽图分析表明,R406W更快的去磷酸化是由于在Ser-404处缺乏磷酸化引起的,该磷酸化相对抗去磷酸化。我们研究了肽基-脯氨酰异构酶Pin1或微管结合对野生型Tau,P301L和R406W体外去磷酸化的影响。 Pin1催化蛋白质子集中的磷酸-Ser / Thr-Pro序列的顺式/反式异构化。在Pin1-敲除小鼠的脑提取物中,野生型Tau的去磷酸化作用降低,而P301L和R406W则未观察到这种降低。另一方面,与微管的结合几乎消除了野生型和突变型Tau蛋白的去磷酸化作用。这些结果表明,Tau的突变及其与微管的结合可能会改变Tau的构象,从而抑制去磷酸化并可能导致tauopathies的病因。

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