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Mice lacking phosphatase PP2A subunit PR61/B'{delta} (Ppp2r5d) develop spatially restricted tauopathy by deregulation of CDK5 and GSK3{beta}

机译:缺乏磷酸酶PP2A亚基PR61 /B'δ(Ppp2r5d)的小鼠会因CDK5和GSK3 {beta}的失调而发展出空间受限的tauopathy。

摘要

Functional diversity of protein phosphatase 2A (PP2A) enzymes mainly results from their association with distinct regulatory subunits. To analyze the functions of one such holoenzyme in vivo, we generated mice lacking PR61/B'δ (B56δ), a subunit highly expressed in neural tissues. In PR61/B'δ-null mice the microtubule-associated protein tau becomes progressively phosphorylated at pathological epitopes in restricted brain areas, with marked immunoreactivity for the misfolded MC1-conformation but without neurofibrillary tangle formation. Behavioral tests indicated impaired sensorimotor but normal cognitive functions. These phenotypical characteristics were further underscored in PR61/B'δ-null mice mildly overexpressing human tau. PR61/B'δ-containing PP2A (PP2A(T61δ)) poorly dephosphorylates tau in vitro, arguing against a direct dephosphorylation defect. Rather, the activity of glycogen synthase kinase-3β, a major tau kinase, was found increased, with decreased phosphorylation of Ser-9, a putative cyclin-dependent kinase 5 (CDK5) target. Accordingly, CDK5 activity is decreased, and its cellular activator p35, strikingly absent in the affected brain areas. As opposed to tau, p35 is an excellent PP2A(T61δ) substrate. Our data imply a nonredundant function for PR61/B'δ in phospho-tau homeostasis via an unexpected spatially restricted mechanism preventing p35 hyperphosphorylation and its subsequent degradation.
机译:蛋白磷酸酶2A(PP2A)酶的功能多样性主要是由于它们与不同的调节亚基相关。为了分析一种这样的全酶在体内的功能,我们生成了缺少PR61 /B'δ(B56δ)(一种在神经组织中高度表达的亚基)的小鼠。在PR61 /B'δ-null小鼠中,微管相关蛋白tau在受限大脑区域的病理表位处逐渐磷酸化,对错误折叠的MC1构象具有明显的免疫反应性,但没有神经原纤维缠结的形成。行为测试表明感觉运动受损,但认知功能正常。这些表型特征在轻度过度表达人tau蛋白的PR61 /B'δ-null小鼠中得到进一步强调。含PR61 /B'δ的PP2A(PP2A(T61δ))在体外不能使tau脱磷酸,因为存在直接脱磷酸缺陷。相反,发现糖原合酶激酶3β(一种主要的tau激酶)的活性增加,而Ser-9(假定的细胞周期蛋白依赖性激酶5(CDK5)靶标)的磷酸化降低。因此,在患病的大脑区域中CDK5活性降低,并且其细胞激活剂p35显着缺失。与tau相反,p35是出色的PP2A(T61δ)底物。我们的数据表明,通过防止p35过度磷酸化及其后续降解的意想不到的空间受限机制,PR61 /B'δ在磷酸化tau稳态中具有非冗余功能。

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