Pin1 protein, a peptidyl-prolyl cis-trans isomerase plays an important regulatory role in neuronal function. Recent studies indicate that Pin1 may promote the dephosphorylation of tau and restore its ability to bind to and polymerize microtubles. Previous studies on postmortem human brains showed that Pin1 is down-regulated in advanced Alzheimer's disease (AD) brains compared to age-matched non-demented controls. Because AD is a slowly progressive disease with a preclinical period that can last years, the abundance and regulatory function of Pin1 may vary on the course of the disease. In order to evaluate the potential contribution of Pin1 to AD pathogenesis, levels of mRNA, protein and isomerase activity of Pin1 and phosphorylated tau from postmortem brains of 10 persons with mild-cognitive impairment (MCI), 10 with AD and 10 age-matched no cognitive impairment (NCI) were measured. The relationship between Pin1 and phosphorylated tau as well as clinical and cognitive data were analyzed. The results indicated that Pin1 activity in MCI and AD were significantly higher than in NCI. Phosphorylated tau in MCI and AD was also higher than in NCI group. The positive correlation trend in MCI and the robust correlation in AD between Pin1 activity and phosphorylated tau implies that increasing phosphorylated tau during AD pathogenesis may induce the compensatory activation/up-regulation of Pin1, while the inverse correlation between Pin1 activity and phosphorylated tau in NCI group implies that decreased Pin1 may play a role in the initial accumulation of phosphorylated tau in AD pathogenesis.

译文

Pin1蛋白,一种肽基脯氨酰顺反式异构酶,在神经元功能中起重要的调节作用。最近的研究表明,Pin1可能促进tau的去磷酸化并恢复其与微管结合和聚合的能力。先前对死后人脑的研究表明,与年龄匹配的非痴呆对照组相比,晚期阿尔茨海默氏病 (AD) 脑中的Pin1下调。由于AD是一种缓慢进行的疾病,其临床前期可以持续数年,因此Pin1的丰度和调节功能可能会随疾病的发展而变化。为了评估Pin1对AD发病的潜在贡献,测量了10例轻度认知障碍 (MCI),10例AD和10例年龄匹配的未认知障碍 (NCI) 的死后大脑中Pin1和磷酸化tau的mRNA,蛋白质和异构酶活性。分析了Pin1与磷酸化tau之间的关系以及临床和认知数据。结果表明,MCI和AD的Pin1活性明显高于NCI。MCI和AD的磷酸化tau也高于NCI组。MCI的正相关趋势和AD中Pin1活性与磷酸化tau之间的强相关性表明,在AD发病过程中磷酸化tau的增加可能会诱导Pin1的代偿性激活/上调。而NCI组Pin1活性与磷酸化tau之间的负相关意味着Pin1降低可能在AD发病机理中磷酸化tau的初始积累中起作用。

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