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PIMT+/-小鼠大脑中蛋白质损伤加速;一种人类衰老过程中认知衰退变异性的可能模型。

Accelerated protein damage in brains of PIMT+/- mice; a possible model for the variability of cognitive decline in human aging.

作者信息

Qin Zhenxia, Dimitrijevic Aleksandra, Aswad Dana W

机构信息

Department of Molecular Biology & Biochemistry, University of California, Irvine, Irvine, CA, USA.

Department of Molecular Biology & Biochemistry, University of California, Irvine, Irvine, CA, USA.

出版信息

Neurobiol Aging. 2015 Feb;36(2):1029-36. doi: 10.1016/j.neurobiolaging.2014.10.036. Epub 2014 Nov 4.

Abstract

Isoaspartate formation is a common type of protein damage normally kept in check by the repair enzyme protein-L-isoaspartyl methyltransferase (PIMT). Mice with a knockout of the gene (Pcmt1) for this enzyme (KO, -/-) exhibit a pronounced neuropathology with fatal epileptic seizures at 30-60 days. Heterozygous (HZ, +/-) mice have 50% of the PIMT activity found in wild-type (WT, +/+) mice, but appear normal. To see if HZ mice exhibit accelerated aging at the molecular level, we compared brain extracts from HZ and WT mice at 8 months and 2 years with regard to PIMT activity, isoaspartate levels, and activity of an endogenous PIMT substrate, creatine kinase B. PIMT activity declined modestly with age in both genotypes. Isoaspartate was significantly higher in HZ than WT mice at 8 months and more so at 2 years, rising 5× faster in HZ males and 3× faster in females. Creatine kinase activity decreased with age and was always lower in the HZ mice. These findings suggest the individual variation of human PIMT levels may significantly influence the course of age-related central nervous system dysfunction.

摘要

异天冬氨酸的形成是一种常见的蛋白质损伤类型,通常由修复酶蛋白质-L-异天冬氨酰甲基转移酶(PIMT)控制。该酶(Pcmt1)基因敲除的小鼠(KO,-/-)表现出明显的神经病理学特征,在30-60天时会出现致命的癫痫发作。杂合子(HZ,+/-)小鼠的PIMT活性是野生型(WT,+/+)小鼠的50%,但外观正常。为了观察HZ小鼠在分子水平上是否表现出加速衰老,我们比较了8个月和2岁时HZ小鼠和WT小鼠脑提取物的PIMT活性、异天冬氨酸水平以及内源性PIMT底物肌酸激酶B的活性。两种基因型的PIMT活性均随年龄适度下降。8个月时HZ小鼠的异天冬氨酸水平显著高于WT小鼠,2岁时更是如此,HZ雄性小鼠的异天冬氨酸水平上升速度比WT小鼠快5倍,雌性快3倍。肌酸激酶活性随年龄下降,且在HZ小鼠中始终较低。这些发现表明,人类PIMT水平的个体差异可能会显著影响与年龄相关的中枢神经系统功能障碍的进程。

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