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Higher Levels of Protein Palmitoylation in the Frontal Cortex across Aging Were Associated with Reference Memory and Executive Function Declines

机译:跨年龄的额叶皮质中较高水平的蛋白棕榈酰化与参考记忆和执行功能下降相关

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摘要

Cognitive decline with aging is often due to altered levels of protein expression. The NMDA receptor (NMDAR) and the complex of proteins surrounding the receptor are susceptible to age-related changes in expression. In the frontal cortex of aged mice, there is a significant loss of expression of the GluN2B subunit of the NMDAR, an increase in Fyn expression, and no change in PSD-95. Studies have also found that, in the frontal cortex, phosphorylation of GluN2B subunits and palmitoylation of GluN2 subunits and NMDAR complex proteins are affected by age. In this study, we examined some of the factors that may lead to the differences in the palmitoylation levels of NMDAR complex proteins in the frontal cortex of aged animals. The Morris water maze was used to test spatial learning in 3- and 24-month-old mice. The acyl–biotinyl exchange method was used to precipitate palmitoylated proteins from the frontal cortices and hippocampi of the mice. Additionally, brain lysates from old and young mice were probed for the expression of fatty acid transporter proteins. An age-related increase of palmitoylated GluN2A, GluN2B, Fyn, PSD-95, and APT1 (acyl protein thioesterase 1) in the frontal cortex was associated with poorer reference memory and/or executive functions. These data suggest that there may be a perturbation in the palmitoylation cycle in the frontal cortex of aged mice that contributes to age-related cognitive declines.
机译:随着年龄的增长,认知能力下降通常是由于蛋白质表达水平的改变。 NMDA受体(NMDAR)和受体周围的蛋白质复合物易受年龄相关的表达变化的影响。在衰老小鼠的额叶皮层中,NMDAR的GluN2B亚基的表达明显减少,Fyn表达增加,而PSD-95没有变化。研究还发现,在额叶皮层中,GluN2B亚基的磷酸化以及GluN2亚基和NMDAR复合蛋白的棕榈酰化受年龄的影响。在这项研究中,我们研究了一些可能导致年老动物额叶皮质中NMDAR复合蛋白的棕榈酰化水平差异的因素。莫里斯水迷宫用于测试3个月和24个月大小鼠的空间学习。酰基-生物素基交换法用于从小鼠额叶皮质和海马中沉淀棕榈酰化的蛋白质。另外,探测了来自老小鼠和幼小鼠的脑裂解液中脂肪酸转运蛋白的表达。额叶皮质中棕榈酰化的GluN2A,GluN2B,Fyn,PSD-95和APT1(酰基蛋白硫酯酶1)的年龄相关性增加与较差的参考记忆和/或执行功能有关。这些数据表明,老年小鼠额叶皮层的棕榈酰化周期中可能存在扰动,这会导致与年龄相关的认知能力下降。

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