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首页> 外文期刊>Neuropathology and applied neurobiology >Limbic structures are prone to age-related impairments in proteasome activity and neuronal ubiquitinated inclusions in SAMP10 mouse: a model of cerebral degeneration.
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Limbic structures are prone to age-related impairments in proteasome activity and neuronal ubiquitinated inclusions in SAMP10 mouse: a model of cerebral degeneration.

机译:肢体结构在SAMP10小鼠(脑退化模型)中的蛋白酶体活性和神经元遍在蛋白包涵体中容易出现与年龄相关的损伤。

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Aims: Neurodegenerative diseases are characterized by ubiquitinated inclusions in selective brain regions. Here we investigated whether the dysfunction of the ubiquitin proteasome system might be involved in the pathogenesis and regional selectivity of neuronal ubiquitinated inclusions using the SAMP10 strain of mouse, an inbred model of age-related cerebral degeneration. Methods: By comparing SAMP10 mice at various ages with SAMR1 and C57BL mice as normal brain ageing controls, we studied morphological features and distribution of inclusions. We measured tissue proteasome activity in different brain regions of mice at various ages by fluorogenic substrate assays. We induced inclusions in cultured neurones by inhibiting the proteasome and analysed changes in the dendritic morphology. Results: Inclusions were formed in association with lipofuscin in neuronal perikarya and occurred most frequently in the limbic-related forebrain structures. There were sparse inclusion-bearing neurones in the non-limbic forebrain. In aged SAMR1 and C57BL, there were far fewer inclusions in the limbic-related forebrain than in aged SAMP10. The proteasome activity in the limbic-related forebrain decreased much more rapidly and remarkably upon ageing (26% activity was detected in 17-month-old compared with 3-month-old mice) in SAMP10 than in SAMR1. The proteasome activity in the non-limbic forebrain did not change significantly with advancing age in either SAMP10 or SAMR1. Proteasomal inhibition enhanced the formation of ubiquitinated inclusions in cultured neurones. Neurones bearing inclusions had shortened neurites. Conclusions: We propose that the regional selectivity of proteasomal impairment is causally related to the selectivity of inclusion formation and associated dendritic degeneration in neurones of ageing SAMP10 mice.
机译:目的:神经退行性疾病的特征在于选择性脑区域中遍在蛋白的包裹体。在这里,我们研究了使用小鼠SAMP10菌株(年龄相关性脑退化的近交模型),泛素蛋白酶体系统的功能障碍是否可能参与了神经元泛素化包涵体的发病机制和区域选择性。方法:通过比较不同年龄的SAMP10小鼠与SAMR1和C57BL小鼠作为正常脑衰老对照,我们研究了形态特征和内含物分布。我们通过荧光底物测定法测量了不同年龄小鼠的不同大脑区域的组织蛋白酶体活性。我们通过抑制蛋白酶体诱导了培养的神经元中的内含物,并分析了树突形态的变化。结果:包裹体与脂褐素在神经元周围核形成,并最常出现在边缘相关的前脑结构中。非边缘前脑中有稀疏的含神经元。在老年SAMR1和C57BL中,与老年SAMP10相比,与边缘相关的前脑中的夹杂物少得多。与SAMR1相比,SAMP10中与边缘相关的前脑中的蛋白酶体活性随着衰老而迅速得多并且显着下降(17个月大的小鼠比3个月大的小鼠检测到26%的活性)。在SAMP10或SAMR1中,非边缘前脑中的蛋白酶体活性不会随着年龄的增长而显着变化。蛋白酶体抑制作用增强了培养的神经元中泛素化包涵体的形成。带有内含物的神经元缩短了神经突。结论:我们认为蛋白酶体损伤的区域选择性与衰老的SAMP10小鼠神经元中包涵体形成的选择性和相关的树突变性有关。

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