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p75NTR 通过其细胞外结构域增加 Abeta 产生但抑制 Abeta 聚集来调节 Abeta 沉积。

p75NTR regulates Abeta deposition by increasing Abeta production but inhibiting Abeta aggregation with its extracellular domain.

机构信息

Department of Human Physiology and Centre for Neuroscience, Flinders University, Adelaide 5001, South Australia, Australia.

出版信息

J Neurosci. 2011 Feb 9;31(6):2292-304. doi: 10.1523/JNEUROSCI.2733-10.2011.

Abstract

Accumulation of toxic amyloid-β (Aβ) in the cerebral cortex and hippocampus is a major pathological feature of Alzheimer's disease (AD). The neurotrophin receptor p75NTR has been proposed to mediate Aβ-induced neurotoxicity; however, its role in the development of AD remains to be clarified. The p75NTR/ExonIII-/- mice and APPSwe/PS1dE9 mice were crossed to generate transgenic AD mice with deletion of p75NTR gene. In APPSwe/PS1dE9 transgenic mice, p75NTR expression was localized in the basal forebrain neurons and degenerative neurites in neocortex, increased with aging, and further activated by Aβ accumulation. Deletion of the p75NTR gene in APPSwe/PS1dE9 mice reduced soluble Aβ levels in the brain and serum, but increased the accumulation of insoluble Aβ and Aβ plaque formation. There was no change in the levels of amyloid precursor protein (APP) and its proteolytic derivatives, or α-, β-, and γ-secretase activities, or in levels of BACE1, neprilysin (NEP), and insulin-degrading enzyme (IDE) proteins. Aβ production by cortical neurons of APPSwe/PS1dE9 mice was reduced by deletion of p75NTR gene in vitro. Recombinant extracellular domain of p75NTR attenuated the oligomerization and fibrillation of synthetic Aβ(42) peptide in vitro, and reduced local Aβ plaques after hippocampus injection in vivo. In addition, deletion of p75NTR attenuated microgliosis but increased the microhemorrhage profiles in the brain. The deletion of p75NTR did not significantly change the cognitive function of the mice up to the age of 9 months. Our data suggest that p75NTR plays a critical role in regulating Aβ levels by both increasing Aβ production and attenuating its aggregation, and they caution that a therapeutic intervention simply reducing p75NTR may exacerbate AD pathology.

摘要

淀粉样β(Aβ)在大脑皮层和海马区的积累是阿尔茨海默病(AD)的主要病理特征。神经生长因子受体 p75NTR 被提议介导 Aβ 诱导的神经毒性;然而,其在 AD 发展中的作用仍需阐明。p75NTR/ExonIII-/- 小鼠和 APPSwe/PS1dE9 小鼠杂交,生成了 p75NTR 基因缺失的转基因 AD 小鼠。在 APPSwe/PS1dE9 转基因小鼠中,p75NTR 表达定位于基底前脑神经元和新皮层中的退行性神经突,随年龄增长而增加,并进一步被 Aβ 积累激活。APPSwe/PS1dE9 小鼠中 p75NTR 基因缺失减少了脑和血清中的可溶性 Aβ 水平,但增加了不溶性 Aβ 的积累和 Aβ 斑块形成。淀粉样前体蛋白(APP)及其蛋白水解衍生物、α-、β-和 γ-分泌酶活性或 BACE1、神经肽酶(NEP)和胰岛素降解酶(IDE)蛋白水平没有变化。体外敲除 p75NTR 基因降低了 APPSwe/PS1dE9 小鼠皮质神经元的 Aβ 产生。p75NTR 细胞外结构域的重组蛋白减弱了体外合成 Aβ(42)肽的寡聚化和纤维形成,并减少了体内海马注射后的局部 Aβ 斑块。此外,p75NTR 基因缺失减弱了小胶质细胞增生,但增加了大脑中的微出血特征。p75NTR 缺失在 9 个月大之前并未显著改变小鼠的认知功能。我们的数据表明,p75NTR 通过增加 Aβ 的产生和减弱其聚集,在调节 Aβ 水平方面发挥着关键作用,并且它们提醒人们,单纯减少 p75NTR 的治疗干预可能会加剧 AD 病理。

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