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AMPA 受体 GluA2 亚基的 Q/R 编辑位点作为一种表观遗传开关,调节阿尔茨海默病中的树突棘、神经退行性变和认知缺陷。

The Q/R editing site of AMPA receptor GluA2 subunit acts as an epigenetic switch regulating dendritic spines, neurodegeneration and cognitive deficits in Alzheimer's disease.

机构信息

St Vincent's Clinical School, St Vincent's Hospital Sydney, Faculty of Medicine, University of New South Wales, Darlinghurst, NSW, 2010, Australia.

School of Rural Medicine, Charles Sturt University, Orange, NSW, 2800, Australia.

出版信息

Mol Neurodegener. 2023 Sep 28;18(1):65. doi: 10.1186/s13024-023-00632-5.

Abstract

BACKGROUND

RNA editing at the Q/R site of GluA2 occurs with ~99% efficiency in the healthy brain, so that the majority of AMPARs contain GluA2(R) instead of the exonically encoded GluA2(Q). Reduced Q/R site editing infcreases AMPA receptor calcium permeability and leads to dendritic spine loss, neurodegeneration, seizures and learning impairments. Furthermore, GluA2 Q/R site editing is impaired in Alzheimer's disease (AD), raising the possibility that unedited GluA2(Q)-containing AMPARs contribute to synapse loss and neurodegeneration in AD. If true, then inhibiting expression of unedited GluA2(Q), while maintaining expression of GluA2(R), may be a novel strategy of preventing synapse loss and neurodegeneration in AD.

METHODS

We engineered mice with the 'edited' arginine codon (CGG) in place of the unedited glutamine codon (CAG) at position 607 of the Gria2 gene. We crossbred this line with the J20 mouse model of AD and conducted anatomical, electrophysiological and behavioural assays to determine the impact of eliminating unedited GluA2(Q) expression on AD-related phenotypes.

RESULTS

Eliminating unedited GluA2(Q) expression in AD mice prevented dendritic spine loss and hippocampal CA1 neurodegeneration as well as improved working and reference memory in the radial arm maze. These phenotypes were improved independently of Aβ pathology and ongoing seizure susceptibility. Surprisingly, our data also revealed increased spine density in non-AD mice with exonically encoded GluA2(R) as compared to their wild-type littermates, suggesting an unexpected and previously unknown role for unedited GluA2(Q) in regulating dendritic spines.

CONCLUSION

The Q/R editing site of the AMPA receptor subunit GluA2 may act as an epigenetic switch that regulates dendritic spines, neurodegeneration and memory deficits in AD.

摘要

背景

在健康的大脑中,GluA2 的 Q/R 位点的 RNA 编辑效率约为 99%,因此大多数 AMPAR 包含 GluA2(R)而不是外显子编码的 GluA2(Q)。Q/R 位点编辑减少会增加 AMPA 受体钙通透性,导致树突棘丢失、神经退行性变、癫痫发作和学习障碍。此外,阿尔茨海默病 (AD) 中的 GluA2 Q/R 位点编辑受损,这增加了未经编辑的包含 GluA2(Q)的 AMPAR 对 AD 中突触丢失和神经退行性变的贡献的可能性。如果这是真的,那么抑制未经编辑的 GluA2(Q)的表达,同时维持 GluA2(R)的表达,可能是预防 AD 中突触丢失和神经退行性变的一种新策略。

方法

我们通过在 Gria2 基因的 607 位将未经编辑的谷氨酰胺密码子 (CAG)替换为“编辑”的精氨酸密码子 (CGG),构建了带有 GluA2(Q)的小鼠。我们将这条线与 J20 AD 小鼠模型杂交,并进行解剖学、电生理学和行为学测定,以确定消除未经编辑的 GluA2(Q)表达对 AD 相关表型的影响。

结果

在 AD 小鼠中消除未经编辑的 GluA2(Q)表达可防止树突棘丢失和海马 CA1 神经退行性变,并改善在放射臂迷宫中的工作和参考记忆。这些表型的改善与 Aβ 病理学和持续的癫痫易感性无关。令人惊讶的是,我们的数据还表明,与野生型同窝仔相比,外显子编码的 GluA2(R)的非 AD 小鼠的棘密度增加,这表明未经编辑的 GluA2(Q)在调节树突棘中具有意想不到的和先前未知的作用。

结论

AMPA 受体亚基 GluA2 的 Q/R 编辑位点可能作为一种表观遗传开关,调节 AD 中的树突棘、神经退行性变和记忆缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a684/10537207/706d2bfe1187/13024_2023_632_Fig1_HTML.jpg

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