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载脂蛋白E受体2细胞内结构域(Apoer2-ICD)依赖的海马核糖体mRNA装载调控

Apoer2-ICD-dependent regulation of hippocampal ribosome mRNA loading.

作者信息

Wasser Catherine, Werthmann Gordon C, Hall Eric M, Kuhbandner Kristina, Wong Connie H, Durakoglugil Murat S, Herz Joachim

机构信息

UT Southwestern: The University of Texas Southwestern Medical Center.

出版信息

Res Sq. 2023 Jun 28:rs.3.rs-3040567. doi: 10.21203/rs.3.rs-3040567/v1.

Abstract

ApoE4, the most significant genetic risk factor for late-onset Alzheimer's disease (AD), sequesters a pro-synaptogenic Reelin receptor, Apoer2, in the endosomal compartment and prevents its normal recycling. In the adult brain, Reelin potentiates excitatory synapses and thereby protects against amyloid-β toxicity. Recently, a gain-of-function mutation in Reelin that is protective against early-onset AD has been described. Alternative splicing of the Apoer2 intracellular domain (Apoer2-ICD) regulates Apoer2 signaling. Splicing of juxtamembraneous exon 16 alters the g-secretase mediated release of the Apoer2-ICD as well as synapse number and LTP, and inclusion of exon 19 ameliorates behavioral deficits in an AD mouse model. The Apoer2-ICD has also been shown to alter transcription of synaptic genes. However, the role of Apoer2 splicing for transcriptional regulation and its role in AD pathogenesis is unknown. To assess mRNA-primed ribosomes specifically in hippocampi transduced with Apoer2-ICD splice variants, we crossed wild-type, cKO, and Apoer2 cleavage-resistant mice to a Cre-inducible translating ribosome affinity purification (TRAP) model. This allowed us to perform RNA-Seq on ribosome-loaded mRNA harvested specifically from hippocampal cells transduced with Apoer2-ICDs. Across all conditions, we observed ~ 4,700 altered ribosome-associated transcripts, several of which comprise key synaptic components such as extracellular matrix and focal adhesions with concomitant perturbation of critical signaling cascades, energy metabolism, translation, and apoptosis. We further demonstrated the ability of the Apoer2-ICD to rescue many of these altered transcripts, underscoring the importance of Apoer2 splicing in synaptic homeostasis. A variety of these altered genes have been implicated in AD, demonstrating how dysregulated Apoer2 splicing may contribute to neurodegeneration. Our findings demonstrate how alternative splicing of the APOE and Reelin receptor Apoer2 and release of the Apoer2-ICD regulates numerous ribosome-associated transcripts in mouse hippocampi . These transcripts comprise a wide range of functions, and alterations in these transcripts suggest a mechanistic basis for the synaptic deficits seen in Apoer2 mutant mice and AD patients. Our findings, together with the recently reported AD-protective effects of a Reelin gain-of-function mutation in the presence of an early-onset AD mutation in Presenilin-1, implicate the Reelin/Apoer2 pathway as a target for AD therapeutics.

摘要

载脂蛋白E4(ApoE4)是晚发性阿尔茨海默病(AD)最重要的遗传风险因素,它将一种促突触生成的Reelin受体载脂蛋白E受体2(Apoer2)隔离在内体区室中,并阻止其正常循环。在成人大脑中,Reelin增强兴奋性突触,从而抵御淀粉样β蛋白毒性。最近,有人描述了一种对早发性AD具有保护作用的Reelin功能获得性突变。Apoer2细胞内结构域(Apoer2-ICD)的可变剪接调节Apoer2信号传导。近膜外显子16的剪接改变了γ-分泌酶介导的Apoer2-ICD释放以及突触数量和长时程增强(LTP),而外显子19的包含改善了AD小鼠模型中的行为缺陷。Apoer2-ICD也已被证明会改变突触基因的转录。然而,Apoer2剪接在转录调控中的作用及其在AD发病机制中的作用尚不清楚。为了特异性评估在用Apoer2-ICD剪接变体转导的海马体中由mRNA引发的核糖体,我们将野生型、条件性敲除(cKO)和对Apoer2切割具有抗性的小鼠与一种Cre诱导型翻译核糖体亲和纯化(TRAP)模型进行杂交。这使我们能够对从用Apoer2-ICD转导的海马体细胞中特异性收获的核糖体负载的mRNA进行RNA测序。在所有条件下,我们观察到约4700个与核糖体相关的转录本发生改变,其中一些转录本包含关键的突触成分,如细胞外基质和粘着斑,同时关键信号级联、能量代谢、翻译和细胞凋亡也受到干扰。我们进一步证明了Apoer2-ICD挽救许多这些改变的转录本的能力,强调了Apoer2剪接在突触稳态中的重要性。这些改变的基因中有多种与AD有关,表明Apoer2剪接失调可能如何导致神经退行性变。我们的研究结果表明,载脂蛋白E(APOE)和Reelin受体Apoer2的可变剪接以及Apoer2-ICD的释放如何调节小鼠海马体中许多与核糖体相关的转录本。这些转录本具有广泛的功能,这些转录本的改变为在Apoer2突变小鼠和AD患者中观察到的突触缺陷提供了一个机制基础。我们的研究结果,连同最近报道的在早发性AD突变存在的情况下Reelin功能获得性突变对AD的保护作用,表明Reelin/Apoer2途径是AD治疗的一个靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07e/10350194/e60a0663305e/nihpp-rs3040567v1-f0001.jpg

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