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microRNA-153 通过阻断慢性脑低灌注后囊泡释放来损害突触前可塑性。

MicroRNA-153 impairs presynaptic plasticity by blocking vesicle release following chronic brain hypoperfusion.

机构信息

Department of Pharmacology (The State-Province Key Laboratories of Biomedicine-Pharmaceutics of China), College of Pharmacy of Harbin Medical University, Harbin, 150086, Heilongjiang Province, China.

出版信息

Cell Commun Signal. 2020 Apr 6;18(1):57. doi: 10.1186/s12964-020-00551-8.

Abstract

BACKGROUND

Chronic brain hypoperfusion (CBH) is closely related to Alzheimer's disease (AD) and vascular dementia (VaD). Meanwhile, synaptic pathology plays a prominent role in the initial stage of AD and VaD. However, whether and how CBH impairs presynaptic plasticity is currently unclear.

METHODS

In the present study, we performed a battery of techniques, including primary neuronal culture, patch clamp, stereotaxic injection of the lentiviral vectors, morris water maze (MWM), dual luciferase reporter assay, FM1-43 fluorescence dye evaluation, qRT-PCR and western blot, to investigate the regulatory effect of miR-153 on hippocampal synaptic vesicle release both in vivo and in vitro. The CBH rat model was generated by bilateral common carotid artery ligation (2VO).

RESULTS

Compared to sham rats, 2VO rats presented decreased field excitatory postsynaptic potential (fEPSP) amplitude and increased paired-pulse ratios (PPRs) in the CA3-CA1 pathway, as well as significantly decreased expression of multiple vesicle fusion-related proteins, including SNAP-25, VAMP-2, syntaxin-1A and synaptotagmin-1, in the hippocampi. The levels of microRNA-153 (miR-153) were upregulated in the hippocampi of rats following 2VO surgery, and in the plasma of dementia patients. The expression of the vesicle fusion-related proteins affected by 2VO was inhibited by miR-153, elevated by miR-153 inhibition, and unchanged by binding-site mutation or miR masks. FM1-43 fluorescence images showed that miR-153 blunted vesicle exocytosis, but this effect was prevented by either 2'-O-methyl antisense oligoribonucleotides to miR-153 (AMO-153) and miR-masking of the miR-153 binding site in the 3' untranslated region (3'UTR) of the Snap25, Vamp2, Stx1a and Syt1 genes. Overexpression of miR-153 by lentiviral vector-mediated miR-153 mimics (lenti-pre-miR-153) decreased the fEPSP amplitude and elevated the PPR in the rat hippocampus, whereas overexpression of the antisense molecule (lenti-AMO-153) reversed these changes triggered by 2VO. Furthermore, lenti-AMO-153 attenuated the cognitive decline of 2VO rats.

CONCLUSIONS

Overexpression of miR-153 controls CBH-induced presynaptic vesicle release impairment by posttranscriptionally regulating the expression of four vesicle release-related proteins by targeting the 3'UTRs of the Stx1a, Snap25, Vamp2 and Syt1 genes. These findings identify a novel mechanism of presynaptic plasticity impairment during CBH, which may be a new drug target for prevention or treatment of AD and VaD. Video Abstract.

摘要

背景

慢性脑灌注不足(CBH)与阿尔茨海默病(AD)和血管性痴呆(VaD)密切相关。同时,突触病理学在 AD 和 VaD 的早期阶段起着突出的作用。然而,CBH 是否以及如何损害突触前可塑性目前尚不清楚。

方法

在本研究中,我们使用了一系列技术,包括原代神经元培养、膜片钳、立体定向注射慢病毒载体、莫里斯水迷宫(MWM)、双荧光素酶报告基因检测、FM1-43 荧光染料评估、qRT-PCR 和 Western blot,来研究 miR-153 对体内和体外海马突触囊泡释放的调节作用。通过双侧颈总动脉结扎(2VO)建立 CBH 大鼠模型。

结果

与假手术大鼠相比,2VO 大鼠 CA3-CA1 通路上的场兴奋性突触后电位(fEPSP)幅度降低,成对脉冲比(PPR)增加,海马内多个囊泡融合相关蛋白的表达明显降低,包括突触相关蛋白 25(SNAP-25)、囊泡相关膜蛋白 2(VAMP-2)、突触融合蛋白 1A(syntaxin-1A)和突触结合蛋白 1(synaptotagmin-1)。2VO 手术后大鼠海马和痴呆患者血浆中 microRNA-153(miR-153)水平升高。2VO 抑制的囊泡融合相关蛋白的表达受 miR-153 抑制,受 miR-153 抑制增强,受结合位点突变或 miR 封闭不变。FM1-43 荧光图像显示 miR-153 减弱囊泡胞吐,但这一作用被 miR-153 的 2'-O-甲基反义寡核苷酸(AMO-153)或 miR 封闭 Snap25、Vamp2、Stx1a 和 Syt1 基因 3'非翻译区(3'UTR)中的 miR-153 结合位点所阻止。慢病毒载体介导的 miR-153 模拟物(lenti-pre-miR-153)过表达使大鼠海马内 fEPSP 幅度降低,PPR 升高,而反义分子(lenti-AMO-153)过表达则逆转了 2VO 引起的这些变化。此外,lenti-AMO-153 可减轻 2VO 大鼠的认知障碍。

结论

miR-153 通过靶向 Stx1a、Snap25、Vamp2 和 Syt1 基因的 3'UTR 来调节四种囊泡释放相关蛋白的表达,从而控制 CBH 诱导的突触前囊泡释放障碍,这为 CBH 期间突触前可塑性障碍的机制提供了新的认识,可能成为预防或治疗 AD 和 VaD 的新药物靶点。视频摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/685a/7137307/e04075d29bac/12964_2020_551_Fig1_HTML.jpg

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