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亨廷顿舞蹈病基因敲入小鼠模型中培养的纹状体神经元单个突触前终末抑制性突触囊泡的胞吐作用改变。

Altered exocytosis of inhibitory synaptic vesicles at single presynaptic terminals of cultured striatal neurons in a knock-in mouse model of Huntington's disease.

作者信息

Xu Chen, Chen Sidong, Chen Xingxiang, Ho Ka Hei, Park Chungwon, Yoo Hanna, Lee Suk-Ho, Park Hyokeun

机构信息

Division of Life Science, The Hong Kong University of Science and Technology, Kowloon, Hong Kong SAR, China.

Hong Kong Center for Construction Robotics (InnoHK-HKCRC), Hong Kong Science Park, Sha Tin, Hong Kong SAR, China.

出版信息

Front Mol Neurosci. 2023 Aug 17;16:1175522. doi: 10.3389/fnmol.2023.1175522. eCollection 2023.

Abstract

Huntington's disease (HD) is a progressive dominantly inherited neurodegenerative disease caused by the expansion of a cytosine-adenine-guanine (CAG) trinucleotide repeat in the gene, which encodes the mutant huntingtin protein containing an expanded polyglutamine tract. One of neuropathologic hallmarks of HD is selective degeneration in the striatum. Mechanisms underlying selective neurodegeneration in the striatum of HD remain elusive. Neurodegeneration is suggested to be preceded by abnormal synaptic transmission at the early stage of HD. However, how mutant huntingtin protein affects synaptic vesicle exocytosis at single presynaptic terminals of HD striatal neurons is poorly understood. Here, we measured synaptic vesicle exocytosis at single presynaptic terminals of cultured striatal neurons (mainly inhibitory neurons) in a knock-in mouse model of HD (zQ175) during electrical field stimulation using real-time imaging of FM 1-43 (a lipophilic dye). We found a significant decrease in bouton density and exocytosis of synaptic vesicles at single presynaptic terminals in cultured striatal neurons. Real-time imaging of VGAT-CypHer5E (a pH sensitive dye conjugated to an antibody against vesicular GABA transporter (VGAT)) for inhibitory synaptic vesicles revealed a reduction in bouton density and exocytosis of inhibitory synaptic vesicles at single presynaptic terminals of HD striatal neurons. Thus, our results suggest that the mutant huntingtin protein decreases bouton density and exocytosis of inhibitory synaptic vesicles at single presynaptic terminals of striatal neurons, causing impaired inhibitory synaptic transmission, eventually leading to the neurodegeneration in the striatum of HD.

摘要

亨廷顿舞蹈症(HD)是一种进行性显性遗传神经退行性疾病,由基因中胞嘧啶 - 腺嘌呤 - 鸟嘌呤(CAG)三核苷酸重复序列的扩增引起,该基因编码含有扩展的聚谷氨酰胺序列的突变型亨廷顿蛋白。HD的神经病理学特征之一是纹状体的选择性退化。HD纹状体中选择性神经退化的潜在机制仍然不清楚。有研究表明,在HD早期,神经退化之前存在异常的突触传递。然而,突变型亨廷顿蛋白如何影响HD纹状体神经元单个突触前终末的突触小泡胞吐作用,目前还知之甚少。在此,我们使用FM 1-43(一种亲脂性染料)的实时成像技术,在电场刺激期间,测量了亨廷顿舞蹈症基因敲入小鼠模型(zQ175)中培养的纹状体神经元(主要是抑制性神经元)单个突触前终末的突触小泡胞吐作用。我们发现培养的纹状体神经元单个突触前终末的突触小体密度和突触小泡胞吐作用显著降低。对抑制性突触小泡的VGAT-CypHer5E(一种与囊泡GABA转运体(VGAT)抗体偶联的pH敏感染料)进行实时成像,结果显示HD纹状体神经元单个突触前终末的抑制性突触小体密度和抑制性突触小泡胞吐作用降低。因此,我们的结果表明,突变型亨廷顿蛋白降低了纹状体神经元单个突触前终末的抑制性突触小体密度和抑制性突触小泡胞吐作用,导致抑制性突触传递受损,最终导致HD纹状体中的神经退化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf44/10470468/ce2f577b2985/fnmol-16-1175522-g001.jpg

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