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信号蛋白 4D 在病变大脑神经元中上调,并引发星形胶质细胞反应。

Semaphorin 4D is upregulated in neurons of diseased brains and triggers astrocyte reactivity.

机构信息

Vaccinex, Inc., Research, Rochester, NY, USA.

Department of Neurology, Center for Health and Technology (SMD), University of Rochester Medical Center, Rochester, NY, USA.

出版信息

J Neuroinflammation. 2022 Aug 6;19(1):200. doi: 10.1186/s12974-022-02509-8.

Abstract

BACKGROUND

The close interaction and interdependence of astrocytes and neurons allows for the possibility that astrocyte dysfunction contributes to and amplifies neurodegenerative pathology. Molecular pathways that trigger reactive astrocytes may represent important targets to preserve normal homeostatic maintenance and modify disease progression.

METHODS

Semaphorin 4D (SEMA4D) expression in the context of disease-associated neuropathology was assessed in postmortem brain sections of patients with Huntington's (HD) and Alzheimer's disease (AD), as well as in mouse models of HD (zQ175) and AD (CVN; APPSwDI/NOS2) by immunohistochemistry. Effects of SEMA4D antibody blockade were assessed in purified astrocyte cultures and in the CVN mouse AD model. CVN mice were treated weekly from 26 to 38 weeks of age; thereafter mice underwent cognitive assessment and brains were collected for histopathology.

RESULTS

We report here that SEMA4D is upregulated in neurons during progression of neurodegenerative diseases and is a trigger of reactive astrocytes. Evidence of reactive astrocytes in close proximity to neurons expressing SEMA4D is detected in brain sections of patients and mouse models of HD and AD. We further report that SEMA4D-blockade prevents characteristic loss of GABAergic synapses and restores spatial memory and learning in CVN mice, a disease model that appears to reproduce many features of AD-like pathology including neuroinflammation. In vitro mechanistic studies demonstrate that astrocytes express cognate receptors for SEMA4D and that ligand binding triggers morphological variations, and changes in expression of key membrane receptors and enzymes characteristic of reactive astrocytes. These changes include reductions in EAAT-2 glutamate transporter and glutamine synthetase, key enzymes in neurotransmitter recycling, as well as reduced GLUT-1 glucose and MCT-4 lactate transporters, that allow astrocytes to couple energy metabolism with synaptic activity. Antibody blockade of SEMA4D prevented these changes and reversed functional deficits in glucose uptake.

CONCLUSIONS

Collectively, these results suggest that SEMA4D blockade may ameliorate disease pathology by preserving normal astrocyte function and reducing the negative consequences of reactive astrogliosis.

摘要

背景

星形胶质细胞和神经元的密切相互作用和相互依存使得星形胶质细胞功能障碍可能导致并放大神经退行性病理。触发反应性星形胶质细胞的分子途径可能代表了维持正常内稳态和改变疾病进展的重要靶点。

方法

通过免疫组织化学方法评估了神经退行性疾病相关神经病理学背景下的 SEMA4D(信号素 4D)在亨廷顿病(HD)和阿尔茨海默病(AD)患者死后脑切片以及 HD (zQ175)和 AD(CVN;APPSwDI/NOS2)小鼠模型中的表达。通过纯化的星形胶质细胞培养物和 CVN 小鼠 AD 模型评估了 SEMA4D 抗体阻断的作用。从 26 到 38 周龄每周对 CVN 小鼠进行治疗;此后,对小鼠进行认知评估,并收集大脑进行组织病理学检查。

结果

我们在这里报告说,SEMA4D 在神经退行性疾病进展过程中在神经元中上调,是反应性星形胶质细胞的触发因素。在 HD 和 AD 患者和小鼠模型的脑切片中检测到与表达 SEMA4D 的神经元相邻的反应性星形胶质细胞。我们进一步报告说,SEMA4D 阻断可防止 GABA 能突触的特征性丧失,并恢复 CVN 小鼠的空间记忆和学习能力,该疾病模型似乎再现了许多 AD 样病理学特征,包括神经炎症。体外机制研究表明,星形胶质细胞表达 SEMA4D 的同源受体,配体结合触发形态变化,以及关键膜受体和特征性反应性星形胶质细胞的酶的表达变化。这些变化包括谷氨酸转运体 EAAT-2 和谷氨酰胺合成酶的减少,这两种酶是神经递质再循环的关键酶,以及 GLUT-1 葡萄糖和 MCT-4 乳酸转运体的减少,使星形胶质细胞能够将能量代谢与突触活动耦合。SEMA4D 抗体阻断可防止这些变化并逆转葡萄糖摄取的功能缺陷。

结论

综上所述,这些结果表明,SEMA4D 阻断可能通过维持正常星形胶质细胞功能和减少反应性星形胶质细胞的负面影响来改善疾病病理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0cf/9356477/113efa8b286e/12974_2022_2509_Fig1_HTML.jpg

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