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内质网应激相关神经元死亡与神经疾病中的固有免疫反应。

Endoplasmic Reticulum Stress-Associated Neuronal Death and Innate Immune Response in Neurological Diseases.

机构信息

Department of Neurosurgery, Tianjin Medical University General Hospital, Tianjin, China.

Tianjin Neurological Institute, Key Laboratory of Post-trauma Neuro-Repair and Regeneration in Central Nervous System, Ministry of Education, Tianjin, China.

出版信息

Front Immunol. 2022 Jan 10;12:794580. doi: 10.3389/fimmu.2021.794580. eCollection 2021.


DOI:10.3389/fimmu.2021.794580
PMID:35082783
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8784382/
Abstract

Neuronal death and inflammatory response are two common pathological hallmarks of acute central nervous system injury and chronic degenerative disorders, both of which are closely related to cognitive and motor dysfunction associated with various neurological diseases. Neurological diseases are highly heterogeneous; however, they share a common pathogenesis, that is, the aberrant accumulation of misfolded/unfolded proteins within the endoplasmic reticulum (ER). Fortunately, the cell has intrinsic quality control mechanisms to maintain the proteostasis network, such as chaperone-mediated folding and ER-associated degradation. However, when these control mechanisms fail, misfolded/unfolded proteins accumulate in the ER lumen and contribute to ER stress. ER stress has been implicated in nearly all neurological diseases. ER stress initiates the unfolded protein response to restore proteostasis, and if the damage is irreversible, it elicits intracellular cascades of death and inflammation. With the growing appreciation of a functional association between ER stress and neurological diseases and with the improved understanding of the multiple underlying molecular mechanisms, pharmacological and genetic targeting of ER stress are beginning to emerge as therapeutic approaches for neurological diseases.

摘要

神经元死亡和炎症反应是急性中枢神经系统损伤和慢性退行性疾病的两个共同病理特征,两者都与各种神经疾病相关的认知和运动功能障碍密切相关。神经疾病具有高度异质性;然而,它们具有共同的发病机制,即在内质网 (ER) 内错误折叠/未折叠蛋白质的异常积累。幸运的是,细胞具有内在的质量控制机制来维持蛋白质稳态网络,例如伴侣介导的折叠和 ER 相关降解。然而,当这些控制机制失效时,错误折叠/未折叠的蛋白质在 ER 腔中积累并导致 ER 应激。ER 应激几乎与所有神经疾病都有关联。ER 应激启动未折叠蛋白反应以恢复蛋白质稳态,如果损伤是不可逆转的,则会引发细胞内的死亡和炎症级联反应。随着人们对 ER 应激与神经疾病之间功能关联的认识不断加深,以及对多种潜在分子机制的理解不断深入,ER 应激的药理学和遗传学靶向治疗开始成为神经疾病的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/379ed0135d88/fimmu-12-794580-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/b88fb6381139/fimmu-12-794580-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/9faad5dff0b4/fimmu-12-794580-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/379ed0135d88/fimmu-12-794580-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/b88fb6381139/fimmu-12-794580-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/9faad5dff0b4/fimmu-12-794580-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af52/8784382/379ed0135d88/fimmu-12-794580-g003.jpg

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本文引用的文献

[1]
Nitric Oxide Induces a Janus Kinase-1-Dependent Inflammatory Response in Primary Murine Astrocytes.

ASN Neuro. 2021

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PTP1B inhibitor alleviates deleterious microglial activation and neuronal injury after ischemic stroke by modulating the ER stress-autophagy axis via PERK signaling in microglia.

Aging (Albany NY). 2021-1-20

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