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揭示神经病变靶酯酶 NTE/SWS 与溶酶体贮积病、炎症、异常脂肪酸代谢和血脑屏障渗漏之间的联系。

Unraveling the link between neuropathy target esterase NTE/SWS, lysosomal storage diseases, inflammation, abnormal fatty acid metabolism, and leaky brain barrier.

机构信息

Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany.

Institute of Functional and Applied Anatomy, Research Core Unit Electron Microscopy, Hannover Medical School, Hannover, Germany.

出版信息

Elife. 2024 Apr 25;13:e98020. doi: 10.7554/eLife.98020.

Abstract

Mutations in Swiss cheese (SWS) gene or its vertebrate orthologue neuropathy target esterase (NTE) lead to progressive neuronal degeneration in flies and humans. Despite its enzymatic function as a phospholipase is well established, the molecular mechanism responsible for maintaining nervous system integrity remains unclear. In this study, we found that NTE/SWS is present in surface glia that forms the blood-brain barrier (BBB) and that NTE/SWS is important to maintain its structure and permeability. Importantly, BBB glia-specific expression of or human NTE in the mutant background fully rescues surface glial organization and partially restores BBB integrity, suggesting a conserved function of NTE/SWS. Interestingly, mutant glia showed abnormal organization of plasma membrane domains and tight junction rafts accompanied by the accumulation of lipid droplets, lysosomes, and multilamellar bodies. Since the observed cellular phenotypes closely resemble the characteristics described in a group of metabolic disorders known as lysosomal storage diseases (LSDs), our data established a novel connection between NTE/SWS and these conditions. We found that mutants with defective BBB exhibit elevated levels of fatty acids, which are precursors of eicosanoids and are involved in the inflammatory response. Also, as a consequence of a permeable BBB, several innate immunity factors are upregulated in an age-dependent manner, while BBB glia-specific expression of NTE/SWS normalizes inflammatory response. Treatment with anti-inflammatory agents prevents the abnormal architecture of the BBB, suggesting that inflammation contributes to the maintenance of a healthy brain barrier. Considering the link between a malfunctioning BBB and various neurodegenerative diseases, gaining a deeper understanding of the molecular mechanisms causing inflammation due to a defective BBB could help to promote the use of anti-inflammatory therapies for age-related neurodegeneration.

摘要

瑞士干酪(SWS)基因突变或其脊椎动物同源物神经病变靶酯酶(NTE)导致果蝇和人类的进行性神经元变性。尽管其作为磷脂酶的酶学功能已得到充分证实,但负责维持神经系统完整性的分子机制仍不清楚。在这项研究中,我们发现 NTE/SWS 存在于形成血脑屏障(BBB)的表面神经胶质中,并且 NTE/SWS 对于维持其结构和通透性很重要。重要的是,在 突变背景下,BBB 神经胶质特异性表达 或人 NTE 可完全挽救表面神经胶质的组织,部分恢复 BBB 的完整性,表明 NTE/SWS 的功能保守。有趣的是, 突变神经胶质显示出质膜域和紧密连接筏的异常组织,伴随着脂滴、溶酶体和多层体的积累。由于观察到的细胞表型与一组称为溶酶体贮积病(LSD)的代谢紊乱的特征非常相似,因此我们的数据在 NTE/SWS 与这些疾病之间建立了新的联系。我们发现,BBB 有缺陷的 突变体表现出脂肪酸水平升高,而脂肪酸是类二十烷酸的前体,参与炎症反应。此外,由于 BBB 通透性增加,几种固有免疫因子呈年龄依赖性上调,而 BBB 神经胶质特异性表达 NTE/SWS 可使炎症反应正常化。用抗炎剂治疗可防止 BBB 的异常结构,表明炎症有助于维持健康的脑屏障。鉴于有缺陷的 BBB 与各种神经退行性疾病之间的联系,深入了解因 BBB 功能障碍引起炎症的分子机制可能有助于促进抗炎治疗在与年龄相关的神经退行性疾病中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22ab/11090517/79d086bfc65e/elife-98020-fig1.jpg

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