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胶质纤维酸性蛋白作为胶质母细胞瘤细胞间隧道纳米管的结构成分,可能在线粒体的细胞间转移中发挥作用。

GFAP serves as a structural element of tunneling nanotubes between glioblastoma cells and could play a role in the intercellular transfer of mitochondria.

作者信息

Simone L, Capobianco D L, Di Palma F, Binda E, Legnani F G, Vescovi A L, Svelto M, Pisani F

机构信息

Cancer Stem Cells Unit, Fondazione IRCCS Casa Sollievo della Sofferenza, San Giovanni Rotondo, Italy.

Department of Biosciences, Biotechnologies and Environment, University of Bari "Aldo Moro", Bari, Italy.

出版信息

Front Cell Dev Biol. 2023 Oct 11;11:1221671. doi: 10.3389/fcell.2023.1221671. eCollection 2023.

Abstract

Tunneling nanotubes (TNTs) are long F-actin-positive plasma membrane bridges connecting distant cells, allowing the intercellular transfer of cellular cargoes, and are found to be involved in glioblastoma (GBM) intercellular crosstalk. Glial fibrillary acid protein (GFAP) is a key intermediate filament protein of glial cells involved in cytoskeleton remodeling and linked to GBM progression. Whether GFAP plays a role in TNT structure and function in GBM is unknown. Here, analyzing F-actin and GFAP localization by laser-scan confocal microscopy followed by 3D reconstruction (3D-LSCM) and mitochondria dynamic by live-cell time-lapse fluorescence microscopy, we show the presence of GFAP in TNTs containing functional mitochondria connecting distant human GBM cells. Taking advantage of super-resolution 3D-LSCM, we show the presence of GFAP-positive TNT-like structures in resected human GBM as well. Using HO or the pro-apoptotic toxin staurosporine (STS), we show that GFAP-positive TNTs strongly increase during oxidative stress and apoptosis in the GBM cell line. Culturing GBM cells with STS-treated GBM cells, we show that STS triggers the formation of GFAP-positive TNTs between them. Finally, we provide evidence that mitochondria co-localize with GFAP at the tip of close-ended GFAP-positive TNTs and inside receiving STS-GBM cells. Summarizing, here we found that GFAP is a structural component of TNTs generated by GBM cells, that GFAP-positive TNTs are upregulated in response to oxidative stress and pro-apoptotic stress, and that GFAP interacts with mitochondria during the intercellular transfer. These findings contribute to elucidate the molecular structure of TNTs generated by GBM cells, highlighting the structural role of GFAP in TNTs and suggesting a functional role of this intermediate filament component in the intercellular mitochondria transfer between GBM cells in response to pro-apoptotic stimuli.

摘要

隧道纳米管(TNTs)是连接远距离细胞的长丝状肌动蛋白阳性质膜桥,允许细胞货物进行细胞间转移,并且已发现其参与胶质母细胞瘤(GBM)的细胞间串扰。胶质纤维酸性蛋白(GFAP)是神经胶质细胞的关键中间丝蛋白,参与细胞骨架重塑并与GBM进展相关。GFAP是否在GBM的TNT结构和功能中发挥作用尚不清楚。在这里,通过激光扫描共聚焦显微镜进行3D重建(3D-LSCM)分析丝状肌动蛋白和GFAP的定位,并通过活细胞延时荧光显微镜观察线粒体动力学,我们发现在连接远距离人类GBM细胞的含有功能性线粒体的TNTs中存在GFAP。利用超分辨率3D-LSCM,我们还发现在切除的人类GBM中存在GFAP阳性的TNT样结构。使用羟基脲(HO)或促凋亡毒素星形孢菌素(STS),我们发现GFAP阳性TNTs在GBM细胞系的氧化应激和凋亡过程中强烈增加。用STS处理的GBM细胞培养GBM细胞,我们发现STS触发了它们之间GFAP阳性TNTs的形成。最后,我们提供证据表明线粒体在封闭的GFAP阳性TNTs尖端以及接受STS处理的GBM细胞内部与GFAP共定位。总之,我们发现GFAP是GBM细胞产生的TNTs的结构成分,GFAP阳性TNTs在氧化应激和促凋亡应激反应中上调,并且在细胞间转移过程中GFAP与线粒体相互作用。这些发现有助于阐明GBM细胞产生的TNTs的分子结构,突出了GFAP在TNTs中的结构作用,并表明这种中间丝成分在GBM细胞响应促凋亡刺激的细胞间线粒体转移中具有功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a86/10598779/be6486c260b1/FCELL_fcell-2023-1221671_wc_abs.jpg

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