THBS1通过TGF-β/Smad信号调控MDCK细胞增殖和凋亡的机制

IF 5.6 2区 生物学 International Journal of Molecular Sciences Pub Date : 2025-01-04 DOI:10.3390/ijms26010395
Rui Li, Fan Zhang, Lijin Wang, Siya Wang, Manlin Zhou, Jun Wang, Yiyang Zhang, Xiao Tan, Weiji Chen, Kun Yang, Zilin Qiao
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引用次数: 0

摘要

Madin-Darby犬肾(MDCK)细胞因其高病毒产量和低突变抗性而成为流感疫苗生产的关键细胞系。在我们的实验室,我们建立了一个三级细胞库(称为M60),使用从美国进口的标准MDCK细胞系(ATCC)。由于其有争议的致瘤性,我们在本研究的早期通过单克隆筛选驯化了非致瘤性MDCK细胞(命名为CL23)用于流感疫苗的生产,筛选的CL23细胞的特点是增殖能力低,在细胞复苏过程中扩大其产量方面存在一定的局限性。因此,我们的目标是在细胞复苏后提高用于流感疫苗生产的MDCK细胞的增殖效率,以期提高用于疫苗的非致瘤性MDCK细胞的生产,并通过遗传干预提高从MDCK细胞生产流感病毒裂解物疫苗的生产。我们集中研究了在两种MDCK细胞的蛋白质组学数据中显著分化的蛋白thrombosponin-1 (THBS1)。通过将这一发现与相关研究相结合,我们能够确定THBS1对细胞增殖和凋亡水平有显著影响。因此,我们的目的是通过验证两种MDCK细胞之间THBS1表达的差异,并通过干扰MDCK细胞中THBS1的表达,来研究THBS1表达对MDCK细胞凋亡的影响。我们发现,THBS1的敲低显著增加了CL23细胞的增殖和凋亡,但没有引起细胞迁移和侵袭的明显变化,而其过表达显著降低了M60细胞的增殖,增加了细胞迁移、侵袭和凋亡。此外,TGF-β/Smad通路靶基因转化生长因子-β1 (TGF-β1)、抗十足瘫痪同源基因2 (Smad2)、抗十足瘫痪同源基因3 (Smad3)在THBS1敲低后的CL23细胞中显著下调,在过表达后的M60细胞中显著上调,在mRNA和蛋白水平上表达一致。TGF-β激活剂和抑制剂对细胞的处理进一步证明THBS1通过TGF-β/Smad信号通路调节MDCK细胞增殖和凋亡。最后,我们发现THBS1也能调控H1N1流感病毒的复制。这些发现有助于全面了解THBS1对MDCK细胞增殖和凋亡功能的调控机制以及流感病毒复制的影响。
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Mechanism of THBS1 Regulation of MDCK Cell Proliferation and Apoptosis Through TGF-β/Smad Signalling.

Madin-Darby Canine Kidney (MDCK) cells are a key cell line for influenza vaccine production, due to their high viral yield and low mutation resistance. In our laboratory, we established a tertiary cell bank (called M60) using a standard MDCK cell line imported from American Type Culture Collection (ATCC) in the USA. Due to their controversial tumourigenicity, we domesticated non-tumourigenic MDCK cells (named CL23) for influenza vaccine production via monoclonal screening in the early stage of this study, and the screened CL23 cells were characterised based on their low proliferative capacity, which had certain limitations in terms of expanding their production during cell resuscitation. It was thus our objective to enhance the proliferation efficiency of MDCK cells for influenza vaccine production following cell resuscitation, with a view to improving the production of non-tumourigenic MDCK cells for vaccines and enhancing the production of influenza virus lysate vaccines from MDCK cells through genetic intervention. We concentrated on the protein thrombosponin-1 (THBS1), which was markedly differentiated in the proteomics data of the two MDCK cells. By integrating this finding with related studies, we were able to ascertain that THBS1 exerts a significant influence on the level of cell proliferation and apoptosis. Consequently, our objective was to investigate the impact of THBS1 expression on MDCK cell apoptosis by verifying the differences in THBS1 expression between the two MDCK cells and by interfering with THBS1 expression in the MDCK cells. We found that the knockdown of THBS1 significantly increased the proliferation and apoptosis of CL23 cells without causing significant changes in cell migration and invasion, and its overexpression significantly decreased the proliferation of M60 cells and increased cell migration, invasion, and apoptosis. In addition, the TGF-β/Smad pathway target genes transforming growth factor-β1 (TGF-β1), mothers against decapentaplegic homolog 2 (Smad2), and mothers against decapentaplegic homolog 3 (Smad3), were significantly down-regulated in CL23 cells after THBS1 knockdown and up-regulated in M60 cells after overexpression, with consistent expression identified at both the mRNA and protein levels. The treatment of cells with TGF-β activators and inhibitors further demonstrated that THBS1 regulated MDCK cell proliferation and apoptosis through the TGF-β/Smad signalling pathway. Finally, we found that THBS1 also regulated H1N1 influenza virus replication. These findings enable a comprehensive understanding of the regulatory mechanisms of THBS1 regarding MDCK cell proliferation and apoptosis functions and the effects of influenza virus replication.

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期刊介绍: The International Journal of Molecular Sciences (ISSN 1422-0067) provides an advanced forum for chemistry, molecular physics (chemical physics and physical chemistry) and molecular biology. It publishes research articles, reviews, communications and short notes. Our aim is to encourage scientists to publish their theoretical and experimental results in as much detail as possible. Therefore, there is no restriction on the length of the papers or the number of electronics supplementary files. For articles with computational results, the full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material (including animated pictures, videos, interactive Excel sheets, software executables and others).
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