Glioma cell proliferation is enhanced in the presence of tumor-derived cilia vesicles.

Q2 Biochemistry, Genetics and Molecular Biology Cilia Pub Date : 2018-11-06 eCollection Date: 2018-01-01 DOI:10.1186/s13630-018-0060-5
Lan B Hoang-Minh, Marina Dutra-Clarke, Joshua J Breunig, Matthew R Sarkisian
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引用次数: 28

Abstract

Background: The mechanisms by which primary cilia affect glioma pathogenesis are unclear. Depending on the glioma cell line, primary cilia can promote or inhibit tumor development. Here, we used piggyBac-mediated transgenesis to generate patient-derived glioblastoma (GBM) cell lines that stably express Arl13b:GFP in their cilia. This allowed us to visualize and analyze the behavior of cilia and ciliated cells during live GBM cell proliferation.

Results: Time-lapse imaging of Arl13b:GFP+ cilia revealed their dynamic behaviors, including distal tip excision into the extracellular milieu. Recent studies of non-cancerous cells indicate that this process occurs during the G0 phase, prior to cilia resorption and cell cycle re-entry, and requires ciliary recruitment of F-actin and actin regulators. Similarly, we observed ciliary buds associated with Ki67- cells as well as scattered F-actin+ cilia, suggesting that quiescent GBM cells may also utilize an actin network-based mechanism for ciliary tip excision. Notably, we found that the proliferation of ciliated GBM cells was promoted by exposing them to conditioned media obtained from ciliated cell cultures when compared to conditioned media collected from cilia-defective cell cultures (depleted in either KIF3A or IFT88 using CRISPR/Cas9). These results suggest that GBM cilia may release mitogenic vesicles carrying factors that promote tumor cell proliferation. Although Arl13b is implicated in tumor growth, our data suggest that Arl13b released from GBM cilia does not mediate tumor cell proliferation.

Conclusion: Collectively, our results indicate that ciliary vesicles may represent a novel mode of intercellular communication within tumors that contributes to GBM pathogenesis. The mitogenic capacity of GBM ciliary vesicles and the molecular mediators of this phenomenon requires further investigation.

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胶质瘤细胞的增殖在肿瘤源性纤毛囊泡的存在下增强。
背景:原发性纤毛影响胶质瘤发病的机制尚不清楚。根据胶质瘤细胞系的不同,原发性纤毛可以促进或抑制肿瘤的发展。在这里,我们使用piggybac介导的转基因技术生成了患者源性胶质母细胞瘤(GBM)细胞系,这些细胞系在其纤毛中稳定表达Arl13b:GFP。这使我们能够可视化和分析纤毛和纤毛细胞在GBM细胞增殖过程中的行为。结果:Arl13b:GFP+纤毛的延时成像显示了它们的动态行为,包括远端尖端切除到细胞外环境。最近对非癌细胞的研究表明,这一过程发生在G0期,在纤毛吸收和细胞周期重新进入之前,需要纤毛募集f -肌动蛋白和肌动蛋白调节因子。同样,我们观察到与Ki67-细胞相关的纤毛芽以及分散的f -肌动蛋白+纤毛,这表明静止的GBM细胞也可能利用基于肌动蛋白网络的机制进行纤毛尖切除。值得注意的是,我们发现将纤毛GBM细胞暴露于从纤毛细胞培养中获得的条件培养基中,与从纤毛缺陷细胞培养中收集的条件培养基(使用CRISPR/Cas9去除KIF3A或IFT88)相比,可以促进纤毛GBM细胞的增殖。这些结果表明,GBM纤毛可能释放携带促进肿瘤细胞增殖因子的有丝分裂囊泡。虽然Arl13b与肿瘤生长有关,但我们的数据表明,从GBM纤毛释放的Arl13b不介导肿瘤细胞增殖。结论:总的来说,我们的研究结果表明,纤毛囊可能代表了一种新的肿瘤细胞间通讯模式,有助于GBM的发病。GBM纤毛囊的有丝分裂能力和这一现象的分子介质有待进一步研究。
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Cilia
Cilia Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
6.40
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0.00%
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