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首页> 外文期刊>Cancer Cell International >The availability of the embryonic TGF-β protein Nodal is dynamically regulated during glioblastoma multiforme tumorigenesis
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The availability of the embryonic TGF-β protein Nodal is dynamically regulated during glioblastoma multiforme tumorigenesis

机译:胶质母细胞瘤多形肿瘤发生过程中胚胎TGF-β蛋白Nodal的可用性受到动态调节。

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Glioblastoma (GBM) is the most common primary brain tumor presenting self-renewing cancer stem cells. The role of these cells on the development of the tumors has been proposed to recapitulate programs from embryogenesis. Recently, the embryonic transforming growth factor-β (TGF-β) protein Nodal has been shown to be reactivated upon tumor development; however, its availability in GBM cells has not been addressed so far. In this study, we investigated by an original approach the mechanisms that dynamically control both intra and extracellular Nodal availability during GBM tumorigenesis. We characterized the dynamics of Nodal availability in both stem and more differentiated GBM cells through morphological analysis, immunofluorescence of Nodal protein and of early (EEA1 and Rab5) and late (Rab7 and Rab11) endocytic markers and Western Blot. Tukey’s test was used to analyze the prevalent correlation of Nodal with different endocytic markers inside specific differentiation states, and Sidak’s multiple comparisons test was used to compare the prevalence of Nodal/endocytic markers co-localization between two differentiation states of GBM cells. Paired t test was used to analyze the abundance of Nodal protein, in extra and intracellular media. The cytoplasmic distribution of Nodal was dynamically regulated and strongly correlated with the differentiation status of GBM cells. While Nodal-positive vesicle-like particles were symmetrically distributed in GBM stem cells (GBMsc), they presented asymmetric perinuclear localization in more differentiated GBM cells (mdGBM). Strikingly, when subjected to dedifferentiation, the distribution of Nodal in mdGBM shifted to a symmetric pattern. Moreover, the availability of both intracellular and secreted Nodal were downregulated upon GBMsc differentiation, with cells becoming elongated, negative for Nodal and positive for Nestin. Interestingly, the co-localization of Nodal with endosomal vesicles also depended on the differentiation status of the cells, with Nodal seen more packed in EEA1/Rab5 + vesicles in GBMsc and more in Rab7/11 + vesicles in mdGBM. Our results show for the first time that Nodal availability relates to GBM cell differentiation status and that it is dynamically regulated by an endocytic pathway during GBM tumorigenesis, shedding new light on molecular pathways that might emerge as putative targets for Nodal signaling in GBM therapy.
机译:胶质母细胞瘤(GBM)是表现出自我更新的癌症干细胞的最常见的原发性脑肿瘤。已经提出这些细胞在肿瘤发展中的作用以概括来自胚胎发生的程序。最近,已经证明,胚胎转化生长因子-β(TGF-β)蛋白Nodal在肿瘤发展后会被重新激活。但是,到目前为止,GBM单元中的可用性尚未得到解决。在这项研究中,我们通过原始方法研究了在GBM肿瘤发生过程中动态控制细胞内和细胞外淋巴结可利用性的机制。我们通过形态分析,Nodal蛋白以及早期(EEA1和Rab5)和晚期(Rab7和Rab11)内吞标记物和Western Blot的形态分析,免疫荧光来表征干细胞和分化程度更高的GBM细胞中Nodal可用性的动态。 Tukey检验用于分析Nodal与特定分化状态内不同内吞标记物的普遍相关性,Sidak多重比较检验用于比较GBM细胞两个分化状态之间Nodal /内吞标记物共定位的发生率。配对t检验用于分析细胞外和细胞内节点蛋白的丰度。 Nodal的胞质分布是动态调节的,并且与GBM细胞的分化状态密切相关。虽然Nodal阳性小泡样颗粒在GBM干细胞(GBMsc)中对称分布,但它们在分化程度更高的GBM细胞(mdGBM)中呈现不对称的核周定位。令人惊讶的是,当进行去分化时,mdGBM中Nodal的分布转变为对称模式。此外,GBMsc分化后,细胞内和分泌的Nodal的可用性均被下调,细胞变得拉长,Nodal阴性和Nestin阳性。有趣的是,Nodal与内体囊泡的共定位还取决于细胞的分化状态,其中Nodal在GBMsc中的EEA1 / Rab5 +囊泡中堆积较多,在mdGBM中的Rab7 / 11 +囊泡中聚集较多。我们的结果首次显示,Nodal可用性与GBM细胞分化状态有关,并且在GBM肿瘤发生过程中受到内吞途径的动态调节,为可能成为GBM治疗中Nodal信号推定靶点的分子途径提供了新的思路。

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