Centro de Investigación Príncipe Felipe, Valencia, Spain.
Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas. Universidad Politécnica de Valencia, 46022, Valencia, Spain.
Cell Commun Signal. 2023 Mar 13;21(1):54. doi: 10.1186/s12964-023-01076-6.
Eukaryotic Initiation Factor 5A (eIF-5A), an essential translation factor, is post-translationally activated by the polyamine spermidine. Two human genes encode eIF-5A, being eIF5-A1 constitutively expressed whereas eIF5-A2 is frequently found overexpressed in human tumours. The contribution of both isoforms with regard to cellular proliferation and invasion in non-small cell lung cancer remains to be characterized.
We have evaluated the use of eIF-5A2 gene as prognosis marker in lung adenocarcinoma (LUAD) patients and validated in immunocompromised mice. We have used cell migration and cell proliferation assays in LUAD lines after silencing each eIF-5A isoform to monitor their contribution to both phenotypes. Cytoskeleton alterations were analysed in the same cells by rhodamine-phalloidin staining and fluorescence microscopy. Polysome profiles were used to monitor the effect of eIF-5A2 overexpression on translation. Western blotting was used to study the levels of eIF-5A2 client proteins involved in migration upon TGFB1 stimulation. Finally, we have co-localized eIF-5A2 with puromycin to visualize the subcellular pattern of actively translating ribosomes.
We describe the differential functions of both eIF-5A isoforms, to show that eIF5-A2 properties on cell proliferation and migration are coincident with its features as a poor prognosis marker. Silencing of eIF-5A2 leads to more dramatic consequences of cellular proliferation and migration compared to eIF-5A1. Overexpression of eIF-5A2 leads to enhanced global translation. We also show that TGFβ signalling enhances the expression and activity of eIF-5A2 which promotes the translation of polyproline rich proteins involved in cytoskeleton and motility features as it is the case of Fibronectin, SNAI1, Ezrin and FHOD1. With the use of puromycin labelling we have co-localized active ribosomes with eIF-5A2 not only in cytosol but also in areas of cellular protrusion. We have shown the bulk invasive capacity of cells overexpressing eIF-5A2 in mice.
We propose the existence of a coordinated temporal and positional interaction between TFGB and eIF-5A2 pathways to promote cell migration in NSCLC. We suggest that the co-localization of actively translating ribosomes with hypusinated eIF-5A2 facilitates the translation of key proteins not only in the cytosol but also in areas of cellular protrusion. Video Abstract.
真核起始因子 5A(eIF-5A)是一种必需的翻译因子,可被多胺亚精胺后翻译激活。两个人类基因编码 eIF-5A,其中 eIF5-A1 持续表达,而 eIF5-A2 在人类肿瘤中常过度表达。两种同工型在非小细胞肺癌细胞增殖和侵袭中的贡献尚待描述。
我们评估了 eIF-5A2 基因作为肺腺癌(LUAD)患者预后标志物的用途,并在免疫缺陷小鼠中进行了验证。我们使用细胞迁移和细胞增殖测定法,在沉默每种 eIF-5A 同工型后监测其对两种表型的贡献。通过 rhodamine-phalloidin 染色和荧光显微镜分析同一细胞中的细胞骨架改变。使用多核糖体图谱监测 eIF-5A2 过表达对翻译的影响。Western blot 用于研究 TGFB1 刺激后参与迁移的 eIF-5A2 客户蛋白的水平。最后,我们将 eIF-5A2 与嘌呤霉素共定位,以可视化活跃翻译核糖体的亚细胞模式。
我们描述了两种 eIF-5A 同工型的不同功能,表明 eIF5-A2 在细胞增殖和迁移方面的特性与其作为不良预后标志物的特性一致。与 eIF-5A1 相比,沉默 eIF-5A2 会导致更明显的细胞增殖和迁移后果。eIF-5A2 的过表达导致整体翻译增强。我们还表明,TGFβ 信号增强 eIF-5A2 的表达和活性,促进细胞骨架和运动特征相关的富含脯氨酸的蛋白质的翻译,例如纤连蛋白、SNAI1、Ezrin 和 FHOD1。使用嘌呤霉素标记,我们将活跃的核糖体与 eIF-5A2 共定位,不仅在细胞质中,而且在细胞突起区域。我们在小鼠中显示了过表达 eIF-5A2 的细胞的大量侵袭能力。
我们提出了 TFGB 和 eIF-5A2 途径之间存在协调的时间和位置相互作用,以促进非小细胞肺癌中的细胞迁移。我们认为,活跃翻译核糖体与 hypusinated eIF-5A2 的共定位不仅促进了细胞质中关键蛋白质的翻译,而且促进了细胞突起区域的翻译。视频摘要。