Institute of Applied Biosciences, Centre for Research and Technology Hellas, Thessaloniki, Greece.
Department of Computer Science, School of Sciences and Engineering, University of Nicosia, Nicosia, Cyprus.
Blood Adv. 2021 Jul 13;5(13):2788-2792. doi: 10.1182/bloodadvances.2020001717.
Recent studies of chronic lymphocytic leukemia (CLL) have reported recurrent mutations in the RPS15 gene, which encodes the ribosomal protein S15 (RPS15), a component of the 40S ribosomal subunit. Despite some evidence about the role of mutant RPS15 (mostly obtained from the analysis of cell lines), the precise impact of RPS15 mutations on the translational program in primary CLL cells remains largely unexplored. Here, using RNA sequencing and ribosome profiling, a technique that involves measuring translational efficiency, we sought to obtain global insight into changes in translation induced by RPS15 mutations in CLL cells. To this end, we evaluated primary CLL cells from patients with wild-type or mutant RPS15 as well as MEC1 CLL cells transfected with mutant or wild-type RPS15. Our data indicate that RPS15 mutations rewire the translation program of primary CLL cells by reducing their translational efficiency, an effect not seen in MEC1 cells. In detail, RPS15 mutant primary CLL cells displayed altered translation efficiency of other ribosomal proteins and regulatory elements that affect key cell processes, such as the translational machinery and immune signaling, as well as genes known to be implicated in CLL, hence highlighting a relevant role for RPS15 in the natural history of CLL.
最近对慢性淋巴细胞白血病(CLL)的研究报告了 RPS15 基因的反复突变,该基因编码核糖体蛋白 S15(RPS15),是 40S 核糖体亚基的组成部分。尽管有一些关于突变 RPS15 作用的证据(主要是通过对细胞系的分析获得的),但 RPS15 突变对原发性 CLL 细胞中翻译程序的确切影响在很大程度上仍未得到探索。在这里,我们使用 RNA 测序和核糖体分析(一种涉及测量翻译效率的技术),试图从全局角度了解 RPS15 突变在 CLL 细胞中诱导的翻译变化。为此,我们评估了来自 RPS15 野生型或突变型患者的原发性 CLL 细胞,以及转染了突变型或野生型 RPS15 的 MEC1 CLL 细胞。我们的数据表明,RPS15 突变通过降低其翻译效率来重新布线原发性 CLL 细胞的翻译程序,而 MEC1 细胞中未观察到这种效应。具体而言,RPS15 突变的原发性 CLL 细胞显示出其他核糖体蛋白和调节元件的翻译效率发生改变,这些改变会影响关键的细胞过程,如翻译机制和免疫信号,以及已知与 CLL 有关的基因,从而突出了 RPS15 在 CLL 自然史中的重要作用。