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EWS::FLI1对编码Kv1.2的KCNA2的转录调控:参与控制YAP/河马信号通路和细胞增殖。

Transcriptional regulation of KCNA2 coding Kv1.2 by EWS::FLI1: involvement in controlling the YAP/Hippo signalling pathway and cell proliferation.

作者信息

Dupuy Maryne, Postec Anaïs, Mullard Mathilde, Chantôme Aurélie, Hulin Philippe, Brion Régis, Gueguinou Maxime, Regnier Laura, Potier-Cartereau Marie, Brounais-Le Royer Bénédicte, Baud'huin Marc, Georges Steven, Lamoureux François, Ory Benjamin, Rédini Françoise, Vandier Christophe, Verrecchia Franck

机构信息

Inserm UMR 1307, CNRS UMR 6075, Nantes Université, Université d'Angers, CRCI2NA, 44000, Nantes, France.

N2COx UMR 1069, University of Tours, INSERM, Tours, France.

出版信息

Cell Commun Signal. 2024 Dec 18;22(1):602. doi: 10.1186/s12964-024-01981-4.

Abstract

BACKGROUND

Ewing sarcoma (ES), the second main pediatric bone sarcoma, is characterised by a chromosomal translocation leading to the formation of fusion proteins like EWS::FLI1. While several studies have shown that potassium channels drive the development of many tumours, limited data exist on ES. This work therefore aimed to study the transcriptional regulation of KCNA2 and define the involvement of the Kv1.2 channel encoded by KCNA2 in a key function of ES development, cell proliferation.

METHODS

KCNA2 expression in patients and cell lines was measured via bioinformatic analysis (RNA-Seq). The presence of a functional Kv1.2 channel was shown using patch-clamp experiments. Molecular biology approaches were used after EWS::FLI1 silencing to study the transcriptional regulation of KCNA2. Proliferation and cell count assessment were performed using cell biology approaches. KCNA2 silencing (siRNA) and RNA-Seq were performed to identify the signalling pathways involved in the ability of KCNA2 to drive cell proliferation. The regulation of the Hippo signalling pathway by KCNA2 was studied by measuring Hippo/YAP target genes expression, while YAP protein expression was studied with Western-Blot and immunofluorescence approaches.

RESULTS

This research identified KCNA2 (encoding for a functional Kv1.2 channel) as highly expressed in ES biopsies and cell lines. The results indicated a correlation between KCNA2 expression and patient survival. The data also demonstrated that KCNA2/Kv1.2 is a direct target of EWS::FLI1, and identified the molecular mechanisms by which this chimeric protein regulates KCNA2 gene expression at the transcriptional level. Furthermore, the results indicated that KCNA2 expression and Kv1.2 activity regulate ES cell proliferation and that KCNA2 expression drives the Hippo/YAP signalling pathway. Using the specific Kv1.2 channel inhibitor (κ-Conotoxin), the results suggested that two complementary mechanisms are involved in this process, both dependently and independently of Kv1.2 functional channels at the plasma membrane.

CONCLUSION

This study is the first to describe the involvement of KCNA2 expression and Kv1.2 channel in cancer development. The study also unveiled the involvement of KCNA2 in the regulation of the Hippo/YAP signalling cascade. Thus, this work suggests that KCNA2/Kv1.2 could be a potential therapeutic target in ES.

摘要

背景

尤因肉瘤(ES)是第二大主要的儿童骨肉瘤,其特征是染色体易位导致形成如EWS::FLI1等融合蛋白。虽然多项研究表明钾通道驱动许多肿瘤的发展,但关于ES的相关数据有限。因此,本研究旨在探讨KCNA2的转录调控,并确定KCNA2编码的Kv1.2通道在ES发展的关键功能——细胞增殖中的作用。

方法

通过生物信息分析(RNA测序)检测患者和细胞系中KCNA2的表达。使用膜片钳实验证明功能性Kv1.2通道的存在。在EWS::FLI1沉默后,采用分子生物学方法研究KCNA2的转录调控。使用细胞生物学方法进行增殖和细胞计数评估。进行KCNA2沉默(小干扰RNA)和RNA测序以确定参与KCNA2驱动细胞增殖能力的信号通路。通过测量Hippo/YAP靶基因表达研究KCNA2对Hippo信号通路的调控,同时用蛋白质免疫印迹和免疫荧光方法研究YAP蛋白表达。

结果

本研究确定KCNA2(编码功能性Kv1.2通道)在ES活检组织和细胞系中高表达。结果表明KCNA2表达与患者生存率之间存在相关性。数据还表明KCNA2/Kv1.2是EWS::FLI1的直接靶点,并确定了这种嵌合蛋白在转录水平上调节KCNA2基因表达的分子机制。此外,结果表明KCNA2表达和Kv1.2活性调节ES细胞增殖,并且KCNA2表达驱动Hippo/YAP信号通路。使用特异性Kv1.2通道抑制剂(κ-芋螺毒素),结果表明该过程涉及两种互补机制,这两种机制均依赖和独立于质膜上的Kv1.2功能性通道。

结论

本研究首次描述了KCNA2表达和Kv1.2通道在癌症发展中的作用。该研究还揭示了KCNA2在Hippo/YAP信号级联调控中的作用。因此,这项工作表明KCNA2/Kv1.2可能是ES的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd6c/11657695/ccfcd1ef0c2f/12964_2024_1981_Fig1_HTML.jpg

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