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基于 BioID 的 Kv1.3 钾通道完整细胞互作组鉴定出 Kv1.3-STAT3-p53 细胞信号通路。

BioID-based intact cell interactome of the Kv1.3 potassium channel identifies a Kv1.3-STAT3-p53 cellular signaling pathway.

机构信息

Department of Biology, University of Padova, Padova, Italy.

Department of Biomedical Sciences, University of Padova, Padova, Italy.

出版信息

Sci Adv. 2024 Sep 6;10(36):eadn9361. doi: 10.1126/sciadv.adn9361. Epub 2024 Sep 4.

Abstract

Kv1.3 is a multifunctional potassium channel implicated in multiple pathologies, including cancer. However, how it is involved in disease progression is not fully clear. We interrogated the interactome of Kv1.3 in intact cells using BioID proximity labeling, revealing that Kv1.3 interacts with STAT3- and p53-linked pathways. To prove the relevance of Kv1.3 and of its interactome in the context of tumorigenesis, we generated stable melanoma clones, in which ablation of Kv1.3 remodeled gene expression, reduced proliferation and colony formation, yielded fourfold smaller tumors, and decreased metastasis in vivo in comparison to WT cells. Kv1.3 deletion or pharmacological inhibition of mitochondrial Kv1.3 increased mitochondrial Reactive Oxygen Species release, decreased STAT3 phosphorylation, stabilized the p53 tumor suppressor, promoted metabolic switch, and altered the expression of several BioID-identified Kv1.3-networking proteins in tumor tissues. Collectively, our work revealed the tumor-promoting Kv1.3-interactome landscape, thus opening the way to target Kv1.3 not only as an ion-conducting entity but also as a signaling hub.

摘要

Kv1.3 是一种多功能钾通道,与多种病理学有关,包括癌症。然而,其在疾病进展中的作用尚不完全清楚。我们使用 BioID 邻近标记技术研究了 Kv1.3 在完整细胞中的相互作用组,揭示了 Kv1.3 与 STAT3 和 p53 相关途径相互作用。为了证明 Kv1.3 及其相互作用组在肿瘤发生中的相关性,我们生成了稳定的黑色素瘤克隆,其中 Kv1.3 的缺失重塑了基因表达,降低了增殖和集落形成能力,导致肿瘤体积缩小四倍,并降低了体内转移。Kv1.3 的缺失或线粒体 Kv1.3 的药理学抑制增加了线粒体活性氧的释放,降低了 STAT3 的磷酸化,稳定了 p53 肿瘤抑制因子,促进了代谢转换,并改变了肿瘤组织中几个经 BioID 鉴定的 Kv1.3 网络蛋白的表达。总的来说,我们的工作揭示了促进肿瘤的 Kv1.3 相互作用组图谱,从而为不仅将 Kv1.3 作为离子传导实体,而且作为信号枢纽来靶向 Kv1.3 开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a41/11373599/fad38643fb74/sciadv.adn9361-f1.jpg

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