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MARCKS与NKAP协同作用,在与吸烟相关的肺癌中激活核因子-κB信号通路。

MARCKS cooperates with NKAP to activate NF-kB signaling in smoke-related lung cancer.

作者信息

Liu Jun, Chen Szu-Jung, Hsu Ssu-Wei, Zhang Jun, Li Ji-Min, Yang David C, Gu Shenwen, Pinkerton Kent E, Chen Ching-Hsien

机构信息

Department of Internal Medicine, Division of Pulmonary and Critical Care Medicine and Center for Comparative Respiratory Biology and Medicine, University of California Davis, Davis, California, USA.

Division of Nephrology, Department of Internal Medicine, University of California Davis, Davis, California, USA.

出版信息

Theranostics. 2021 Feb 19;11(9):4122-4136. doi: 10.7150/thno.53558. eCollection 2021.

Abstract

Cigarette smoking is a major risk factor for lung cancer development and progression; however, the mechanism of how cigarette smoke activates signaling pathways in promoting cancer malignancy remains to be established. Herein, we aimed to determine the contribution of a signaling protein, myristoylated alanine-rich C kinase substrate (MARCKS), in smoke-mediated lung cancer. We firstly examined the levels of phosphorylated MARCKS (phospho-MARCKS) in smoke-exposed human lung cancer cells and specimens as well as non-human primate airway epithelium. Next, the MARCKS-interactome and its gene networks were identified. We also used genetic and pharmacological approaches to verify the functionality and molecular mechanism of smoke-induced phospho-MARCKS. We observed that MARCKS becomes activated in airway epithelium and lung cancer cells in response to cigarette smoke. Functional proteomics revealed MARCKS protein directly binds to NF-κB-activating protein (NKAP). Following MARCKS phosphorylation at ser159 and ser163, the MARCKS-NKAP interaction was inhibited, leading to the activation of NF-κB signaling. In a screen of two cohorts of lung cancer patients, we confirmed that phospho-MARCKS is positively correlated with phospho-NF-κB (phospho-p65), and poor survival. Surprisingly, smoke-induced phospho-MARCKS upregulated the expression of pro-inflammatory cytokines, epithelial-mesenchymal transition, and stem-like properties. Conversely, targeting of MARCKS phosphorylation with MPS peptide, a specific MARCKS phosphorylation inhibitor, suppressed smoke-mediated NF-κB signaling activity, pro-inflammatory cytokines expression, aggressiveness and stemness of lung cancer cells. Our results suggest that phospho-MARCKS is a novel NF-kB activator in smoke-mediated lung cancer progression and provide a promising molecular model for developing new anticancer strategies.

摘要

吸烟是肺癌发生和发展的主要危险因素;然而,香烟烟雾如何激活信号通路以促进癌症恶性发展的机制仍有待确定。在此,我们旨在确定一种信号蛋白,肉豆蔻酰化富含丙氨酸的C激酶底物(MARCKS)在烟雾介导的肺癌中的作用。我们首先检测了暴露于烟雾的人肺癌细胞和标本以及非人类灵长类动物气道上皮中磷酸化MARCKS(磷酸化-MARCKS)的水平。接下来,鉴定了MARCKS相互作用组及其基因网络。我们还使用基因和药理学方法来验证烟雾诱导的磷酸化-MARCKS的功能和分子机制。我们观察到,响应香烟烟雾,MARCKS在气道上皮和肺癌细胞中被激活。功能蛋白质组学显示,MARCKS蛋白直接与NF-κB激活蛋白(NKAP)结合。在ser159和ser163处MARCKS磷酸化后,MARCKS-NKAP相互作用受到抑制,导致NF-κB信号通路激活。在对两组肺癌患者的筛查中,我们证实磷酸化-MARCKS与磷酸化-NF-κB(磷酸化-p65)呈正相关,且与不良生存率相关。令人惊讶的是,烟雾诱导的磷酸化-MARCKS上调了促炎细胞因子的表达、上皮-间质转化和干细胞样特性。相反,用MPS肽(一种特异性MARCKS磷酸化抑制剂)靶向MARCKS磷酸化,可抑制烟雾介导的NF-κB信号活性、促炎细胞因子表达、肺癌细胞的侵袭性和干性。我们的结果表明,磷酸化-MARCKS是烟雾介导的肺癌进展中的一种新型NF-κB激活剂,并为开发新的抗癌策略提供了一个有前景的分子模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66b8/7977464/7605bcbe1763/thnov11p4122g001.jpg

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