MICAL2促进胰腺癌生长和转移

IF 12.5 1区 医学 Q1 ONCOLOGY
Bharti Garg, Sohini Khan, Asimina S Courelli, Ponmathi Panneerpandian, Deepa Sheik Pran Babu, Evangeline S Mose, Kevin Christian Montecillo Gulay, Shweta Sharma, Divya Sood, Alexander T Wenzel, Alexei Martsinkovskiy, Nirakar Rajbhandari, Jay Patel, Dawn Jaquish, Edgar Esparza, Katelin Jaque, Neetu Aggarwal, Guillem Lambies, Anthony D'Ippolito, Kathryn Austgen, Brian Johnston, David A Orlando, Gun Ho Jang, Steven Gallinger, Elliot Goodfellow, Pnina Brodt, Cosimo Commisso, Pablo Tamayo, Jill P Mesirov, Hervé Tiriac, Andrew M Lowy
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引用次数: 0

摘要

胰腺导管腺癌(PDAC)仍然是最致命的实体癌症之一;因此,确定更有效的治疗方法是一个主要的未满足的需求。在这项研究中,我们表征了人类PDAC的超级增强子(SE)景观,以确定可能靶向的疾病驱动因素。该分析显示MICAL2是人类PDAC的超级增强子相关基因,其编码黄素单加氧酶MICAL2,诱导肌动蛋白解聚,并通过调节血清反应因子共激活因子心肌素相关转录因子(MRTF-A和MRTF-B)的可用性间接促进SRF转录。MICAL2在PDAC中过表达,MICAL2高表达与患者预后差相关。转录分析显示MICAL2上调KRAS和EMT信号通路,参与肿瘤生长和转移。在人类和小鼠PDAC细胞的功能丧失和获得实验中,MICAL2促进了ERK1/2和AKT的激活。与其在肌动蛋白解聚和KRAS信号传导中的作用一致,MICAL2的缺失也抑制了巨量红细胞增多症。MICAL2、MRTF-A和MRTF-B在体外影响PDAC细胞的增殖和迁移,促进细胞周期的进展。重要的是,MICAL2支持体内肿瘤的生长和转移。有趣的是,MRTF-B,而不是MRTF-A,在体内复制mical2驱动的表型。本研究强调了MICAL2影响PDAC生物学的多种途径,并为未来研究MICAL2靶向治疗干预的潜力提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MICAL2 Promotes Pancreatic Cancer Growth and Metastasis.

Pancreatic ductal adenocarcinoma (PDAC) remains one of the deadliest solid cancers; thus, identifying more effective therapies is a major unmet need. In this study, we characterized the super enhancer (SE) landscape of human PDAC to identify drivers of the disease that might be targetable. This analysis revealed MICAL2 as a super enhancer-associated gene in human PDAC, which encodes the flavin monooxygenase MICAL2 that induces actin depolymerization and indirectly promotes SRF transcription by modulating the availability of serum response factor coactivators myocardin-related transcription factors (MRTF-A and MRTF-B). MICAL2 was overexpressed in PDAC, and high MICAL2 expression correlated with poor patient prognosis. Transcriptional analysis revealed that MICAL2 upregulates KRAS and EMT signaling pathways, contributing to tumor growth and metastasis. In loss and gain of function experiments in human and mouse PDAC cells, MICAL2 promoted both ERK1/2 and AKT activation. Consistent with its role in actin depolymerization and KRAS signaling, loss of MICAL2 also inhibited macropinocytosis. MICAL2, MRTF-A, and MRTF-B influenced PDAC cell proliferation and migration and promoted cell cycle progression in vitro. Importantly, MICAL2 supported in vivo tumor growth and metastasis. Interestingly, MRTF-B, but not MRTF-A, phenocopied MICAL2-driven phenotypes in vivo. This study highlights the multiple ways in which MICAL2 impacts PDAC biology and provides a foundation for future investigations into the potential of targeting MICAL2 for therapeutic intervention.

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来源期刊
Cancer research
Cancer research 医学-肿瘤学
CiteScore
16.10
自引率
0.90%
发文量
7677
审稿时长
2.5 months
期刊介绍: Cancer Research, published by the American Association for Cancer Research (AACR), is a journal that focuses on impactful original studies, reviews, and opinion pieces relevant to the broad cancer research community. Manuscripts that present conceptual or technological advances leading to insights into cancer biology are particularly sought after. The journal also places emphasis on convergence science, which involves bridging multiple distinct areas of cancer research. With primary subsections including Cancer Biology, Cancer Immunology, Cancer Metabolism and Molecular Mechanisms, Translational Cancer Biology, Cancer Landscapes, and Convergence Science, Cancer Research has a comprehensive scope. It is published twice a month and has one volume per year, with a print ISSN of 0008-5472 and an online ISSN of 1538-7445. Cancer Research is abstracted and/or indexed in various databases and platforms, including BIOSIS Previews (R) Database, MEDLINE, Current Contents/Life Sciences, Current Contents/Clinical Medicine, Science Citation Index, Scopus, and Web of Science.
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