Low-Dose Paclitaxel Reduces S100A4 Nuclear Import to Inhibit Invasion and Hematogenous Metastasis of Cholangiocarcinoma.

IF 2.9 Q2 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH ACS Chemical Health & Safety Pub Date : 2016-08-15 Epub Date: 2016-06-21 DOI:10.1158/0008-5472.CAN-16-0188
Massimiliano Cadamuro, Gaia Spagnuolo, Luisa Sambado, Stefano Indraccolo, Giorgia Nardo, Antonio Rosato, Simone Brivio, Chiara Caslini, Tommaso Stecca, Marco Massani, Nicolò Bassi, Eugenio Novelli, Carlo Spirli, Luca Fabris, Mario Strazzabosco
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Abstract

Nuclear expression of the calcium-binding protein S100A4 is a biomarker of increased invasiveness in cholangiocarcinoma, a primary liver cancer with scarce treatment opportunities and dismal prognosis. In this study, we provide evidence that targeting S100A4 nuclear import by low-dose paclitaxel, a microtubule-stabilizing agent, inhibits cholangiocarcinoma invasiveness and metastatic spread. Administration of low-dose paclitaxel to established (EGI-1) and primary (CCA-TV3) cholangiocarcinoma cell lines expressing nuclear S100A4 triggered a marked reduction in nuclear expression of S100A4 without modifying its cytoplasmic levels, an effect associated with a significant decrease in cell migration and invasiveness. While low-dose paclitaxel did not affect cellular proliferation, apoptosis, or cytoskeletal integrity, it significantly reduced SUMOylation of S100A4, a critical posttranslational modification that directs its trafficking to the nucleus. This effect of low-dose paclitaxel was reproduced by ginkolic acid, a specific SUMOylation inhibitor. Downregulation of nuclear S100A4 by low-dose paclitaxel was associated with a strong reduction in RhoA and Cdc42 GTPase activity, MT1-MMP expression, and MMP-9 secretion. In an SCID mouse xenograft model, low-dose metronomic paclitaxel treatment decreased lung dissemination of EGI-1 cells without significantly affecting their local tumor growth. In the tumor mass, nuclear S100A4 expression by cholangiocarcinoma cells was significantly reduced, whereas rates of proliferation and apoptosis were unchanged. Overall, our findings highlight nuclear S100A4 as a candidate therapeutic target in cholangiocarcinoma and establish a mechanistic rationale for the use of low-dose paclitaxel in blocking metastatic progression of cholangiocarcinoma. Cancer Res; 76(16); 4775-84. ©2016 AACR.

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低剂量紫杉醇可减少 S100A4 核输入,从而抑制胆管癌的侵袭和血源性转移
钙结合蛋白 S100A4 的核表达是胆管癌侵袭性增加的生物标志物,胆管癌是一种治疗机会少、预后差的原发性肝癌。在这项研究中,我们提供了证据,证明通过低剂量紫杉醇(一种微管稳定剂)靶向 S100A4 核导入可抑制胆管癌的侵袭性和转移扩散。对已建立的(EGI-1)和原发性(CCA-TV3)表达核S100A4的胆管癌细胞系施用低剂量紫杉醇,可显著降低S100A4的核表达,而不改变其胞质水平,这种效应与细胞迁移和侵袭性的显著降低有关。虽然低剂量紫杉醇不会影响细胞增殖、凋亡或细胞骨架的完整性,但它会显著降低S100A4的SUMO化,而SUMO化是一种关键的翻译后修饰,可引导S100A4向细胞核的迁移。低剂量紫杉醇的这种作用在银杏酸(一种特异性 SUMOylation 抑制剂)的作用下得以重现。低剂量紫杉醇对核S100A4的下调与RhoA和Cdc42 GTP酶活性、MT1-MMP表达和MMP-9分泌的显著降低有关。在SCID小鼠异种移植模型中,低剂量紫杉醇治疗可减少EGI-1细胞在肺部的扩散,但不会显著影响其局部肿瘤的生长。在肿瘤肿块中,胆管癌细胞的核 S100A4 表达明显减少,而增殖率和凋亡率则保持不变。总之,我们的研究结果强调了核S100A4是胆管癌的一个候选治疗靶点,并为使用低剂量紫杉醇阻断胆管癌的转移性进展提供了机理依据。Cancer Res; 76(16); 4775-84。©2016 AACR。
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来源期刊
ACS Chemical Health & Safety
ACS Chemical Health & Safety PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH-
CiteScore
3.10
自引率
20.00%
发文量
63
期刊介绍: The Journal of Chemical Health and Safety focuses on news, information, and ideas relating to issues and advances in chemical health and safety. The Journal of Chemical Health and Safety covers up-to-the minute, in-depth views of safety issues ranging from OSHA and EPA regulations to the safe handling of hazardous waste, from the latest innovations in effective chemical hygiene practices to the courts'' most recent rulings on safety-related lawsuits. The Journal of Chemical Health and Safety presents real-world information that health, safety and environmental professionals and others responsible for the safety of their workplaces can put to use right away, identifying potential and developing safety concerns before they do real harm.
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