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Calix[6]arene bypasses human pancreatic cancer aggressiveness: Downregulation of receptor tyrosine kinases and induction of cell death by reticulum stress and autophagy

自噬 胰腺癌 癌症研究 PI3K/AKT/mTOR通路 蛋白激酶B 癌症 下调和上调 程序性细胞死亡 内质网 受体酪氨酸激酶 酪氨酸激酶 激酶 信号转导 化学 细胞生物学 生物 内科学 细胞凋亡 医学 生物化学 基因
作者
Karin Juliane Pelizzaro‐Rocha,Marcelo Bispo de Jesus,Roberta R. Ruela-de-Sousa,Celso Vataru Nakamura,Fabiano Souza Reis,Ângelo de Fátima,Carmen Veríssima Ferreira‐Halder
出处
期刊:Biochimica et biophysica acta. Molecular cell research [Elsevier BV]
卷期号:1833 (12): 2856-2865 被引量:36
标识
DOI:10.1016/j.bbamcr.2013.07.010
摘要

Pancreatic cancer ranks fourth among cancer-related causes of death in North America. Minimal progress has been made in the diagnosis and treatment of patients with late-stage tumors. Moreover, pancreatic cancer aggressiveness is closely related to high levels of pro-survival mediators, which can ultimately lead to rapid disease progression, resistance and metastasis. The main goal of this study was to define the mechanisms by which calix[6]arene, but not other calixarenes, efficiently decreases the aggressiveness of a drug resistant human pancreas carcinoma cell line (Panc-1). Calix[6]arene was more potent in reducing Panc-1 cell viability than gemcitabine and 5-fluorouracil. In relation to the underlying mechanisms of cytotoxic effects, it led to cell cycle arrest in the G0/G1 phase through downregulation of PIM1, CDK2, CDK4 and retinoblastoma proteins. Importantly, calix[6]arene abolished signal transduction of Mer and AXL tyrosine kinase receptors, both of which are usually overexpressed in pancreatic cancer. Accordingly, inhibition of PI3K and mTOR was also observed, and these proteins are positively modulated by Mer and AXL. Despite decreasing the phosphorylation of AKT at Thr308, calix[6]arene caused an increase in phosphorylation at Ser473. These findings in conjunction with increased BiP and IRE1-α provide a molecular basis explaining the capacity of calix[6]arene to trigger endoplasmic reticulum stress and autophagic cell death. Our findings highlight calix[6]arene as a potential candidate for overcoming pancreatic cancer aggressiveness. Importantly, we provide evidence that calix[6]arene affects a broad array of key targets that are usually dysfunctional in pancreatic cancer, a highly desirable characteristic for chemotherapeutics.

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