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Nrf2 Is Commonly Activated in Papillary Thyroid Carcinoma, and It Controls Antioxidant Transcriptional Responses and Viability of Cancer Cells

甲状腺癌 乳头状癌 抗氧化剂 甲状腺癌 癌症 癌症研究 医学 甲状腺乳突癌 肿瘤科 活力测定 内科学 病理 生物 甲状腺 生物化学 细胞凋亡
作者
Panos G. Ziros,Stavroula D Manolakou,Ioannis Habeos,Ioannis Lilis,Dionysios V. Chartoumpekis,Vasiliki Koika,Paula Soares,Venetsana Kyriazopoulou,Chrisoula D. Scopa,Dionysios J. Papachristou,Gerasimos P. Sykiotis
出处
期刊:The Journal of Clinical Endocrinology and Metabolism [Oxford University Press]
卷期号:98 (8): E1422-E1427 被引量:33
标识
DOI:10.1210/jc.2013-1510
摘要

The antioxidant transcription factor NFE2-related factor 2 (Nrf2), encoded by NFE2L2, has been implicated as mediator of thyroid cancer cell line resistance to proteasome inhibitors. However, the activity status of the Nrf2 pathway in human thyroid cancer remains unknown.The aims of this study were assessment of the activity status of the Nrf2 pathway in papillary thyroid carcinoma (PTC) and investigation of its role(s) in antioxidant transcriptional responses and viability of cancer cells.We conducted retrospective immunohistochemical analyses of PTC specimens, adjacent normal tissue, and benign lesions; assays of viability and gene expression in the PTC cell lines K1 and TPC-1 after genetic/pharmacological manipulation of Nrf2; and DNA sequencing at an academic medical center.The study included 42 PTC and 42 benign lesions (24 adenomas and 18 nodular hyperplasias).We assessed the abundance of Nrf2, Nqo1, Keap1, and 4HNE; cell line viability and mRNA expression of Nrf2, Nqo1, and Trdx1; and the sequence of NFE2L2, KEAP1, and BRAF.Nrf2 and its target Nqo1 were undetectable in normal tissue; their levels were significantly higher in PTC than in benign lesions (P < .0001 and P = .024, respectively). The Nrf2 inhibitor Keap1 was variably abundant in PTC, and its levels did not correlate with Nrf2 (P = .37), arguing against decreased levels as the mechanism for Nrf2 activation. The oxidized lipid 4HNE was more abundant in PTC than normal tissue (P < .001), indicating oxidative stress. Nrf2 mediated transcriptional antioxidant responses in both the PTC cell lines K1 and TPC-1 and in the nontransformed cell line TAD2, but it conferred a viability advantage specifically in the PTC cell lines.The high activity of Nrf2 in PTC warrants further exploration of this pathway's potential diagnostic, prognostic, and/or therapeutic utility in PTC.

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