TESC promotes differentiated thyroid cancer development by activating ERK and weakening NIS and radioiodine uptake

波形蛋白 甲状腺癌 基因敲除 癌症研究 内科学 内分泌学 MAPK/ERK通路 医学 转染 化学 生物 磷酸化 癌症 细胞培养 免疫组织化学 细胞凋亡 生物化学 有机化学 遗传学
作者
Yawen Guo,Yefeng Cai,Fahuan Song,Lei Zhu,Yiqun Hu,Yunye Liu,Wenli Ma,Jingyan Ge,Qian Zeng,Lingling Ding,Lebao Li,Guowan Zheng,Minghua Ge
出处
期刊:Endocrine [Springer Science+Business Media]
卷期号:81 (3): 503-512 被引量:2
标识
DOI:10.1007/s12020-023-03350-6
摘要

Most differentiated thyroid cancer (DTC) patients have a good prognosis after surgery, but radioiodine refractory differentiated thyroid cancer (RAIR-DTC) patients have a significantly reduced 5-year survival rate (<60%) and a significantly increased recurrence rate (>30%). This study aimed to clarify the tescalcin (TESC) role in promoting the malignant PTC progression and providing a potential target for RAIR-DTC treatment.We analyzed TESC expression and clinicopathological characteristics using the Cancer Genome Atlas (TCGA) and performed qRT-PCR on tissue samples. TPC-1 and IHH-4 proliferation, migration, and invasion were detected after transfection with TESC-RNAi. Using Western blot (WB), several EMT-related indicators were detected. Moreover, iodine uptake of TPC-1 and IHH-4 after transfection with TESC-RNAi was detected. Finally, NIS, ERK1/2, and p-ERK1/2 levels were determined by WB.TESC was significantly upregulated in DTC tissues and positively correlated with BRAF V600E mutation based on data analysis from TCGA and our center. Reduced expression of TESC in both IHH-4 (BRAF V600E mutation) and TPC-1 (BRAF V600E wild type) cells significantly inhibited cell proliferation, migration, and invasion. It downregulated the EMT pathway markers Vimentin and N-cadherin, and increased E- cadherin. Moreover, TESC knockdown significantly inhibited ERK1/2 phosphorylation and decreased NIS expression in DTC cells, with a remarkably increased iodine uptake rate.TESC was highly expressed in DTC tissues and may have promoted metastasis through EMT and induced iodine resistance by downregulating NIS in DTC cells.
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