LncRNA HIF1A-AS1 Promotes Gemcitabine Resistance of Pancreatic Cancer by Enhancing Glycolysis through Modulating the AKT/YB1/HIF1α Pathway

胰腺癌 吉西他滨 癌症研究 下调和上调 CA19-9号 癌变 蛋白激酶B 糖酵解 转录因子 PI3K/AKT/mTOR通路 癌症 癌细胞 抄写(语言学) 激酶 小RNA 医学 磷酸化 生物 信使核糖核酸 信号转导 胰腺肿瘤 化学 内科学 细胞凋亡 化疗 转染 转移 胰岛 核糖核酸 肿瘤科 体外
作者
Fengyu Xu,Mengqi Huang,Qingyong Chen,Yi Niu,Yuhang Hu,Ping Hu,Ding Chen,Chi He,Kang Huang,Zhu Zeng,Jiang Tang,Fan Wang,Yong Zhao,Chunyou Wang,Gang Zhao
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:81 (22): 5678-5691 被引量:126
标识
DOI:10.1158/0008-5472.can-21-0281
摘要

Abstract Gemcitabine (GEM) resistance is a major challenge for chemotherapy of pancreatic cancer. Previous studies have reported on the role of long noncoding RNA (lncRNA) in tumorigenesis of pancreatic cancer, however, the involvement of lncRNA in the development of GEM resistance of pancreatic cancer remains unclear. In the present study, we demonstrated that the antisense RNA1 of HIF1α (HIF1A-AS1) was significantly elevated in the GEM-resistant pancreatic cancer cells. Gain- and lost-of-function experiments validated that HIF1A-AS1 promoted GEM resistance of pancreatic cancer cells both in vitro and vivo. We further revealed that HIF1A-AS1 upregulated HIF1α expression and thus promoted glycolysis to enhance GEM resistance of pancreatic cancer cells. Mechanistically, HIF1A-AS1 facilitated the interaction between serine/threonine kinase AKT and Y-box–binding protein 1 (YB1), which promoted phosphorylation of YB1 (pYB1). Meanwhile, HIF1A-AS1 recruited pYB1 to HIF1α mRNA that consequently promoted translation of HIF1α. Furthermore, HIF1α promoted HIF1A-AS1 transcription by directly binding to the HIF1α response element in the promoter area of HIF1A-AS1 to form a positive feedback. Consistently, both HIF1A-AS1 and HIF1α were upregulated in pancreatic cancer tissues and associated with poor overall survival. Together, our results underline a reciprocal loop of HIF1A-AS1 and HIF1α that contributes to GEM resistance of pancreatic cancer and indicate that HIF1A-AS1 might serve as a novel therapeutic target for GEM resistance of pancreatic cancer. Significance: These findings show that a reciprocal feedback of HIF1A-AS1 and HIF1α promotes gemcitabine resistance of pancreatic cancer, which provides an applicable therapeutic target.
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