» Articles » PMID: 31692094

Knockdown of LncRNA ZFAS1-suppressed Non-small Cell Lung Cancer Progression Via Targeting the MiR-150-5p/HMGA2 Signaling

Overview
Journal J Cell Biochem
Date 2019 Nov 7
PMID 31692094
Citations 18
Authors
Affiliations
Soon will be listed here.
Abstract

Non-small cell lung cancer (NSCLC) is the main type of lung malignancy. Early diagnosis and treatments for NSCLC are far from satisfactory due to the limited knowledge of the molecular mechanisms regarding NSCLC progression. Long noncoding RNA (lncRNA) ZNFX1 antisense RNA1 (ZFAS1) has been implicated for its functional role in the progression of malignant tumors. This study aimed to determine the ZFAS1 expression from lung cancer clinical samples and to explore the molecular mechanisms underlying ZFAS1-modulated NSCLC progression. Experimental assays revealed that clinical samples and cell lines of lung malignant tumors showed an upregulation of ZFSA1. ZFAS1 expression was markedly upregulated in the lung tissues from patients with advanced stage of this malignancy. The loss-of-function assays showed that knockdown of ZFAS1-suppressed NSCLC cell proliferative, as well as invasive potentials, increased NSCLC cell apoptotic rates in vitro and also attenuated tumor growth of NSCLC cells in the nude mice. Further experimental evidence showed that ZFAS1 inversely affected miR-150-5p expression and positively affected high-mobility group AT-hook 2 (HMGA2) expression in NSCLC cell lines. MiR-150-5p inhibition or HMGA2 overexpression counteracted the effects of ZFAS1 knockdown on NSCLC cell proliferative, invasive potentials and apoptotic rates. In light of examining the clinical lung cancer samples, miR-150-5p expression was downregulated and the HMGA2 expression was highly expressed in the lung cancer tissues compared with normal ones; the ZFAS1 expression showed a negative correlation with miR-150-5p expression but a positive correlation with HMGA2 expression in lung cancer tissues. To summarize, we, for the first time, demonstrated the inhibitory effects of ZFAS1 knockdown on NSCLC cell progression, and the results from mechanistic studies indicated that ZFAS1-mediated NSCLC progression cells via targeting miR-150-5p/HMGA2 signaling.

Citing Articles

Research Progress of Long Non-coding RNA-ZFAS1 in Malignant Tumors.

Liu X, Ma Z, Zhang X, Li S, An J, Luo Z Cell Biochem Biophys. 2024; 82(4):3145-3156.

PMID: 39060915 DOI: 10.1007/s12013-024-01441-3.


Resveratrol regulates -mediated mitophagy via the lncRNA axis, and enhances the antitumor activity of paclitaxel against non-small cell lung cancer.

Kong F, Xie C, Zhao X, Zong X, Bu L, Zhang B Toxicol Res (Camb). 2022; 11(6):962-974.

PMID: 36569479 PMC: 9773061. DOI: 10.1093/toxres/tfac072.


lncRNA JPX modulates malignant progress of osteosarcoma through targeting miR-33a-5p and PNMA1 regulatory loop.

Xiong W, Liu D, Chen X, Liu L, Xiao W Transl Oncol. 2022; 25:101504.

PMID: 36067544 PMC: 9502696. DOI: 10.1016/j.tranon.2022.101504.


A Cross-Comparison of High-Throughput Platforms for Circulating MicroRNA Quantification, Agreement in Risk Classification, and Biomarker Discovery in Non-Small Cell Lung Cancer.

Gargiuli C, De Cecco L, Mariancini A, Ianno M, Micali A, Mancinelli E Front Oncol. 2022; 12:911613.

PMID: 35928879 PMC: 9343840. DOI: 10.3389/fonc.2022.911613.


MAGCNSE: predicting lncRNA-disease associations using multi-view attention graph convolutional network and stacking ensemble model.

Liang Y, Zhang Z, Liu N, Wu Y, Gu C, Wang Y BMC Bioinformatics. 2022; 23(1):189.

PMID: 35590258 PMC: 9118755. DOI: 10.1186/s12859-022-04715-w.