| Literature DB >> 27806322 |
Xuemei Chen1, Hongyu Han2, Yuqi Li3, Qiongxia Zhang3, Kailan Mo3, Size Chen3.
Abstract
Esophageal squamous cell carcinoma (ESCC) is one of the prevalent and deadly cancers worldwide, especially in Eastern Asia. The prognosis of ESCC remains poor; thus, it is still necessary to further dissect the underlying mechanisms and explore therapeutic targets of ESCC. Recent studies show that lncRNAs involve in the initiation and progression of various cancers including ESCC. HOTTIP has been recently revealed as oncogenic regulator in different cancers, however, whether HOTTIP is involved in ESCC remains poorly understood. To investigate the role of HOTTIP in ESCC, we evaluated the HOTTIP expression levels in a series of ESCC tissues and a panel of ESCC cell line using qRT-PCR. Moreover, we investigated the effect of HOTTIP on cell proliferation, migration and invasion of ESCC cells. Here, we reported that HOTTIP was upregulated in ESCC. Further experiments revealed that HOTTIP knockdown significantly inhibited ESCC cells proliferation by causing G1 arrest. Furthermore, inhibitory effects of HOTTIP on cell migration and invasion were partly associated with EMT process. In conclusion, these data suggest that HOTTIP could be an oncogene for ESCC, and may be served as a candidate target for new therapies in human ESCC.Entities:
Keywords: EMT; ESCC; HOTTIP; long noncoding RNA; proliferation
Mesh:
Substances:
Year: 2016 PMID: 27806322 PMCID: PMC5356674 DOI: 10.18632/oncotarget.12995
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1(A) HOTTIP was detected in ESCC tissues and adjacent noncancerous tissues by qRT-PCR; (B) qRT-PCR showing expression level of HOTTIP in ESCC cell lines.
Figure 2We employed siRNA and expressing plasmid to enhance efficiency of HOTTIP knockdown and overexpression in ESCC cell lines
Figure 3(A) CCK8 assay showing knockdown of HOTTIP inhibited cell proliferation of EC109 cells. (B) CCK8 assay showing knockdown of HOTTIP inhibited cell proliferation of KYSE30 cells; (C) CCK8 assay showing overexpreesion of HOTTIP promoted cell proliferation of EC9706 cells.
Figure 4(A) EC109 cells transfected with si-HOTTIP all had cell-cycle arrest at the G1-G0 phase compared with cells transfected with si-NC; (B) KYSE30 cells transfected with si-HOTTIP had cell-cycle arrest at the G1-G0 phase compared with cells transfected with si-NC.
Figure 5(A) Inhibition of Migration and Invasion of EC109cells by HOTTIP siRNA; (B) Inhibition of Migration and Invasion of KYSE30 cells by HOTTIP siRNA; (C) Overexpreesion of HOTTIP promoted Migration and Invasion of EC9706 cells.
Figure 6(A) Knockdown of HOTTIP reverses EMT in EC109 cells; (B) Knockdown of HOTTIP reverses EMT in KYSE30 cells.