| Literature DB >> 27421138 |
Liang Wang1, Zhenxian Zhao2, Weidong Feng1, Zhijun Ye1, Weigang Dai1, Changhua Zhang1, Jianjun Peng1, Kaiming Wu1.
Abstract
Colorectal cancer (CRC) is the third most common malignancy in developed countries, and its incidence rate has been continuously increasing in developing countries over the past few decades. Taurine-upregulated gene 1 (TUG1) plays an important role in signal transduction, regulation of cell morphology, migration, proliferation and apoptosis. The aim of the present study was to evaluate the role of TUG1 in CRC, and whether knockdown of TUG1 expression could affect cell proliferation, migration and invasion of CRC cell lines. Here, we reported that TUG1 was upregulated in CRC. Further experiments revealed that TUG1 knockdown significantly inhibited cell proliferation, migration and invasion of CRC in vitro. Above all, knockdown of TUG1 may represent a rational therapeutic strategy for CRC patients in future.Entities:
Keywords: CRC; EMT; TUG1; long noncoding RNA
Mesh:
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Year: 2016 PMID: 27421138 PMCID: PMC5239509 DOI: 10.18632/oncotarget.10563
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1The TUG1 expression levels in CRC tissues and cell lines
(A) TUG1 was detected in CRC tissues and adjacent normal mucosa tissues by qRT-PCR; (B) qRT-PCR showing expression level of TUG1 mRNA in CRC cell lines (**P < 0.01).
Figure 2Knockdown efficiency of TUG1-specific siRNA in CRC cells
(A) qRT-PCR showing the expression of TUG1 mRNA in LoVo/si cells was significantly decreased compared with control cells (**P < 0.01); (B) qRT-PCR showing the expression of TUG1 mRNA in SW480/si cells was significantly decreased compared with control cells (**P < 0.01); (C) MTT assay showing TUG1 knock down inhibited cell proliferation of LoVo cells; (D) S TUG1 knock down inhibited cell proliferation of SW480 cells.
Figure 3Colony-formation assays showed that silencing of TUG1 significantly increased the colony-forming ability of LoVo and SW480 cells (**P < 0.01)
Figure 4(A) LoVo cells transfected with si-TUG1 had cell-cycle arrest at the G1-G0 phase compared with cells transfected with si-NC; (B) SW480 cells transfected with si-TUG1 all had cell-cycle arrest at the G1-G0 phase compared with cells transfected with si-NC.
Figure 5(A) the proportion of apoptotic cells following TUG1 siRNA treatment was increased in LoVo cells; (B) the proportion of apoptotic cells following TUG1 siRNA treatment was increased in SW480 cells.
Figure 6(A) Inhibition of Migration and Invasion of LoVo cells by TUG1 siRNA(**P < 0.01); (B) Inhibition of Migration and Invasion of SW480 cells by TUG1 siRNA (**P < 0.01).
Figure 7(A) Knockdown of TUG1 reverses EMT in LoVo cells; (B) Knockdown of TUG1 reverses EMT in SW480 cells.