| Literature DB >> 24274578 |
Xuelei Cao1, Li Zhang, Yongyu Shi, Yue Sun, Shen Dai, Chun Guo, Faliang Zhu, Qun Wang, Jianing Wang, Xiaoyan Wang, Youhai H Chen, Lining Zhang.
Abstract
BACKGROUND: Tumor invasion and metastasis are the major reasons for leading death of patients with hepatocellular carcinoma (HCC). Therefore, to identify molecules that can suppress invasion and metastasis of tumor will provide novel targets for HCC therapies. Tumor necrosis factor (TNF)-alpha-induced protein 8-like 2, TIPE2, is a novel immune negative molecule and an inhibitor of the oncogenic Ras in mice but its function in human is unclear. Our previous research has shown that TIPE2 is downregulated in human primary HCC compared with the paired adjacent non-tumor tissues.Entities:
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Year: 2013 PMID: 24274578 PMCID: PMC4176125 DOI: 10.1186/1476-4598-12-149
Source DB: PubMed Journal: Mol Cancer ISSN: 1476-4598 Impact factor: 27.401
Relationship of TIPE2 expression of HCC and clinical pathological parameters of patients
| Gender | Male | 105 | 44 | 61 | 0.961 |
| Female | 7 | 3 | 4 | ||
| Age | <50 | 30 | 15 | 15 | 0.302 |
| ≥50 | 82 | 32 | 50 | ||
| Pathological Grade | I-II | 57 | 24 | 33 | 0.617 |
| III-IV | 38 | 18 | 20 | ||
| Serum AFP (ng/ml) | <500 | 47 | 24 | 23 | 0.343 |
| ≥500 | 37 | 15 | 22 | ||
| Cirrhosis | Absent | 28 | 9 | 19 | 0.364 |
| Present | 7 | 1 | 6 | ||
| Hepatitis B | Absent | 14 | 5 | 9 | 0.46 |
| Present | 21 | 5 | 16 | ||
| TNM stage | I-II | 23 | 4 | 19 | 0.044 |
| III-IV | 12 | 6 | 6 | ||
*Low: final pathological score of TIPE2 expression as 0, +1.
High: final pathological score of TIPE2 expression as +2, +3.
Figure 1TIPE2 decreased markedly HCC cell migration and invasion in vitro. BEL-7402 and HepG2 cells transfected with Mock and TIPE2 plasmid were used for migration and invasion assay. Five fields of cells in the lower side were counted. Data represent means ± SEM of three independent experiments. *P < 0.05; ** P < 0.01; *** P < 0.001.
Figure 2TIPE2 suppressed effectively growth of subcutaneous xenograft tumor. (A) The growth curves of tumors in nude mice treated by Mock and TIPE2 plasmid; (B) Representative image of mice with subcutaneous xenograft tumor; (C) Representative image of isolated tumors; (D) The mean tumor volume in TIPE2 group (n =5) was lower than that of Mock group (n =5); (E) The mean tumor weight in TIPE2 group (n =5) was lower than that of Mock group (n =5); (F) The mean serum AFP in TIPE2 group (n =5) was lower than that of Mock group (n =5). *P < 0.05; **P < 0.01.
Figure 3TIPE2 inhibited growth and metastasis of xenograft in situ. (A) Representative image of liver and tumor in mock and TIPE2 group 35 days after innoculation; (B) The mean tumor volume in TIPE2 group(n =5) was lower than that of Mock group (n =5); (C) The mean tumor weight in TIPE2 group (n =5) was lower than that of Mock group (n =5); (D) The mean serum AFP in TIPE2 group (n =5) was lower than that of Mock group (n =5); (E) Representative images of lung, pancreas, abdominal wall and diaphragm metastasis.* P < 0.05.
Metastasis rate of orthotopic transplanted HCC in different organs or tissure
| Lung | 100%(5/5) | 60%(3/5) |
| pancreas | 40%(2/5) | 0(0/5) |
| Diaphragm | 20%(1/5) | 0(0/5) |
| Abdominal wall | 20%(1/5) | 0(0/5) |
Figure 4TIPE2 suppressed HCC migration and invasion via inhibiting Rac1 pathway. (A) BEL-7402 and HepG2 cells that were cotransfected with Mock or TIPE2 plasmids and siNC or siRac1 were used for migration and invasion assay. (B) BEL-7402 cell was transfected with TIPE2 or mutant plasmids for 24 h, the cell lysates were prepared and immonoprecipitated with anti-Flag antibody or isotype IgG. The precipitates and cell lysates were subjected to Western blotting with anti-Flag and anti-Rac1 antibody; (C) BEL-7402 cell were transfected with Mock, wide type TIPE2 and mutant TIPE2 plasmids respectively, and cell lysates were subjected to pull down using PAK-GST protein beads. Activated Rac1 from pull down and total Rac1 in the lysates were detected by Western blot; (D) BEL-7402 and HepG2 cells that were transfected with Mock, TIPE2 and Mutant TIPE2 plasmid were used for migration and invasion assay. Data shown are representative of three independent experiments (n = 3). *P < 0.05; *** P <0.001.
Figure 5TIPE2 decreased F-actin polymerization and expression of MMP9 and uPA via inhibiting Rac1 pathway. (A) After transfected with mock, TIPE2 and Mutant TIPE2 plasmids respectively, the microfilament in 7402 cell was stained with Tetramethylrhodamine (TRITC)-conjugated phalloidin and observed under laser confocal microscopy; (B) MMP9 and uPA levels in BEL-7402 and HepG2 were detected by Real time PCR; (C) The protein levels of MMP9 and uPA in BEL-7402 and HepG2 were detected by western blot. Data shown are representative of three independent experiments (n = 3). *P < 0.05; **P < 0.01.