| Literature DB >> 27708550 |
Jian-Jun Li1, Jie Luo2, Jing-Ning Lu3, Xiao-Na Liang4, Yi-Huan Luo4, Yong-Ru Liu4, Jie Yang5, Hua Ding6, Gui-Hui Qin5, Li-Hua Yang2, Yi-Wu Dang4, Hong Yang7, Gang Chen4.
Abstract
OBJECTIVE: To explore the relationship between tumor necrosis factor receptor-associated factor 6 (TRAF6) and the clinicopathological features in HCC as well as its biological function.Entities:
Keywords: Apoptosis; Caspase; Clinicopathological parameters; Hepatocellular carcinoma; Proliferation; TRAF6
Year: 2016 PMID: 27708550 PMCID: PMC5041287 DOI: 10.1186/s12935-016-0352-z
Source DB: PubMed Journal: Cancer Cell Int ISSN: 1475-2867 Impact factor: 5.722
Expression of TRAF6 Protein in different tissues
| Tissue | Patients(N) | TRAF6 negative N (%) | TRAF6 positive N (%) |
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| HCC tissue | 171 | 86 (50.3) | 85 (49.7) | _ | _ |
| Para-carcinoma tissue | 171 | 109 (63.7) | 62 (36.3) | −2.509 | 0.012 |
| Cirrhotic tissue | 37 | 29 (78.4) | 8 (21.6) | −3.108 | 0.002 |
| Normal liver tissue | 33 | 29 (87.9) | 4 (12.1) | −3.976 | 0.001 |
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| Cirrhotic tissue | 37 | 29 (78.4) | 8 (21.6) | −1.704 | 0.088 |
| Normal liver tissue | 33 | 29 (87.9) | 4 (12.1) | −2.707 | 0.007 |
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| Normal liver tissue | 33 | 29 (87.9) | 4 (12.1) | −1.045 | 0.296 |
Fig. 1Expression pattern of TRAF6 in different liver tissues. Immunohistochemistry was performed to detect the TRAF6 expression in normal liver tissues (a), cirrhosis (b), para-tumor liver tissues (c, left side), and hepatocellular carcinoma tissues (c, right side, d and e). ×400
Relationship between the expression of TRAF6 and clinicopathological features in HCC
| Clinicopathological parameters |
| TRAF6 negative n (%) | TRAF6 positive n (%) |
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|---|---|---|---|---|---|---|---|---|
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| <50 | 67 | 37 (55.2) | 30 (44.8) | −1.032 | 0.302 | |||
| ≥50 | 104 | 49 (47.1) | 55 (52.9) | |||||
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| Male | 153 | 76 (49.7) | 77 (50.3) | −0.471 | 0.638 | −0.036 | 0.639 | |
| Female | 18 | 10 (55.6) | 8 (44.4) | |||||
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| High | 20 | 14 (70.0) | 6 (30.0) | 3.685* | 0.158 | 0.116 | 0.130 | |
| Moderate | 98 | 48 (49.0) | 50 (51.0) | |||||
| Low | 53 | 24 (45.3) | 29 (54.7) | |||||
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| <5 cm | 58 | 34 (58.6) | 24 (41.4) | −1.556 | 0.120 | 0.119 | 0.120 | |
| ≥5 cm | 113 | 52 (46.0) | 61 (54.0) | |||||
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| Single | 68 | 29 (42.6) | 39 (57.4) | −0.370 | 0.711 | −0.033 | 0.713 | |
| Multiple | 61 | 28 (45.9) | 33 (54.1) | |||||
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| – | 90 | 52 (57.8) | 38 (42.2) | −2.058 | 0.040 | 0.158 | 0.039 | |
| + | 81 | 34 (42.0) | 47 (58.0) | |||||
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| I ~ II | 48 | 29 (60.4) | 19 (39.6) | −1.649 | 0.099 | 0.126 | 0.099 | |
| III ~ IV | 123 | 57 (46.3) | 66 (53.7) | |||||
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| – | 84 | 37 (44.0) | 47 (56.0) | −0.043 | 0.966 | −0.004 | 0.966 | |
| + | 45 | 20 (44.4) | 25 (55.6) | |||||
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| – | 77 | 34 (44.2) | 43 (55.8) | −0.008 | 0.993 | 0.000 | 0.993 | |
| + | 52 | 23 (44.2) | 29 (55.8) | |||||
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| Yes | 61 | 27 (44.3) | 34 (55.7) | −0.016 | 0.987 | 0.001 | 0.987 | |
| No | 68 | 30 (44.1) | 38 (55.9) | |||||
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| – | 87 | 40 (46.0) | 47 (54.0) | −0.587 | 0.557 | 0.052 | 0.559 | |
| + | 42 | 17 (40.5) | 25 (59.5) | |||||
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| – | 24 | 9 (37.5) | 15 (62.5) | −0.728 | 0.466 | −0.064 | 0.469 | |
| + | 105 | 48 (45.7) | 57 (54.3) | |||||
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| – | 56 | 24 (42.9) | 32 (57.1) | −0.748 | 0.455 | 0.072 | 0.457 | |
| + | 54 | 27 (50.0) | 27 (50.0) | |||||
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| – | 74 | 33 (44.6) | 41 (55.4) | −1.298 | 0.194 | 0.100 | 0.195 | |
| + | 97 | 53 (54.6) | 44 (45.4) | |||||
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| – | 25 | 7 (28.0) | 18 (72.0) | −1.808 | 0.071 | −0.160 | 0.070 | |
| + | 104 | 50 (48.1) | 54 (51.9) | |||||
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| – | 54 | 25 (46.3) | 29 (53.7) | −0.408 | 0.683 | 0.036 | 0.685 | |
| + | 75 | 32 (42.7) | 43 (57.3) | |||||
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| – | 84 | 36 (42.9) | 48 (57.1) | −0.414 | 0.679 | −0.037 | 0.681 | |
| + | 45 | 21 (46.7) | 24 (53.3) | |||||
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| – | 33 | 13 (39.4) | 20 (60.6) | −0.640 | 0.522 | −0.057 | 0.524 | |
| + | 96 | 44 (45.8) | 52 (54.2) | |||||
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| Low | 62 | 26 (41.9) | 36 (58.1) | −0.803 | 0.422 | −0.073 | 0.424 | |
| High | 61 | 30 (49.2) | 31 (50.8) | |||||
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| Low | 61 | 19 (31.1) | 42 (68.9) | −2.813 | 0.005 | −0.249 | 0.004 | |
| High | 68 | 38 (55.9) | 30 (44.1) | |||||
* Kruskal–Wallis H test; − Negative; + Positive; LI label index; MVD micro-vessel density
Fig. 2Receiver operating characteristic (ROC) curve of TRAF6 expression in hepatocellular carcinoma (HCC) tissues. The area under ROC curve (AUC) of TRAF6 was calculated to to predict the metastatic status and micro-vessel density (MVD) in HCC tissues
Fig. 3Knock-down effeciency of TRAF6 siRNA in hepatocellular carcinoma HepG2 and Hep3B cells. HepG2 and Hep3B cells were transfected with TRAF6 siRNA and corresponding controls for 10 days. The protein level of TRAF6 was assessed by Western blot (1: Blank control, 2: Negative siRNA control, 3: TRAF6 siRNA). *P < 0.01
Fig. 4Effect of TRAF6 siRNA on the cell growth of HCC cells. HepG2 and Hep3B cells were transfected with TRAF6 siRNA and corresponding controls for 5 and 10 days. Cell viability was assessed by Cell Titer-Blue kit (a HepG2, b Hep3B); Proliferation was evaluated with MTS assay (c HepG2, d Hep3B); Cell viability was also verified by Hoechst/PI double staining (e HepG2, f Hep3B). *P < 0.01, **P < 0.001
Fig. 5Effect of TRAF6 siRNA on the cell apoptosis of HCC cells. HepG2 and Hep3B cells were transfected with TRAF6 siRNA and corresponding controls for 5 and 10 days. Cell caspase-3/7 activity was assessed by Hoechst/PI double staining (a HepG2,b Hep3B); Apoptosis was detected by Hoechst/PI double staining (c HepG2, d Hep3B). *P < 0.01, **P < 0.001
Fig. 6Effect of TRAF6 siRNA on the cell apoptosis of HCC cells assessed by Hoechst/PI double staining. HepG2 and Hep3B cells were transfected with TRAF6 siRNA and corresponding controls for 10 days. Cell apoptosis was detected by Hoechst/PI double staining. ×400