| General information | Literature | Expression | lncRNA |Regulation | Mutation | Homolog | Interaction |
Basic Information | |
|---|---|
Gene ID | 10979 |
Name | FERMT2 |
Sentence | From PubMed database |
| Kindlin-2 promotes hepatocellular carcinoma invasion and metastasis by increasing Wnt/beta-catenin signaling. | BACKGROUND: Kindlin-2 is a member of the focal adhesion protein family that regulates invasion and metastasis in multiple malignancies; however, little is known about the role of Kindlin-2 in hepatocellular carcinoma (HCC) progression. METHODS: Immunohistochemistry was used to investigate Kindlin-2 expression in 177 pairs of human HCC and adjacent liver tissue samples. The role of Kindlin-2 in the in vitro invasion and migration of HCC cell lines was evaluated in MHCC97H, LM3 and SMMC7721 cells. Microarray expression analysis was applied to explore the molecular mechanism through which Kindlin-2 promoted HCC progression. Quantitative real-time PCR and Western blotting were performed to verify the microarray results. RESULTS: High Kindlin-2 expression was found to significantly correlate with aggressive HCC clinicopathological features including tumor encapsulation, microvascular invasion, extrahepatic metastasis and poor prognosis. In vitro, Kindlin-2 knockout or knockdown inhibited HCC cell adhesion, migration and invasion, while ectopic Kindlin-2 expression promoted these processes. Importantly, Kindlin-2 activated Wnt/beta-catenin signaling and increased beta-catenin expression, especially levels of non-phosphorylated beta-catenin, as well as two Wnt/beta-catenin signaling pathway targets, Axin2 and MMP7. Kindlin-2 also induced a change in the expression profile of HCC cells, suggesting the cells underwent epithelial-mesenchymal transition. For example, the expression of the epithelial marker E-cadherin was downregulated, while the mesenchymal markers Vimentin, N-cadherin and Snail were upregulated. CONCLUSION: Kindlin-2 promotes HCC invasion, metastasis and epithelial-mesenchymal transition through Wnt/beta-catenin signaling. |
| [Kindlin-2 promotes gallbladder cancer metastasis and invasion by inducing epithelial-mesenchymal transition]. | Objective: To investigate the effects of Kindlin-2 on malignant phenotypes of human gallbladder cancer cells and discuss the mechanisms. Methods: The expression level of Kindlin-2 in 30 cases of gallbladder cancer tissues and adjacent non-tumoral tissues collected from the First Affiliated Hospital of Zhengzhou University between September 2012 and May 2013 was assessed by real-time PCR and immunohistochemistry.Lentivirus-mediated Kindlin-2 overexpression was used in gallbladder cancer cell lines GBC-SD and SGC-996.Transwell assay and adhesion assay were investigated to explore the functional role of Kindlin-2 on gallbladder cancer cells.Western Blot was used to test the protein change of epithelial-mesenchymal transition(EMT) characteristics. The t-test was used to analyzed results. Results: The RNA and protein levels of Kindlin-2 in gallbladder cancer tissues were higher than in the non-tumoral tissues (t=4.372, P=0.001; t=7.477, P=0.000). The expression level of Kindlin-2 in gallbladder cancer tissues was correlated with Nevin stage(chi(2)=5.932, P=0.035). Compared with control groups, the cell-matrix adhesion ability of GBC-SD and SGC-996 with Kindlin-2 overexpression was obviously promoted(1.66+/-0.03 vs. 1.07+/-0.22, t=2.710, P=0.041; 2.66+/-0.24 vs. 1.03+/-0.02, t=6.610, P=0.020). The number of GBC-SD and SGC-996 cells with Kindlin-2 overexpression passing through the Transwell chamber matrix increased significantly compared with the control groups(116.1+/-13.9 vs. 54.7+/-8.4, t=3.781, P=0.019; 136.3+/-7.5 vs. 64.3+/-6.4, t=7.302, P=0.002). The wound healing rate of GBC-SD with Kindlin-2 overexpression at 12-hour and 24-hour was higher than that of the group ((42.9+/-2.2)% vs. (29.7+/-1.7)%, t=4.690, P=0.009; (65.0+/-2.4)% vs.(40.4+/-2.0)%, t=7.945, P=0.001). The wound healing rate of SGC-996 with Kindlin-2 overexpression at 12-hour and 24-hour was also higher than that of the group ((32.9+/-1.3)% vs. (24.1+/-1.5)%, t=4.518, P=0.011; (51.3+/-1.1)% vs. (39.2+/-1.1)%, t=8.001, P=0.001). The characteristics of EMT were induced in gallbladder cancer cells with Kindlin-2 overexpression, including the up-regulation of N-cadherin, Vemintin and the down-regulation of E-cadherin. Conclusion: The expression of Kindlin-2 is up-regulated in gallbladder cancer tissues and Kindlin-2 promoted the malignant phenotypes of gallbladder cancer cells partially by epithelial-mesenchymal transition. |
| Kindlin-2 regulates renal tubular cell plasticity by activation of Ras and its downstream signaling. | Kindlin-2 is an adaptor protein that contributes to renal tubulointerstitial fibrosis (TIF). epithelial-to-mesenchymal transition (EMT) in tubular epithelial cells was regarded as one of the key events in TIF. To determine whether kindlin-2 is involved in the EMT process, we investigated its regulation of EMT in human kidney tubular epithelial cells (TECs) and explored the underlying mechanism. In this study, we found that overexpression of kindlin-2 suppressed epithelial marker E-cadherin and increased the expression of fibronectin and the myofibroblast marker alpha-smooth muscle actin (SMA). Kindlin-2 significantly activated ERK1/2 and Akt, and inhibition of ERK1/2 or Akt reversed kindlin-2-induced EMT in human kidney TECs. Mechanistically, kindlin-2 interacted with Ras and son of sevenless (Sos)-1. Furthermore, overexpression of kindlin-2 increased Ras activation through recruiting Sos-1. Treatment with a Ras inhibitor markedly repressed kindlin-2-induced ERK1/2 and Akt activation, leading to restraint of EMT. We further demonstrated that knockdown of kindlin-2 inhibited EGF-induced Ras-Sos-1 interaction, resulting in reduction of Ras activation and suppression of EMT stimulated by EGF. Importantly, we found that depletion of kindlin-2 significantly inhibited activation of ERK1/2 and Akt signaling in mice with unilateral ureteral obstruction. We conclude that kindlin-2, through activating Ras and the downstream ERK1/2 and Akt signaling pathways, plays an important role in regulating renal tubular EMT and could be a potential therapeutic target for the treatment of fibrotic kidney diseases. |