| Literature DB >> 23934170 |
Young-Min Kim1, In-Hye Kim, Taek-Jeong Nam.
Abstract
Seaweeds are commonly used as functional foods and drugs. A glycoprotein (GP) from the green alga Capsosiphon fulvescens (Cf) has been reported to have antitumor activity toward various cancer cells. We previously observed that Cf-GP induced different pathways of apoptosis in AGS human gastric cancer cells. Transforming growth factor (TGF)-β1 plays an important role in cancer cell migration. Increased TGF-β1 levels increase the expression of the small GTPases and activate the FAK/PI3K/AKT pathways, resulting in the upregulation of integrin receptor proteins, which mediate the attachment of cells to surrounding tissues, cells or extracellular matrix. Thus, the inhibition of TGF-β1 signaling would downregulate integrin expression and thereby effectively decrease cell growth and migration. In the present study, we determined the effect of Cf-GP treatment on the proliferation, migration and apoptosis of AGS human gastric cancer cells. To investigate the mechanism by which Cf-GP exerts its anticancer actions, we examined the effect of Cf-GP on the expression levels of TGF-β1, FAK, PI3K, AKT, the small GTPases and integrins in AGS cells. Our findings indicate that Cf-GP inhibits AGS cell proliferation and migration by downregulating integrin expression via the TGF-β1-activated FAK/PI3K/AKT pathways. These results suggest that Cf-GP may be an important factor in the development of functional foods and therapeutic agents.Entities:
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Year: 2013 PMID: 23934170 PMCID: PMC3829798 DOI: 10.3892/ijo.2013.2055
Source DB: PubMed Journal: Int J Oncol ISSN: 1019-6439 Impact factor: 5.650
Oligonucleotide sequences of the primer pairs used for RT-PCR.
| Name | Sequence of primers (5′→3′) |
|---|---|
| TGF-β 1 | S: GCA-GAA-CCC-AAA-AGC-CAG-AGT-G |
| A: CCA-TAA-CTA-CCG-TGG-AGG-TTG-A | |
| FAK | S: TTC-ATT-ATT-TTG-AAA-GCA-ATA-GT |
| A: CAA-CCC-AAC-TTC-AAA-GCA-ATT-TC | |
| Rho A | S: CTC-ATA-GTC-TTC-AGC-AAG-GAC-CAG-TT |
| A: ATC-ATT-CCG-AAG-ATC-CTT-CTT-ATT | |
| Rho B | S: ATG-GCG-GCC-ATC-CGC-AAG-AAG-C |
| A: TCA-TAG-CAC-CTT-GCA-GCA-GTT-G | |
| Rac-1 | S: GGA-CAC-AGC-TGG-ACA-AGA-AGA |
| A: GGA-CAG-AGA-ACC-GCT-CGG-ATA | |
| Cdc 42 | S: CGA-CCG-CTA-AGT-TAT-CCA-CAG |
| A: GCA-GCT-AGG-ATA-GCC-TCA-TCA | |
| PI3K | S: AGG-AGC-GGT-ACA-GCA-AAG-AA |
| A: GCC-GAA-CAC-CTT-TTT-GAG-TC | |
| Akt | S: CAA-CTT-CTC-TGT-GGC-GCA-GTG |
| A: GAC-AGG-TGG-AAG-AAC-AGC-TCG | |
| IκB | S: TGG-ATG-AAC-TGC-GTG-GTG-CAG |
| A: GCA-GAA-GTG-TCC-CTG-TTC-CAG | |
| NF-κB | S: TCA-GGG-AAT-ATC-CAC-CTA-TCA-CTT-CAG |
| A: CAT-CAG-CAG-CAG-CCA-TGT-ACT-CTT-CAC | |
| Integrin α ν | S: GAA-GCT-TCA-TCT-CCA-GTC-CCT |
| A: TGG-GTA-GGG-CTG-TTT-GTC-ATC-ATA | |
| Integrin β 1 | S: GAC-CTG-CCT-TGG-TGT-CTG-TGC |
| A: AGC-AAC-CAC-ACC-AGC-TAC-AAT | |
| Integrin β 3 | S: CCC-TCG-AAA-ACC-CCT-GCT-AT |
| A: TTA-GCG-TCA-GCA-CGT-GTT-TGT-AG | |
| Integrin β 5 | S: GGC-TGG-GAC-GTC-ATT-CAG-AT |
| A: AGC-TGG-AAG-GTG-GTC-TTG-TCA | |
| β-actin | S: CGT-ACC-ACT-GGC-ATC-GTG |
| A: GTG-TTG-GCG-TAC-AGG-TCT-TTG |
S, sense; A, antisense.
Figure 1.
Cf-GP inhibits the proliferation of AGS cells. Cells were treated with Cf-GP (5, 10 and 20 μ g/ml) for 24 h. As a control, (A) AGS cell and (B) IEC-6 cell were similarly treated with Cf-GP. Cell proliferation was determined using a MTS assay. Values represent means ± SD. p<0.05 by ANOVA. Values with different letters are significantly different according to Duncan’s multiple range test.
Figure 2.
Cf-GP inhibits wound-healing migration of AGS cells. Cells were cultured in 100-mm dishes for 24 h, and then the cell layer was wounded by scraping. The medium was replaced with medium containing 1% FBS and Cf-GP (5, 10 and 20 μ g/ml). The denuded zone of cells was photographed using a microscope at ×200 magnification, and the degree of recovery was measured.
Figure 3.
Cf-GP induces apoptosis of the AGS cells. Cells cultured in 6-well plates were treated with Cf-GP (5, 10 and 20 μ g/ml) and then collected in medium containing 1% FBS. The percentages of apoptotic and necrotic cells were determined using a Muse Annexin V and Dead Cell kit as described in the Materials and methods. Cells in the early stage of apoptosis are Annexin V-positive and 7-AAD-negative, and those in late apoptosis are Annexin V-positive and 7-AAD-positive.
Figure 4.
Cf-GP dose-dependently alters the expression of growth-regulating factors in AGS cells. (A) Protein and (B) mRNA expression levels of TGF-β 1 , FAK, PI3K, AKT and the small GTPases Rho A, Rho B, Rac-1 and Cdc 42 in Cf-GP-treated (5, 10 and 20 μ g/ml). AGS cells were determined by western blot analysis and RT-PCR analysis, respectively, as described in Materials and methods.
Figure 5.
Cf-GP dose-dependently downregulates the expression of NF-κB and downregulates of IκB. (A) Protein and (B) mRNA expression levels of NF-κB and IκB in Cf-GP-treated (5, 10 and 20 μ g/ml) AGS cells were determined by western blot analysis and RT-PCR analysis, respectively, as described in the Materials and methods.
Figure 6.
Cf-GP dose-dependently downregulates the expression of integrins α ν , β 1 , β 3 and β 5 . Protein and mRNA expression levels of integrins α ν , β 1 , β 3 and β 5 in Cf-GP-treated (5, 10 and 20 μ g/ml) AGS cells were determined by (A) western blot analysis and (B) RT-PCR analysis, respectively, as described in Materials and methods.