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The fibronectin-derived anti-adhesive peptide III14-2 suppresses adhesion and apoptosis of leukemic cell lines through down-regulation of protein-tyrosine phosphorylation.

We previously found that fibronectin (FN) has a cryptic functional site (YTIYVIAL, #1848-1855) opposing to cell adhesion to extracellular matrix (ECM). The present study demonstrates that the FN peptide containing this anti-adhesive site, termed peptide III14-2, affects programmed cell death (PCD) (apoptosis) as well as cell adhesion by down-regulating protein-tyrosine phosphorylation. Peptide III14-2 suppressed the integrin alpha5beta1-mediated adhesion of leukemic cell lines (K562 and HL60), and protein tyrosine phosphatase inhibitor, 1 microM phenylarsine oxide (PAO) blocked the anti-adhesive effect of peptide III14-2. These leukemic cells underwent PCD when exposed to PAO at the higher concentration (5 microM), as judged by nuclear and DNA fragmentations, and which was reversed by tyrosine kinase inhibitor, genistein. Peptide III14-2 suppressed the PAO-induced PCD, whereas a control peptide in which the anti-adhesive sequence YTIYVIAL is scrambled, was inactive. Western blotting showed that PAO stimulated the tyrosine phosphorylation of cellular proteins including focal adhesion kinase and that peptide III14-2 inhibited them, suggesting that protein-tyrosine phosphorylation represents a common early signal for the adhesion and PCD. The anti-adhesive site of FN molecule may play a crucial role also in a variety of cellular processes other than adhesion and PCD by down-regulating protein-tyrosine phosphorylation.

Apoptosis↗

Analysis of IL-2, IFN-gamma and TNF-alpha production, alpha5 beta1 integrins and actin filaments distribution in peritoneal mouse macrophages treated with homeopathic medicament.

The newer forms of immune modulatory therapy are aimed at specific cells or cytokines that contribute to the immune response. These forms of immunotherapy have been referred to as 'biological response modifiers'. Our lab was interested in investigating if a homeopathic medicament 'Metodo Canova' (MC), sold in homeopathic drugstores, does enhance immunological system responses acting through macrophages pathway. Mice peritoneal macrophages were cultivated with or without homeopathic medicament for 24 h for alpha5, beta1 and actin filaments distribution analyses through immunolabelling for confocal microscopy. To detect the IL-2, IFN-gamma and TNF-alpha production these cells were cultivated for 48 h with or without medicament, followed by analyses of these cytokines in supernatant culture with ELISA kits. It was observed differences in morphology and molecular distribution (alpha5 and beta1 integrins, actin filaments and Fc receptors) between the groups control and treated with MC. In control group macrophages had the morphology of resident cells and in MC treated group macrophages were more spread, had many cellular projections and a substantial increase in cytoplasmic volume. In addition, macrophages culture with two doses of MC showed that TNF-alpha production decreased when compared with control group.

Actin Cytoskeleton↗

[Stem cell factor enhances the adhesion of hematopoietic cells to fibronectin].

Adhesion to extracellular matrix plays important roles in the regulation of survival, proliferation, differentiation and homing of hematopoietic cells and is regulated by a wide variety of growth factors, adhesion receptors and other ligands that mediate the cell to matrix and cell to cell interaction. Stem cell factor (SCF) plays important roles in the regulating growth and self-renewal of hematopoietic stem/progenitor cells. In the report, the effects of stem cell factor on the adhesion of hematopoietic cells to fibronectin were observed by using a hematopoietic growth factor dependent cell line-Mo7e. Results showed that Mo7e cells express the very late antigen VLA-4 (beta1 alpha4) and VLA-5 (beta1 alpha5) integrins. The expression of the SCF receptor (c-kit) was also detected in the Mo7e cells. SCF enhances the adhesion of Mo7e cells to fibronectin in a concentration dependent manner. SCF enhanced adhesion of Mo7e cells to fibronectin was blocked by anti-beta1, alpha4 and alpha5 antibodies. Addition of PI-3 kinase inhibitors also blocked the adhesion of Mo7e cells to fibronectin induced by SCF. It was concluded that SCF enhances the adhesion of Mo7e cells to fibronectin, and this process is mediated by integrins and PI-3 kinase pathway.

Antibodies, Monoclonal↗

[TGF-beta 1 rapidly reduced hepatocarcinoma cells adhesion on to fibronectin and stimulated FAK dephosphorylation].

In order to investigate whether TGF-beta 1 could rapidly regulate integrin induced signaling, we treated SMMC-7721 human hepatocellular carcinoma cells with human recombinant TGF-beta 1 for 10 min, and examined cell adhesion, integrin amount and FAK tyrosine phosphorylation. We used cell adhesion assay to estimate the affinity of alpha 5 beta 1 integrin with fibronectin, and analyzed the amount of integrin alpha 5 and beta 1 subunits by performing FACS analysis. Then western blot analysis was carried out to examine tyrosine phosphorylation level of FAK. Our results showed that TGF-beta 1 could rapidly attenuated cell adhesion onto Fn without changing the expression of alpha 5 beta 1 integrin, and at the meantime dephosphorylated FAK. It suggested that TGF-beta 1 rapidly regulated the activation of integrin, and stimulated FAK dephosphorylation, which might induce depolarization in SMMC-7721 hepatocellular carcinoma cells, then facilitates the detachment of tumor cells at early stages of migration.

Carcinoma, Hepatocellular↗

[GnT-V overexpression in human hepatocarcinoma cells affects its migration and expression of cell adhesion molecules].

The purpose of this paper is to study the effect of N-acetylglucosaminyltransferase V (GnT-V) overexpression on the migration of 7721 cells and its mechanism. The abilities of migration of both 7721 cells transfected with GnT-V cDNA and 7721 cells transfected with pcDNA3 was detected, the expressions of integrin and E-cadherin which are important adhesion molecules on surface membrane and closely related to the abilities of invasion and metastasis. Cell migration abilities were measured by the agarose drop explant method. Flow cytometric analysis (FACS) was applied to determine the relative amounts of integrin alpha 5 and beta 1 subunits on the cell surface while RTPCR was carried out to determine the expression of their mRNA. The expression of E-cadherin was examined by the immunocytochemical ABC method. Western blot analysis was carried out to examine the expression of beta-catenin. GnT-V overexpression enhanced evidently the migration ability of 7721 cells and increased the amount of integrin alpha 5 subunit to 2.9 times of that of control while the amount of beta 1 subunits was not significantly changed. Besides, the expressions of E-cadherin and beta-catenin were enhanced at different levels in GnT-V/7721 cells compared with mocked. The results suggested that the overexpression of GnT-V related to the production of N-linked sugar chains could promote the expressions of integrin, E-cadherin and beta-catenin on 7721 cells so that the migration ability of tumor cells was enhanced.

Cadherins↗

[Restoring beta1 integrin activation function in K562 cells transfected with antisense VEGF121 cDNA].

To investigate the effect of vascular endothelial growth factor (VEGF) on beta1 integrin (VLA-4 and VLA-5) activation ability in K562 cells transfected with antisense VEGF121 cDNA, K562 cells were transfected with antisense (As), sense (S) and vector (V, pcDNA(3)). Flow cytometry was used to evaluate the expression rate of VLA-4 (CD49d/CD29) and VLA-5 (CD49e/CD29) and beta1 integrin activation ability in the transfected K562 cells. The results showed that the expression rates of VLA-4 and VLA-5 were more than 92% in the transfected K562 cells and there was no difference among the K562/V, K562/S and K562/As cells. However, beta1 integrin activated 9EG7 expression rate in K562/As cells was higher than that in K562/V cells [(75.6 +/- 10.5)% vs (41.2 +/- 2.1)%, P < 0.01)] after activation with beta1 integrin activator 8A2. It is concluded that function of beta1 integrin to be activated is restored in K562 cells transfected with antisense VEGF121 cDNA.

DNA↗

[Study on the effect of integrin on human sperm activation].

OBJECTIVE: This study was aimed to disclose whether the VLA-5 integrin on human sperm membrane takes part in the activation of human spermatozoa. METHODS: Fluo-3/AM was coincubated with human spermatozoa. The change of intracellular calcium([Ca2+]i) was determined by flow cytometry when human sperms were exposed to Fibronectin(Fn) as the specific ligand of integrin VLA-5. Human sperm acrosome reaction(AR) rate was evaluated by triple-stain technique. RESULTS: Fn significantly raised the AR rate (P < 0.05) and the level of [Ca2+]i (P < 0.01) in the spermatozoa of fertile men. But there was no significant rise in the level of [Ca2+]i in the spermatozoa of infertile men. CONCLUSION: The VLA-5 integrin on human sperm membrane plays a role in the activation of sperm.

Acrosome Reaction↗

[The study of interaction between the osteoblast and bio-derived material by detecting the gene expression].

OBJECTIVE: To study the gene expressions of human osteoblasts during the construction of tissue engineered bone with the bio-derived material. METHODS: The fetal osteoblasts were used to construct tissue engineered bone with the bio-derived material and then were cultured 2, 4, 6, 8 and 10 days in vitro. Real-time PCR analysis indicated that Cbfa 1, Osterix, Collagen type I, osteocalcin (OC) and Integrin alpha5 and beta1 were present in osteoblasts with bio-derived materials. Results The change of Cbfa1 was consistent with the change of Osterix. On 2nd day and 8th day, the expression of Osterix in experimental group was higher than that in control group, P<0.05. Collagen type I's change was consistent with change of OC expression, and its expression was higher in experimental group than that in control group on 2nd, 4th, 6th and 8th day. The Integrin expression was high all along. Conclusion The important genes can be expressed normally by integrating osteoblasts with bio-derived scaffolds. As skeleton tissue engineering scaffold, the bio-derived bone is conducive to keep the osteoblast's phenotype and differentiation with osteo-conductive ability. The osteoblast can enter proliferation stage favorably and the scaffold materials exert no effects on it. Bio-derived bone can also supply more space for cells to proliferate. The bio-derived materials promote osteoblasts adhesion.

Adult↗

[Correlation between integrin subunits alpha5 and beta1 expressions in prostate cancer and its clinical implication].

OBJECTIVE: To explore the correlation between the expression of integrin subunits alpha5 and beta1 in prostate cancer (PCa) and its clinicopathological data including tumor grade and clinical stage. METHODS: Expressions of integrin subunits alpha5 and beta1 were examined in 30 cases of PCa and 30 cases of normal prostatic tissues by immunohistochemical assay. RESULTS: Expressions of integrin subunits alpha5 and beta1 in PCa were lower than those in normal prostatic tissues (P <0.05) respectively. CONCLUSION: Compared with normal prostatic tissues, expressions of integrin subunits alpha5 and beta1 in PCa were rather weaker or even faded. Expressions of integrin subunits alpha5 and beta1 revealed an positive correlation with tumor's Gleason grade and negative with clinical TNM stage. The results indicate that integrin subunits alpha5 and beta1 have potential values in the diagnosis and are predictable indices in the proliferation of PCa.

Aged↗

[Effect of epidermal growth factor signal pathway on integrin alpha5 beta1 in prostate cancer cell line DU145].

OBJECTIVE: To investigate the molecular mechanism of epidermal growth factor (EGF) signal pathway on the expression of integrin alpha5 beta1 in prostate cancer cell line DU145. METHODS: Using flow-cytometry, the effects of EGF and the mitogen-activated protein kinase (MAPK) signal pathway inhibitor PD98059 on the expression of integrin alpha5 and beta1 subunits on DU145 cell surface were analyzed. RT-PCR and Western blot methods were used to examined the expression of mRNA and cell total protein of integrin alpha5 and beta1 subunits. And the metastatic phenotypes in DU145 cell were investigated. RESULTS: The expression levels of integrin alpha5 beta1, which was the receptor for fibronectin, were changed. EGF up-regulated the protein and mRNA expression of beta1 subunit on DU145 cell surface, 231% and 248% (P < 0.01) compared to the control respectively, and it could significantly promote the ability of DU145 cell adhesion to fibronectin and migration. However PD98058, which was the inhibitor of MAPK signal pathway, down-regulated the protein and mRNA expression of beta1 subunit, 60% and 63% (P < 0.01) compared to the control respectively, and it had the contrary function on the adhesion and migration ability of DU145 cell. But both had no effect the expression of alpha5 subunit. CONCLUSIONS: EGF might promote the metastatic ability mainly by up-regulating the expression of beta1 subunit by activating MAPK signal pathway in DU145 cells. Their regulation effects are on the mRNA transcriptional level.

Cell Adhesion↗

alpha4beta1 integrin regulates lamellipodia protrusion via a focal complex/focal adhesion-independent mechanism.

alpha4beta1 integrin plays an important role in cell migration. We show that when ectopically expressed in Chinese hamster ovary cells, alpha4beta1 is sufficient and required for promoting protrusion of broad lamellipodia in response to scratch-wounding, whereas alpha5beta1 does not have this effect. By time-lapse microscopy of cells expressing an alpha4/green fluorescent protein fusion protein, we show that alpha4beta1 forms transient puncta at the leading edge of cells that begin to protrude lamellipodia in response to scratch-wounding. The cells expressing a mutant alpha4/green fluorescent protein that binds paxillin at a reduced level had a faster response to scratch-wounding, forming alpha4-positive puncta and protruding lamellipodia much earlier. While enhancing lamellipodia protrusion, this mutation reduces random motility of the cells in Transwell assays, indicating that lamellipodia protrusion and random motility are distinct types of motile activities that are differentially regulated by interactions between alpha4beta1 and paxillin. Finally, we show that, at the leading edge, alpha4-positive puncta and paxillin-positive focal complexes/adhesions do not colocalize, but alpha4beta1 and paxillin colocalize partially in ruffles. These findings provide evidence for a specific role of alpha4beta1 in lamellipodia protrusion that is distinct from the motility-promoting functions of alpha5beta1 and other integrins that mediate cell adhesion and signaling events through focal complexes and focal adhesions.

Animals↗

Anti-lipid phosphate phosphohydrolase-3 (LPP3) antibody inhibits bFGF- and VEGF-induced capillary morphogenesis of endothelial cells.

BACKGROUND: Angiogenesis, or the remodeling of existing vasculature serves as a lifeline to nourish developing embryos and starved tissues, and to accelerate wound healing, diabetic retinopathy, and tumor progression. Recent studies indicate that angiogenesis requires growth factor activity as well as cell adhesion events mediated by alpha5beta1 and alphavbeta3 integrins. We previously demonstrated that human lipid phosphate phosphohydrolase-3 (LPP3) acts as a cell-associated ligand for alpha5beta1 and alphavbeta3 integrins. Here, we test the hypothesis that an anti-LPP3 antibody can inhibit basic fibroblast growth factor (bFGF)-and vascular endothelial growth factor (VEGF)-induced capillary morphogenesis of endothelial cells (ECs). RESULTS: We report that bFGF and VEGF up-regulate LPP3 protein expression in ECs. Immunoprecipitation analyses show that LPP3 is a cell surface protein and undergoes N-glycosylation. Fluorescent activated cell sorting (FACS) data suggest that anti-LPP3-RGD detects native neoepitope on the surface of activated ECs. Moreover, we demonstrate LPP3 protein expression in tumor endothelium alongside VEGF. The embedding of ECs into three-dimensional type I collagen in the presence of bFGF and VEGF induce capillary formation. Importantly, we show that the addition of an anti-LPP3 antibody specifically and significantly blocks bFGF- and VEGF-induced capillary morphogenesis of ECs. CONCLUSION: These data suggest that activated ECs as well as tumor endothelium express LPP3 protein. In an in vitro assay, the anti-LPP3-RGD specifically blocks bFGF and VEGF induced capillary morphogenesis of ECs. Our results, therefore, suggest a role for LPP3 in angiogenesis.

Journal Article↗

Beta1 integrins show specific association with CD98 protein in low density membranes.

BACKGROUND: The CD98 (4F2, FRP-1) is a widely expressed cell surface protein heterodimer composed of a glycosylated heavy chain and a non-glycosylated light chain. Originally described as a T cell activation antigen, it was later shown to function in amino acid transport, cell fusion and homotypic cell aggregation. Several lines of evidence suggest its functional interaction with integrins but the biochemical basis for this interaction has been unclear. RESULTS: We demonstrate that CD98 constitutively and specifically associates with beta1 integrins (alpha2beta1,alpha3beta1, alpha5beta1 and alpha6beta1), but minimally with alpha4beta1. Integrin-CD98 association was established by reciprocal immunoprecipitation experiments, and confirmed by CD98-induced clustering of alpha3beta1 but not alpha4beta1 on the surface of rhabdomyosarcoma cells. Integrin-CD98 association is independent of the alpha subunit cytoplasmic tail, is maintained in alpha3beta1 ligand-interaction deficient mutants, and is not inhibited by EDTA. Within the CD98 heavy chain, a C109S mutation (but not a C330S mutation) caused a loss of beta1 integrin association. The same C109S mutation also caused a loss of CD98 light chain association. Importantly, CD98 associated selectively with beta1 integrins present in low density "light membrane" fractions on a sucrose gradient. CD98 was not present in dense fractions that contained the majority of beta1 integrins. Notably, the C109S mutant of CD98, that did not associate with beta1 integrins, showed also a reduced localization into light membrane fractions. CONCLUSIONS: We demonstrate that CD98 association with beta1 integrins is specific, occurs in the context of low density membranes, and may require the CD98 light chain.

3T3 Cells↗

Urokinase-type plasminogen activator receptor is involved in mediating the apoptotic effect of cleaved high molecular weight kininogen in human endothelial cells.

Cleaved high molecular weight kininogen (HKa) has been shown to inhibit in vivo neovascularization and induce apoptosis of endothelial cells. We have shown that HKa-induced apoptosis correlated with its antiadhesive effect and was regulated by extracellular matrix (ECM) proteins. In this study, we identified the urokinase-type plasminogen activator receptor (uPAR) as a target of HKa activity at the endothelial cell surface. Anti-uPAR antibodies blocked the apoptotic effect of HKa. Further studies revealed that uPAR formed a signaling complex containing integrin alpha(v)beta3 or alpha5beta1, caveolin, and Src kinase Yes in endothelial cells. HKa physically disrupted the formation of this complex in a manner that paralleled its apoptotic effect. For the first time, our results provide a mechanistic explanation for the previous observation that HKa selectively induces apoptosis of endothelial cells grown on vitronectin, but not cells grown on fibronectin. These data also resolve the controversial role of uPAR in mediating the apoptotic and antiadhesive activities of HKa.

Antibodies, Monoclonal↗

alphaVbeta8 integrin is a Schwann cell receptor for fibrin.

The interaction of Schwann cells with molecules in the extracellular environment following peripheral nerve injury is a critical aspect of nerve repair. A principal component of this material is fibrin, which derives from fibrinogen infiltrating into the nerve after the injury. This study was undertaken to identify cell surface receptor(s) that mediate the interaction of Schwann cells with fibrin. We found that adhesion of Schwann cells to fibrin could be effectively inhibited by low concentrations of RGD-containing peptides. Among RGD-sensitive integrins expressed by Schwann cell, alphaVbeta8, but not alpha5beta1, was found to bind to fibrin-Sepharose. In contrast, both of these integrins bound to fibronectin-Sepharose. We also found that alphaV, but not alpha5 or beta1 integrin subunit, accumulated in focal contacts of Schwann cell plated on fibrin. Taken together, these results strongly suggest that alphaVbeta8 integrin is a Schwann cell receptor for fibrin.

Animals↗

Heparin II domain of fibronectin uses alpha4beta1 integrin to control focal adhesion and stress fiber formation, independent of syndecan-4.

Co-signaling events between integrins and cell surface proteoglycans play a critical role in the organization of the cytoskeleton and adhesion forces of cells. These processes, which appear to be responsible for maintaining intraocular pressure in the human eye, involve a novel cooperative co-signaling pathway between alpha5beta1 and alpha4beta1 integrins and are independent of heparan sulfate proteoglycans. Human trabecular meshwork cells isolated from the eye were plated on type III 7-10 repeats of fibronectin (alpha5beta1 ligand) in the absence or presence of the heparin (Hep) II domain of fibronectin. In the absence of the Hep II domain, cells had a bipolar morphology with few focal adhesions and stress fibers. The addition of the Hep II domain increased cell spreading and the numbers of focal adhesions and stress fibers. Cell spreading and stress fiber formation were not mediated by heparan sulfate proteoglycans because treatment with chlorate, heparinase, or soluble heparin did not prevent Hep II domain-mediated cell spreading. Cell spreading and stress fiber formation were mediated by alpha4beta1 integrin because soluble anti-alpha4 integrin antibodies inhibited Hep II domain-mediated cell spreading and soluble vascular cell adhesion molecule-1 (alpha4beta1 ligand)-induced cell spreading. This is the first demonstration of the Hep II domain mediating cell spreading and stress fiber formation through alpha4beta1 integrin. This novel pathway demonstrates a cooperative, rather than antagonistic, role between alpha5beta1 and alpha4beta1 integrins and suggests that interactions between the Hep II domain and alpha4beta1 integrin could modulate the strength of cytoskeleton-mediated processes in the trabecular meshwork of the human eye.

Binding Sites↗

S-phase delay in human hepatocellular carcinoma cells induced by overexpression of integrin beta1.

AIM: To clarify the mechanisms of integrin overexpression in negatively regulating the cell cycle control of hepatocellular carcinoma cells SMMC-7721. METHODS: The cell cycle pattern was determined by flow cytometry. The mRNA and protein expression levels were assayed by RT-PCR and Western blot, respectively. Stable transfection was performed by Lipofectamine 2000 reagent, and cells were screened by G418. RESULTS: Overexpression of alpha5beta1 or beta1 integrin induced S-phase delay in SMMC-7721 cells, and this delay was possibly due to the accumulation of cyclin-dependent kinase inhibitors (CKIs) p21(cip1) and p27(kip1). The decrease of protein kinase B (PKB) phosphorylation was present in this signaling pathway, but focal adhesion kinase (FAK) was not involved. When phosphorylation of PKB was solely blocked by wortmannin, p27(kip1) protein level was increased. Moreover, S-phase delay was recurred when attachment of the parental SMMC-7721 cells was inhibited by the preparation of poly-HEME, and this cell cycle pattern was similar to that of beta1-7721 or alpha5beta1-7721 cells. CONCLUSION: S-phase delay induced by overexpression of integrin beta1 subunit is attributed to the decrease of PKB phosphorylation and subsequent increases of p21(cip1) and p27(kip1) proteins, and may be involved in the unoccupied alpha5beta1 because of lack of its ligands.

Carcinoma, Hepatocellular↗