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At least 19 recordsLinked to original sources

C-terminal opening mimics 'inside-out' activation of integrin alpha5beta1.

Integrins are adhesion molecules that convey signals both to and from the cytoplasm across the plasma membrane. In resting cells, integrins in a low affinity state can be activated by 'inside-out signaling', in which signals affecting integrin heterodimer cytoplasmic domains cause a conformational change in the integrin ligand-binding headpiece connected to the membrane by two long, approximately 16 nm stalks. Here we demonstrate a mechanism for conveying a conformational change over the long distance from the plasma membrane to the headpiece. We prepared soluble, alpha5beta1 integrin heterodimer extracellular fragments in which interactions between alpha- and beta-subunit cytoplasmic domains were replaced with an artificial clasp. Release of this C-terminal clasp by specific protease cleavage resulted in an approximately 14 nm separation of the stalks coupled to increased binding to fibronectin. This activation did not require any associated molecules or clustering and was observed with physiological concentrations of divalent cations. These findings suggest that the overall mechanism for integrin inside-out activation involves the spatial separation of the cytoplasmic and/or transmembrane domains.

Amino Acid Sequence↗

Post-translational modifications of alpha5beta1 integrin by glycosaminoglycan chains. The alpha5beta1 integrin is a facultative proteoglycan.

Cell-fibronectin interactions, mediated through several different receptors, have been implicated in a wide variety of cellular properties. Among the cell surface receptors for fibronectin, integrins are the best characterized, particularly the prototype alpha5beta1 integrin. Using [125I]iodine cell surface labeling or metabolic radiolabeling with sodium [35S]sulfate, we identified alpha5beta1 integrin as the only sulfated integrin among beta1 integrin heterodimers expressed by the human melanoma cell line Mel-85. This facultative sulfation was confirmed not only by immunoprecipitation reactions using specific monoclonal antibodies but also by fibronectin affinity chromatography, two-dimensional electrophoresis, and chemical reduction. The covalent nature of alpha5beta1 integrin sulfation was evidenced by its resistance to treatments with high ionic, chaotrophic, and denaturing agents such as 4 M NaCl, 4 M MgCl2, 8 M urea, and 6 M guanidine HCl. Based on deglycosylation procedures as chemical beta-elimination, proteinase K digestion, and susceptibility to glycosaminoglycan lyases (chondroitinase ABC and heparitinases I and II), it was demonstrated that the alpha5beta1 heterodimer and alpha5 and beta1 integrin subunits were proteoglycans. The importance of alpha5beta1 sulfation was strengthened by the finding that this molecule is also sulfated in MG-63 (human osteosarcoma) and HCT-8 (human colon adenocarcinoma) cells.

Cell Adhesion↗

Endostatin associates with integrin alpha5beta1 and caveolin-1, and activates Src via a tyrosyl phosphatase-dependent pathway in human endothelial cells.

Endostatin, the COOH-terminal fragment of collagen XVIII, is a potent inhibitor of angiogenesis and tumor growth. To understand the mechanisms behind endostatin action, we analyzed the plasma membrane- extracellular matrix interactions of recombinant human endostatin in cultured microvascular endothelial cells. We observed that endostatin induced rapid clustering of alpha5beta1 integrin associated with actin stress fibers and its concomitant colocalization with the membrane anchor protein caveolin-1. Furthermore, endostatin could be coimmunoprecipitated with alpha5beta1 and caveolin-1 from endothelial cell extracts. Endostatin treatment induced phosphatase-dependent activation of caveolin-associated Src family kinases. The disassembly of actin stress fibers and focal adhesions by endostatin was found to occur via activation of Src and in a tyrosyl phosphatase-dependent manner. The endostatin-treated cells void of the focal adhesions had impaired ability to deposit fibronectin into their extracellular matrices and were unable to migrate in response to basic fibroblast growth factor in a wounding experiment. These results indicate that recombinant endostatin interacts with alpha5beta1 integrin and caveolin-1 at the endothelial cell surface. In addition, the antimigratory effect of endostatin involves phosphatase-dependent Src activation and impaired cell-matrix interactions.

Actins↗

Increased expression of disintegrin-metalloproteinases ADAM-15 and ADAM-9 following upregulation of integrins alpha5beta1 and alphavbeta3 in atherosclerosis.

Regulation of alphavbeta3 and alpha5beta1 integrin function plays a crucial role in atherosclerosis. Possible regulators of integrin-matrix interactions are integrin-binding ADAMs (proteins with a disintegrin- and metalloproteinase-domain), like ADAM-15 and ADAM-9. Molecular interactions between ADAM-15, alpha5beta1, and alphavbeta3 have been demonstrated. ADAM-9 and ADAM-15 were found to be interdependently regulated. This study, therefore, investigated whether the upregulation of integrins alpha5beta1 and alphavbeta3 was correlated with the expression of integrin-binding ADAMs in atherosclerotic processes. Human arterial and venous vascular smooth muscle cells (VSMCs) were incubated with PDGF over different time intervals up to a 3-day culture period. mRNA concentrations, quantified by real-time RT-PCR and normalized to PBGD, of integrins alphavbeta3 and alpha5beta1 were strongly increased after a 12-h PDGF-incubation in arterial and venous VSMC. ADAM-15 and ADAM-9 mRNA production showed a corresponding increase following integrin upregulation after a 24-h incubation period. Western blot anaylsis revealed an increased protein expression of integrins and ADAMs in PDGF-stimulated VSMC. Additionally, mRNA concentrations of atherosclerotic and normal human specimens were quantified by real-time RT-PCR. mRNA of ADAMs and integrins was significantly increased in atherosclerotic arteries compared to normal arteries. Immunohistochemistry of these specimens showed an increased expression and codistribution of both ADAMs and integrins in atherosclerosis. In conclusion, upregulation of ADAM-15 and ADAM-9 in atherosclerosis appears to follow an increase in alpha5beta1 and alphavbeta3 integrins. Since alpha5beta1 and alphavbeta3 are known to promote smooth muscle cell migration and proliferation, upregulation of ADAM-15 and ADAM-9 could balance integrin-matrix interactions and cell migration, thus modulating neointima progression.

ADAM Proteins↗

Interaction of metargidin (ADAM-15) with alphavbeta3 and alpha5beta1 integrins on different haemopoietic cells.

Metargidin (ADAM-15) is a type I transmembrane glycoprotein belonging to the ADAM (A Disintegrin and Metalloprotease Domain) family of proteins and is widely expressed in different tissues and cell types. Members of this family contain an amino-terminal metalloprotease domain followed by a disintegrin domain, a cysteine-rich region and a membrane proximal EGF-like domain. The disintegrin domain of metargidin contains an RGD tripeptide sequence, suggesting that it may potentially interact with the integrin family of proteins. Here we identify integrin ligands for metargidin on haemopoietic cells, by using a chimeric protein containing the extracellular domain of metargidin fused to the Fc portion of human IgG. Binding activity to a panel of human cell lines was analysed by solid-phase cell-adhesion assays. Metargidin bound to a monocytic cell line, U937, and a T cell line, MOLT-4, in a specific manner. Adhesion was divalent cation- and temperature- dependent and strongly enhanced by Mn2+, all features of integrin-mediated binding. Using a panel of anti-integrin antibodies we show that alphavbeta3 is a ligand for metargidin on U937 cells. In contrast, for MOLT-4 cells, the integrin alpha5beta1 contributes to cell binding. Adhesion was mediated by the disintegrin domain of metargidin as RGD-based peptides inhibited cell binding to both cell lines. The specificity of the interaction between both alphavbeta3 and alpha5beta1 and metargidin was further confirmed by solid-phase adhesion assays using purified recombinant integrins. These results together indicate that metargidin can function as a cell adhesion molecule via interactions with alphavbeta3 and alpha5beta1 integrins.

ADAM Proteins↗

Aberrant N-glycosylation of beta1 integrin causes reduced alpha5beta1 integrin clustering and stimulates cell migration.

Altered expression of cell surface N-linked oligosaccharides is associatedwith the oncogenic transformation of many types of animal cells. One of the most common forms of glycosylation in transformed cells and human tumors is the highly elevated beta1,6 branching of N-linked oligosaccharides caused by increased transcription of N-acetylglucosaminyltransferase V (GnT-V). To characterize the effects of increased beta1,6 branching on cell-matrix adhesion-mediated phenotypes, human fibrosarcoma HT1080 cells were transfected with retroviral systems encoding GnT-V that used both noninducible and tetracycline-inducible promoters. Increased GnT-V expression resulted in a >25% inhibition of cell attachment to and a >50% inhibition of cell spreading on fibronectin. Both cell adhesion and spreading were suppressed by function-blocking antibodies specific for the alpha(5) and beta(1) integrin subunits of the fibronectin receptor. Cell migration toward fibronectin and invasion through Matrigel were both substantially stimulated in cells with induced expression of GnT-V. Induction of GnT-V had no effect on the level of cell surface expression of alpha(5) and beta(1) integrin subunits but did result in a more diffuse staining of the alpha(5) and beta(1) integrin subunits on the cell surface, suggesting that inhibition of integrin clustering may be causing these cells to be less adhesive and more motile. Surprisingly, there was no detectable expression of N-linked beta1,6 branching on the alpha(5) subunit purified from HT1080 cells before and after induction of GnT-V; by contrast, however, the beta(1) subunit showed a basal level of beta1,6 branching that was greatly increased after induction of GnT-V. These results suggest that changes in N-linked beta1,6 branching that occur during oncogenesis alter cell-matrix adhesion and migration by modulating integrin clustering and subsequent signal transduction pathways. These effects most likely result from altered N-linked carbohydrate expression on the beta(1) integrin subunit.

Actins↗

Expression of integrin alpha5beta1 and MMPs associated with epithelioid morphology and malignancy of uveal melanoma.

PURPOSE: Altered expression of the alpha5beta1 integrin and matrix metalloproteinases (MMPs) is recognized as a hallmark of invasive tumor cells. The purpose of the present study was to investigate the expression of integrin subunit alpha5, its corresponding ligand fibronectin (FN), and the expression pattern for MMPs in four highly proliferative human choroidal melanomas (TP17, TP31, SP8.0, and SP6.5) to evaluate whether any correlation can be established between these markers and cell tumorigenicity. METHODS: Cell tumorigenicity was evaluated by subcutaneous injection of uveal melanoma cell lines in immunodeficient nude mice. Anchorage dependency was evaluated by growth assays in soft agar. The invasive ability of each cell type was also determined using a modified Boyden chamber. Expression of both the alpha5 integrin subunit and FN was determined at the mRNA level by RT-PCR. The protein level (for alpha5) was determined by flow cytometry and inhibition of adhesion assays by using an antibody directed against the alpha5 subunit. Expression of MMPs was determined by standard gelatin zymography. RESULTS: Assays in nude mice provided evidence that the cell lines possess a range of tumorigenic ability of TP17>TP31>SP8.0>SP6.5. Antibody inhibition of cell adhesion and flow cytometry demonstrated that TP17 cells have no detectable membrane-bound alpha5beta1, whereas low levels are found in primary cultured melanocytes, as well as in SP6.5, SP8.0, and TP31 cells. RT-PCR analyses provided evidence that both FN and alpha5 expression may be regulated at the transcriptional level. Gelatin zymography revealed that all cell lines, as well as normal melanocytes, express MMP-2 at varying levels but that only the highly invasive TP17 cell line secretes a distinctive MMP with a high molecular weight of 117 kDa. CONCLUSIONS: Among the four melanoma cell lines selected for the completion of this study, TP17 exhibited the most aggressive phenotype, which also correlated with the mostly epithelioid morphology of these cells. The cell morphology of the TP17 cell line could be related to the loss of alpha5beta1, whereas its invasive properties are more likely related to the expression of the 117-kDa MMP.

Aged↗

An angiogenic laminin site and its antagonist bind through the alpha(v)beta3 and alpha5beta1 integrins.

Angiogenesis is important for wound healing, tumor growth, and metastasis. Endothelial cells differentiate into capillary-like structures on a laminin-1-rich matrix (Matrigel). We previously identified 20 angiogenic sites on laminin-1 (alpha1beta1gamma1) by screening 559 overlapping synthetic peptides. C16, the most potent gamma1 chain peptide, blocked laminin-1-mediated adhesion and was the only gamma1 chain peptide to block attachment to both collagen I and fibronectin. This suggested that C16 was acting via a receptor common to these substrates. We demonstrated that C16 is angiogenic in vivo. Affinity chromatography identified the integrins alpha5beta1 and alpha(v)beta3 as surface receptors. Blocking antibodies confirmed the role of these receptors in C16 adhesion. C16 does not contain an RGD sequence and, as expected, an RGD-containing peptide did not block C16 adhesion nor did C16 act via MAP kinase phosphorylation. Furthermore, we identified a C16 scrambled sequence, C16S, which antagonizes the angiogenic activity of bFGF and of C16 by binding to the same receptors. Because the laminin gamma1 chain is ubiquitous in most tissues, C16 is likely an important functional site. Since the biological activity of C16 is blocked by a scrambled peptide, C16S may serve as an anti-angiogenic therapeutic agent.

Amino Acid Sequence↗

Endothelial cell integrin alpha5beta1 expression is modulated by cytokines and during migration in vitro.

Alterations in endothelial cell-extracellular matrix interactions are central to the process of angiogenesis. We have investigated the effect of wound-induced two-dimensional migration, basic fibroblast growth factor (bFGF), transforming growth factor-beta1 (TGF-beta1) and leukemia inhibitory factor (LIF) on expression of the alpha5beta1 integrin in endothelial cells. In multiple-wounded monolayers of bovine microvascular endothelial (BME) cells, an increase in mRNA and total protein for both alpha5 and beta1 subunits was observed, and this could be correlated with a reduction in cell density but not proliferation, both of which are induced following wounding. Although as previously reported, the alpha5 subunit was increased when cells were exposed to TGF-beta1 alone, co-addition of bFGF and TGF-beta1 resulted in a striking synergistic induction of alpha5, with no significant changes in the expression of beta1. In contrast, the alpha5 subunit was decreased by LIF in bovine aortic endothelial but not in BME cells. These findings suggest that quantitative alterations in alpha5 and beta1 integrin subunit expression modulate the adhesive and migratory properties of endothelial cells during angiogenesis.

Animals↗

Decreased expression of membrane alpha4beta1, alpha5beta1 integrins and transferrin receptor on erythroblasts in splenectomized patients with beta-thalassemia intermedia. Parallel assessment of serum soluble transferrin receptors levels.

Dysfunction of cell membrane is a recognized consequence of the pathogenetic process underlying the beta-thalassemia syndromes and it is reasonable to hypothesize that surface structures crucial for the development of erythroid lineage may also be affected. The study included six adult splenectomized patients with beta-thalassemia intermedia. Expression of alpha4beta1 integrin (CD49d/CD29), alpha5beta1 integrin (CD49e/CD29) and transferrin receptor (CD71) on peripheral blood and bone marrow erythroblasts and on erythroid precursors grown in vitro was studied by flow cytometry and immunocytochemistry. Serum soluble transferrin receptor levels (sCD71) were also measured with enzyme-linked immunosorbent assay. In beta-thalassemic patients, significant reduction of CD49d, CD29 and CD71 expression was found in peripheral blood nucleated red cells, compared to patients presenting with erythroblasts in the circulation because of other diseases. Marrow erythroblasts were also deficient for the same molecules against the erythroblasts in iron deficiency anemia. All molecules tested were greatly diminished on erythroid precursors developed in vitro from the patients' cells. Serum sCD71 levels were much higher in thalassemic patients in comparison to both patients with iron deficiency anemia and healthy individuals. The loss of certain integrins and CD71 from erythroid precursors in beta-thalassemia intermedia could be attributed to a generalized membrane dysfunction, perhaps affecting the integrity of their transmembrane domains. The elevation of serum sCD71 levels may be the result of the increased red cell lineage turnover or, alternatively, may indicate increased shedding from the cells to prevent iron overload. In any case, further molecular study of the membrane components is warranted to provide a better understanding of the pathogenetic process in beta-thalassemia syndromes.

Adult↗

Ligation of integrin alpha5beta1 is required for internalization of vitronectin by integrin alphavbeta3.

Remodeling of the matrix by tumor cells is necessary for tumor invasion. We have shown previously that malignant astrocytomas, in contrast to normal astrocytes, synthesize vitronectin and express integrins alphavbeta3 and alphavbeta5. The activity states of these two integrins are differentially controlled. Thus, we investigated the regulation of the activity of integrins alphavbeta3 and alphavbeta5 with regard to their role in vitronectin internalization in U-251MG astrocytoma cell monolayers adherent to fibronectin, collagen, or laminin in serum-free conditions. Binding of [125I]vitronectin occurred in a specific, saturable manner that was partially inhibitable by monoclonal antibodies (mAbs) specific for integrins alphavbeta3 or alphavbeta5. Specific, lysosomally-mediated degradation of [125I]vitronectin was detectable at 1 h and increased over the 24-h assay period. The cell substrate affected the rate of turnover of [125I]vitronectin, which was 3.0 ng/min for cells plated on fibronectin but 0.35 ng/min for cells plated on collagen. Furthermore, although mAbs specific for either integrin alphavbeta3 or alphavbeta5 inhibited degradation (30%; combined effect 70%) of [125I]vitronectin by cells plated on fibronectin, only mAb anti-alphavbeta5 inhibited degradation (70-90%) by cells plated on collagen or laminin. To determine the requirement for integrin alpha5beta1 ligation in order for integrin alphavbeta3 to internalize its ligand, cells were plated on mAbs anti-integrin alpha5 or anti-integrin alpha3. When plated on mAb anti-alpha5, mAbs anti-alphavbeta3 and anti-alphavbeta5 both inhibited degradation. However, when plated on mAb anti-alpha3, mAb anti-alphavbeta3 had no effect whereas mAb anti-alphavbeta5 inhibited degradation. These data indicate that a signal from integrin alpha5beta1 is necessary for integrin alphavbeta3 to internalize vitronectin, whereas integrin alphavbeta5 constitutively internalizes vitronectin.

Astrocytoma↗

Integrin alpha5beta1: a potent inhibitor of experimental lung metastasis.

The integrin alpha5beta1 seems to be the most relevant receptor of tumor cells for binding to fibronectin. Although numerous studies suggest a role of tumor cell fibronectin interaction in tumor metastasis, differential integrin expression on tumor cells has, however, not been correlated with metastatic capabilities. We addressed this question by transfection of the integrin alpha5beta1 cDNA into HT-29 human colon carcinoma cells which led to de novo expression of functional integrin alpha5beta1. Similar to other reports, expression of the integrin alpha5beta1 in HT-29 tumor cells exerted an inhibitory action on cell proliferation as indicated in our study by formation of fewer colonies in soft agar. The tumor growth inhibitory property of the integrin alpha5beta1 was also shown by reduction of subcutaneous xenograft growth in nude mice to approximately 50% of that of control transfectants. For the first time, we found that several clones of integrin alpha5 subunit transfectants displayed dramatically reduced formation of lung colonies and cutaneous metastasis after intravenous injection into nude mice. While most animals inoculated with control transfectant cells formed macroscopically visible lung colonies ranging from 12.6 +/- 2.6 to 22.0 +/- 6.6 (mean colony number +/- SEM), mice inoculated with HT-29 cell clones expressing the integrin alpha5beta1 were almost completely free of lung colonies (ranging from 0.0 +/- 0 to 0.2 +/- 0.1). Our results imply that integrin alpha5beta1 expression inhibits circulating tumor cells in pursuing late steps of the metastatic process as represented by the artificial metastasis (lung colonisation) model.

Animals↗

alpha5beta1 integrin expression and luminal edge fibronectin matrix assembly by smooth muscle cells after arterial injury.

Fibronectin is secreted from the cell as a soluble protein that must then polymerize to regulate cell function. To elucidate the process of fibronectin matrix assembly in vascular disease, we immunostained sections of balloon-injured rat carotid artery for the fibronectin-binding alpha5beta1 integrin. Whereas alpha5beta1 integrin was not evident in the normal carotid artery, its expression was induced after a vascular injury. By 14 days, the alpha5beta1 integrin was localized exclusively to the less differentiated smooth muscle cells (SMCs) at the luminal surface of the neointima. Platelet-derived growth factor-BB, dominant in neointimal formation, selectively increased the expression of the alpha5beta1 integrin by human SMCs in culture. To track the assembly of fibronectin fibers, fluorescence-labeled soluble fibronectin protomers were added to cultured SMCs and to fresh segments of normal and balloon-injured rat carotid arteries. Fibronectin fiber formation in cultured SMCs could be detected within 10 minutes, and was blocked by an RGD peptide, an anti-beta1 integrin antibody, and an anti-alpha5beta1 integrin antibody, but not by an anti-beta3 integrin antibody. En face confocal microscopy of arterial segments revealed that soluble fibronectin had polymerized on the alpha5beta1 integrin-expressing SMCs of the luminal surface of the injured arterial neointima, but not on the alpha5beta1 integrin-negative neointimal SMCs below this or on the endothelial cells of uninjured arteries. Furthermore, in situ fibronectin assembly by the neointimal SMCs was inhibited by an RGD peptide and by an anti-beta1 integrin antibody. These studies indicate that a subpopulation of SMCs in the repairing artery wall orchestrates integrin-mediated fibronectin assembly.

Actins↗

Involvement of alpha5beta1 integrins in interleukin 8 production induced by oral viridans streptococcal protein I/IIf in cultured endothelial cells.

Using human endothelial cells, we define a mechanism that accounts for the induction of interleukin 8 (IL-8) by protein I/IIf, an adhesin from Streptococcus mutans serotype f. We report that protein I/IIf interactions with endothelial cells increased the tyrosine phosphorylation of three cellular components with relative mass of 145,000, 125,000 and 70,000 in endothelial cells. These proteins were identified as phospholipase Cgamma (PLCy), focal adhesion kinase (FAK) and paxillin after immunoprecipitation with monoclonal antibodies (mAbs) and immunoblotting with antiphosphotyrosine mAbs. These results suggested that beta1 integrins could be one of the components implicated in the modulin activity of protein I/IIf. By incubating protein I/IIf with either purified alpha5beta1 integrins or with alpha5beta1 integrins overexpressing CHO cells, we demonstrated that alpha5beta1 integrins act as cell receptors for protein I/IIf. We also showed that protein I/IIf interactions with alpha5beta1 integrins lead to IL-8 secretion. Using specific inhibitors, we demonstrated that protein I/IIf-induced IL-8 release involves mitogen-activated protein kinases (MAPKs), and that PLCgamma and PKC also seem to contribute to protein I/IIf stimulation. However, PI-3K activation is not involved in IL-8 release. Altogether, these results indicate that, after binding to alpha5beta1 integrins, protein I/IIf induces IL-8 release by activating the MAPKs signalling pathways.

Adhesins, Bacterial↗

Integrin modulating factor: a 30-kD protein that modulates the expression and function of alpha5beta1 integrin receptor.

The integrin family of cell surface receptors consists of transmembrane glycoproteins involved in cellular morphology, cytoarchitecture, cell-cell, and cell-extracellular matrix interaction. Changes in integrin receptor expression are associated with malignant transformation. The adhesion promoting activity of several members of the integrin receptors may be modulated. Integrin Associated Proteins and integrin modulating factor that may modulate integrin receptors expression and function have been reported. In this article, we report the identification of a 30-kD protein produced in SiHa cell culture medium that can modulate the expression and function of alpha5beta1 integrin receptor in HeLaS3 cells. The cell adhesion assay clearly demonstrated that HeLaS3 cells grown in a serum-free culture medium of SiHa cells (fresh medium: culture medium = 3:1) stimulated the ligand binding activity of alpha5beta1 receptor to fibronectin in a time-dependent manner, having a peak activity at 72 hours of culture. Immunocytochemical localization showed a very high expression of alpha5beta1 receptor in HeLaS3 cells grown in a SiHa culture medium for 72 hours. The (NH4)2SO4 fractionation demonstrated that proteins present in 80-100% (NH4)2SO4 saturated fraction of serum-free SiHa culture medium have a significant stimulatory effect on the binding of HeLaS3 cells to fibronectin ligand via the alpha5beta1 integrin receptor. High pressure liquid chromatography (HPLC) separation of 80-100% (NH4)2SO4 saturated fraction showed a 30- kD protein in polyacrylamide gel electrophoresis (PAGE) analysis that has a maximum stimulatory effect on the binding of HeLaS3 cells to fibronectin ligand via the alpha5beta1 integrin receptor. In conclusion, our observations indicated that human cervical tumor cells SiHa produce a 30-kD protein that can modulate the expression and function of alpha5beta1 fibronectin integrin receptor of HeLaS3 cells. These findings strengthen the concept that some cellular proteins, also called Integrin Associated Protein, may regulate the integrin receptor expression and function. Studies are in progress to characterize this 30-kD integrin modulating factor and its role in the regulation of integrin receptor function.

Binding Sites↗

Alpha5beta1 integrin as a cellular coreceptor for human parvovirus B19: requirement of functional activation of beta1 integrin for viral entry.

Replication of the pathogenic human parvovirus B19 is restricted to erythroid progenitor cells. Although blood group P antigen has been reported to be the cell surface receptor for parvovirus B19, a number of nonerythroid cells, which express P antigen, are not permissive for parvovirus B19 infection. We have documented that P antigen is necessary for parvovirus B19 binding but not sufficient for virus entry into cells. To test whether parvovirus B19 utilizes a cell surface coreceptor for entry, we used human erythroleukemia cells (K562), which allow parvovirus B19 binding but not entry. We report here that upon treatment with phorbol esters, K562 cells become adherent and permissive for parvovirus B19 entry, which is mediated by alpha 5 beta 1 integrins, but only in their high-affinity conformation. Mature human red blood cells (RBCs), which express high levels of P antigen, but not alpha 5 beta 1 integrins, bind parvovirus B19 but do not allow viral entry. In contrast, primary human erythroid progenitor cells express high levels of both P antigen and alpha 5 beta 1 integrins and allow beta1 integrin-mediated entry of parvovirus B19. Thus, in a natural course of infection, RBCs are likely exploited for a highly efficient systemic dissemination of parvovirus B19.

Cell Adhesion↗

All-trans-retinoic acid increased the expression of integrin alpha5beta1 and induced "anoikis" in SMMC-7721 hepatocarcinoma cell.

It is extensively shown that integrin can regulate various cellular functions, including apoptosis, probably by contributing to signal transduction processes through interaction with extracellular matrix (ECM) proteins. In the present study, DNA flow cytometric analysis demonstrated that SMMC-7721 hepatocarcinoma cells treated with 80 microM all-trans-retinoic acid (atRA) showed an increased expression of the integrin alpha5beta1, which was associated with the growth inhibition of the cells. We found that atRA treated cells showed obvious apoptosis. Then, it was postulated that the enhanced content of integrin alpha5beta1 in the absence of ligation with fibronectin (Fn) would stop transducing survival signals, and lead to decreased cell growth and apoptosis. To elucidate this hypothesis, we cultured the atRA treated cell in L-poly-lysine-coated and Fn-coated flask, respectively. The results indicated that Fn binding prevented the cells from apoptosis induced by atRA, in contrast to L-poly-lysine binding. When the transfectant with enhanced expression of integrin alpha5beta1 at the same level of atRA treated cell was cultured in L-poly-lysine-coated flask, apoptosis was triggered. However, apoptotic cell was not detected when those cells were cultured in Fn-coated flask. Meanwhile, culturing the transfectant in the antibody (against integrin alpha5 subunit)-coated flask induced 18.33% of the cells into apoptosis, which is far more than the control group. Our study suggests that increased expression of integrin alpha5beta1 on the surface of SMMC 7721 hepatocarcinoma cell treated by atRA, when unbound to Fn, would stop transducing survival signals to lead to "anoikis", and can be reverted by the interaction of integrin alpha5beta1 with Fn.

Anoikis↗

Two-stage activation for alpha5beta1 integrin binding to surface-adsorbed fibronectin.

By analyzing the functional binding of alpha5beta1 integrin to adsorbed fibronectin in intact cells, we demonstrate that integrin activation results in linear increases in adhesion strength as a function of ligand density, suggesting that modulation of the receptor-ligand interaction is the dominant mechanism for adhesion during the initial stages of adhesion and that cooperative binding contributes little to initial adhesion strength. Using this experimental framework, we show the existence of three distinct activation states for alpha5beta1 integrin binding to adsorbed fibronectin for both passive, antibody-induced and active, cell-controlled activation. During the initial phase of adhesion, alpha5beta1 integrin is activated in an energy-dependent process from the nonbinding ground state to an intermediate state in which the receptor binds fibronectin and provides significant mechanical coupling. In later stages of adhesion maturation, alpha5beta1 integrin is activated to a higher binding state, which provides significant increases in adhesion strength compared with the intermediate state. These multiple binding states most likely result from different integrin conformations and reflect distinct interactions between alpha5beta1 and sites on adsorbed fibronectin. Multiple activation states for alpha5beta1 suggest the existence of distinct stages in adhesion signaling and strengthening and can provide a versatile mechanism for the regulation of adhesive interactions.

Adsorption↗