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Cell-collagen adhesion is inhibited by monoclonal antibody 33.4 against the rat alpha 1-integrin subunit.

A monoclonal antibody (mAb 33.4) is described which inhibits the adhesion and spreading of an adherent cell line (A-cells), established from Morris hepatoma 7777 and isolated hepatocytes on collagen IV but not on laminin, fibronectin, and vitronectin. mAb 33.4 retains its immunological activity after immobilization and covalent cross-linking to Protein G-Sepharose and is therefore a suitable tool for the preparative equimolar purification of two proteins with M(r) of 130 and 190 kDa from detergent-solubilized membrane fractions by immunoaffinity chromatography. The 190-kDa protein was identified as rat alpha 1-integrin subunit by N-terminal amino acid sequencing, while the 130-kDa protein was specifically stained by a beta 1-integrin subunit-specific antiserum. In immunoblot analysis mAb 33.4 recognized the 190-kDa band, suggesting that it is specific for the rat alpha 1-integrin subunit. The epitope recognized by mAb 33.4 is conformation-dependent because the staining in immunoblots was very strong if the SDS-PAGE was performed in the absence of reducing agents. The expression of alpha 1 beta 1-integrin in sinusoidal hepatocyte membrane domains of liver sections is shown by mAb 33.4 and antisera raised against the rat alpha 1- and beta 1-integrin subunits.

Animals↗

Expression of N-CAM by human renal cell carcinomas correlates with growth rate and adhesive properties.

In the present study we provide evidence for the involvement of N-CAM in the spreading of human renal cell carcinomas (RCC) through the interaction with the subendothelial matrix. We found that in tumor cell lines derived from human RCC the increase of growth rate and the loss of adhesiveness to inert substrate were accompanied by N-CAM expression and by the appearance of specific binding to endothelial heparan sulfate. Indeed, the adhesion of tumor cells to human endothelial cells and heparan sulfate in vitro was inhibited by monoclonal antibodies able to bind and inactivate N-CAM and was abrogated by endothelial cell treatment with heparitinase. Furthermore, when the renal epithelial cell line COS7 was transfected with a cDNA coding for N-CAM a significant increase in the ability to bind both endothelium and heparan sulfate in vitro was observed. Of note, HS complexed with epithelial growth factor could enhance the proliferation of RCC-derived tumor cells; this effect was also achieved by cross-linking of N-CAM at the surface of tumor cells, suggesting that N-CAM could transduce an activation signal across the cell membrane. This was also supported by the finding that N-CAM cross-linking induced a strong calcium mobilization from internal stores and opening of surface calcium channels in such tumor cells. N-CAM was detectable in vivo at the tumor site in the areas of active proliferation, as judged by the coexpression of Ki67 nuclear antigen, and heparan sulfate was present in the wall of blood vessels in the proximity of the tumor. These findings would suggest that growing kidney tumors might use N-CAM to bind the subendothelial matrix and complexed growth factors during tissue invasion and spreading.

Carcinoma, Renal Cell↗

Expression of the polysialyltransferase ST8SiaIV: polysialylation interferes with adhesion of PC12 cells in vitro.

Addition of polysialic acid (PSA) to the neural cell adhesion molecule, NCAM, represents a unique posttranslational modification. Polysialylation of NCAM is developmentally regulated and associated with neural regeneration and plastic processes, as well as learning and memory. Two enzymes, the polysialyltransferases ST8SiaII and ST8SiaIV, are known to be involved in the polysialylation of NCAM. Both enzymes are individually capable of catalyzing polysialylation of NCAM, but their time of occurrence and their tissue expression are different. In this study the influence of polysialylation on the nerve growth factor-induced differentiation of PC12 cells was investigated. For this purpose, PC12 cells, which endogenously express NCAM, were transfected with ST8SiaIV to produce, for the first time, a stable polysialylated PC12 cell. We demonstrate that integrin-dependent adhesion to collagen I is reduced in PSA-expressing PC12 cells. Furthermore, polysialylated cell membranes as matrix are a poor substrate for the adhesion and differentiation of PC12 cells, compared with normal cell membranes.

Animals↗

Chlamydia trachomatis does not bind to alpha beta 1 integrins to colonize a human endometrial epithelial cell line cultured in vitro.

Chlamydia trachomatis is the leading cause of bacterially acquired sexually transmitted diseases in the United States and Europe. As an obligate intracellular pathogen, this bacterium must invade epithelial cells in order to survive and grow. Thus, multiple strategies probably exist for initial binding of chlamydiae to their target cells. Since a variety of bacteria have exploited integrins to colonize tissues, and a precedent existed for the involvement of extracellular matrix components in chlamydial attachment, this study first analyzed, by flow cytometry, integrins expressed by the human endometrial epithelial cell line HEC-1B. The genital cells were then exposed to monoclonal antibodies directed against those integrins and assayed for chlamydial attachment and inclusion development. Monoclonal antibodies bound to the alpha and/or beta 1 subunit of classic integrin receptors displayed by HEC-1B cells were not able to prevent colonization and infection of the epithelial cells by a genital isolate of C. trachomatis.

Antibodies, Monoclonal↗

Distribution and quantification of alpha 1-integrin subunit in rat organs.

The alpha 1 beta 1-integrin is known to be a receptor for collagen and laminin mediating cell-matrix interactions. A monoclonal antibody, 33.4, which specifically inhibits the alpha 1-integrin-mediated in vitro cell-collagen binding of rat hepatocytes and hepatoma-derived A-cells (Löster et al., 1994), was used to purify by immunoaffinity chromatography the alpha 1-integrin subunit from rat liver in large quantities for inducing a polyclonal antiserum. In immunoblot analysis on membrane extracts of several rat organs this polyclonal antiserum recognized only a 190 kDa-band, suggesting that it is highly specific for the alpha 1-integrin subunit. A sandwich-ELISA with monoclonal antibody 33.4 and the polyclonal antiserum against the alpha 1-integrin subunit, respectively, enabled the quantitative expression pattern of the alpha 1-integrin subunit to be studied in different rat organs. With the exceptions of brain (not detectable) and muscle (low concentration), the alpha 1-integrin subunit was detectable in almost all organs of the digestive, respiratory and urogenital system as well as in lymphatic organs. The highest relative concentrations of alpha 1-integrin subunit were found in uterus, lung and spleen, whereas in seminal vesicle, stomach, parotid gland, epididymis, kidney and liver only modest concentrations were evident. The organ distribution and localization of alpha 1-integrin subunit were studied by immunohistochemistry with monoclonal and polyclonal antibodies. Immunoreactivity was present in the plasma membranes of all smooth muscle cells, vascular endothelial cells of many organs and fibrocyte-fibroblast sheaths in the heart and kidney. Since these cells are in close contact with collagen-containing basal membranes as well as reticular fibrils, strong evidence exists that in rat tissues the alpha 1-integrin subunit is expressed at sites where collagen is present and might be involved in vivo in cell-collagen binding.

Animals↗

Localization of alpha integrin subunits in the neural retina of the tiger salamander.

BACKGROUND: Integrin receptors mediate cell-extracellular matrix interactions and regulate many events, including cell growth, proliferation, and differentiation. Retinal integrins are incompletely understood, although these receptors are potentially important factors in normal retinal function and pathology. METHODS: Immunocytochemistry was used to localize alpha integrin subunits 1-6 in the neural retina. RESULTS: Each alpha integrin subunit had a unique distribution in the retina, although there was considerable overlap among subunits. The alpha 1 subunit was broadly distributed throughout the retina, with some presumptive ganglion cells showing enriched labeling. The alpha 2 subunit was present on all retinal cell bodies, but was reduced in synaptic layers. The alpha 3 subunit was present in synaptic layers, Müller cells, and some cone and amacrine cells. The alpha 4 subunit was broadly distributed in the nuclear layers but was reduced in synaptic layers. The alpha 5 subunit was broadly expressed in the nuclear and synaptic layers with enriched labeling in the outer plexiform layer. Labeling for the alpha 6 subunit was restricted to the outer limiting membrane and some cone outer segments. Double-labeling studies indicated that photoreceptor terminals may exhibit alpha 1 and alpha 5 subunits, while processes from second-order neurons may exhibit alpha 1, alpha 3, and alpha 5 subunits. CONCLUSION: Integrin receptors containing the alpha 1, alpha 3, and alpha 5 subunits may have important functions at retinal synapses, in addition to roles in the nuclear layers. Integrin receptors containing alpha 2, alpha 4, and alpha 6 subunits probably serve non-synaptic functions.

Ambystoma↗

Human and rodent bone marrow mesenchymal stem cells that express primitive stem cell markers can be directly enriched by using the CD49a molecule.

Bone marrow (BM) from human and rodent species contains a population of multipotential cells referred to as mesenchymal stem cells (MSCs). Currently, MSCs are isolated indirectly by using a culture step and then the generation of fibroblast colony-forming units (CFU-fs). Unprocessed or native BM MSCs have not yet been fully characterised. We have previously developed a direct enrichment method for the isolation of MSCs from human BM by using the CD49a protein (alpha1-integrin subunit). As the CD49a gene is highly conserved in mammals, we have evaluated whether this direct enrichment can be employed for BM cells from rodent strains (rat and mouse). We have also studied the native phenotype by using both immunodetection and immunomagnetic methods and have compared MSCs from mouse, rat and human BM. As is the case for human BM, we have demonstrated that all rodent multipotential CFU-fs are contained within the CD49a-positive cell population. However, in the mouse, the number of CFU-fs is strain-dependent. Interestingly, all rat and mouse Sca-1-positive cells are concentrated within the CD49a-positive fraction and also contain all CFU-fs. In human, the colonies have been detected in the CD49a/CD133 double-positive population. Thus, the CD49a protein is a conserved marker that permits the direct enrichment of BM MSCs from various mammalian species; these cells have been phenotyped as true BM stem cells.

Animals↗

Immunohistochemical analysis of alpha 1-integrins in cervical cancer.

OBJECTIVE: The purpose of this study was to determine and compare the expression of the alpha 2-, alpha 3-, alpha 4- and alpha 5-subunits of the beta 1-family of integrins in both the normal and the carcinomatous cervix. STUDY DESIGN: A total of 22 solid tissue specimens (18 cancer and 4 normal) were analyzed immunohistochemically. The double-stain technique used an avidin-biotin complex kit to identify the various integrins and alkaline phosphatase-anti-alkaline phosphatase kit to identify the epithelial cells. Staining intensity, the main outcome measured, was graded as absent, weak, moderate, or strong. Statistical analysis was performed with the Wilcoxon rank sum test for nonparametric data. RESULTS: The alpha 2- and alpha 3-integrins stained the normal cervix epithelium more intensely than the stroma (p = 0.03). The alpha 4- and alpha 5-integrins stained both the stroma and the normal epithelium similarly. The alpha 2-integrin was absent in the stroma of all 18 cancer specimens despite being present in the epithelial regions of 14 to 18 cancers. The alpha 3-integrin had a greater staining intensity in the stroma of the cancers than in the epithelial regions (p = 0.002). Both alpha 4- and alpha 5-integrins were absent in the epithelial regions of the cancers but present in the stroma. CONCLUSIONS: The distribution and intensity of integrin expression in cervical cancer differ from their expression in the normal cervix. In particular, the fibronectin receptors, alpha 4 and alpha 5, were absent in the epithelial regions of the cervical cancers, and alpha 3 also had diminished expression in the malignant epithelium. These changes correlate well with the changes expected in malignant transformation.

Antigens, CD↗

Octreotide differentially modulates human Caco-2 intestinal epithelial cell proliferation and differentiation by decreasing intracellular cAMP.

Somatostatin modulates gastrointestinal mucosal growth and differentiation indirectly via inhibition of bioactive peptides and directly by less well understood mechanisms. We studied the direct effects of the somatostatin analog octreotide on proliferation, brush-border enzyme activity, cell-matrix interactions and intracellular cAMP in Caco-2 human intestinal epithelial cells. Proliferation was assessed by cell counting and [3H]thymidine uptake. The brush-border enzymes alkaline phosphatase (AP) and dipeptidyl dipeptidase (DP) were quantitated by synthetic substrate digestion. Adhesion and migration on purified matrix proteins were also measured. Octreotide (10(-9)-10(-5)M) shortened doubling time (46.5 +/- 6.2% at 10(-5) M, n = 20, P < 0.0001) and stimulated [3H]thymidine uptake. Octreotide decreased intracellular cAMP by 19.4 +/- 5.0% (n = 7, P < 0.0001) while dibutyryl-cAMP (10(-6) M) prolonged doubling time by 10.1 +/- 1.5% (n = 8, P < 0.0001), and blocked the octreotide effect. Octreotide decreased AP and DP with maximal effect at 10(-6) M (36.8 +/- 8.3% and 20.5 +/- 9.1%, n > 7, P < 0.0005 respectively). However, mitomycin proliferative blockade prevented octreotide inhibition of AP and DP, suggesting that the mitogenic effects of octreotide had simply decreased average maturity of the cells. Octreotide did not alter Caco-2 adhesion, EGF-or matrix-modulated motility, or integrin surface expression. Octreotide appears to directly stimulate Caco-2 proliferation by decreasing cAMP. These proliferative effects modulate Caco-2 differentiation but do not affect cell-matrix interactions.

Alkaline Phosphatase↗

Gap junctions are required for trophoblast proliferation in early human placental development.

Little is known about the role of gap junctional intercellular communication (GJIC) in human trophoblast differentiation, particularly during the formation of extravillous trophoblast (EVT) cell columns and their subsequent differentiation into invasive cells. We have identified transcripts for five connexin gap junction proteins in the early human placenta (Cx32, Cx37, Cx40, Cx43 and Cx45). Of these, Cx40 and Cx45 proteins immunolocalize to EVT in anchoring cell columns. Cx40 expression is prominent in the anchoring column throughout the first trimester of pregnancy (6-14 weeks gestation). We used first trimester placental villous explant cultures to determine the functional significance of the inhibition of GJIC in EVT cell proliferation and differentiation using two known GJIC inhibitors, carbenoxolone (CBX) and heptanol. The morphology of EVT outgrowths changed dramatically upon GJIC-blockade, from compact and organized outgrowths into a scattered group of rounded individual trophoblast cells, reminiscent of an early invasive phenotype. Furthermore, the inhibition of GJIC in placental explants by CBX or heptanol induced a switch away from the proliferative and towards an invasive EVT phenotype, as evident from (a) the loss of the proliferation marker Ki67 and (b) an increase in the invasive marker alpha1 integrin. We also utilized antisense oligonucleotides to inhibit Cx40 protein expression in placental explants. Cx40 antisense treatment also resulted in the abolishment of outgrowth EVT cell proliferation (as determined by Ki67 immunostaining). Together, these results suggest that gap junctions composed particularly of Cx40 channels are required for the proliferation of EVT cells in anchoring cell columns, and that a loss of GJIC contributes to differentiation to the invasive EVT phenotype.

Carbenoxolone↗

Novel genomic targets in oxidant-induced vascular injury.

To study the complex interaction between oxidative injury and the pathogenesis of vascular disease, vascular gene expression was examined in male Sprague-Dawley rats given 35 or 70 mg/kg allylamine, a synthetic amine converted to acrolein and hydrogen peroxide within the vascular wall. Vascular lesions and extensive vascular remodeling, coupled to increased production of 8-epi-PGF2alpha, nuclear localization of NFkappaB, and alterations in glutathione homeostasis, were observed in animals treated with allylamine for up to 20 days. Transcriptional profiling, immunohistochemistry, and in situ hybridization showed that genes involved in adhesion and extracellular matrix (ECM) (alpha(1) integrin, collagen), cytoskeletal rearrangements (alpha-smooth muscle actin, alpha-tropomyosin), and signal transduction (NFkappaB, osteopontin, and LINE) were altered by oxidant treatment. To evaluate mechanisms of gene dysregulation, cultured aortic smooth muscle cells were challenged with allylamine or its metabolites and processed for molecular analysis. These agents increased formation of reactive oxygen species and elicited changes in gene expression similar to those observed in vivo. Oxidative stress and changes in gene expression were inhibited by N-acetyl cysteine, a precursor of glutathione. These results indicate that genes along the ECM-integrin-cytoskeletal axis, in addition to LINE, are molecular targets in oxidant-induced vascular injury.

Acetylcysteine↗

Vascular endothelial growth factor ligands and receptors that regulate human cytotrophoblast survival are dysregulated in severe preeclampsia and hemolysis, elevated liver enzymes, and low platelets syndrome.

Human placental development combines elements of tumorigenesis and vasculogenesis. The organ's specialized epithelial cells, termed cytotrophoblasts, invade the uterus where they reside in the interstitial compartment. They also line uterine arteries and veins. During invasion, ectodermally derived cytotrophoblasts undergo pseudovasculogenesis, switching their adhesion molecule repertoire to mimic that of vascular cells. Failures in this transformation accompany the pregnancy complication preeclampsia. Here, we used a combination of in situ and in vitro analyses to characterize the cell's expression of vascular endothelial growth factor (VEGF) family ligands and receptors, key regulators of conventional vasculogenesis and angiogenesis. Cytotrophoblast differentiation and invasion during the first and second trimesters of pregnancy were associated with down-regulation of VEGF receptor (VEGFR)-2. Invasive cytotrophoblasts in early gestation expressed VEGF-A, VEGF-C, placental growth factor (PlGF), VEGFR-1, and VEGFR-3 and, at term, VEGF-A, PlGF, and VEGFR-1. In vitro the cells incorporated VEGF-A into the surrounding extracellular matrix; PlGF was secreted. We also found that cytotrophoblasts responded to the VEGF ligands they produced. Blocking ligand binding significantly decreased their expression of integrin alpha1, an adhesion molecule highly expressed by endovascular cytotrophoblasts, and increased apoptosis. In severe preeclampsia and hemolysis, elevated liver enzymes, and low platelets syndrome, immunolocalization on tissue sections showed that cytotrophoblast VEGF-A and VEGFR-1 staining decreased; staining for PlGF was unaffected. Cytotrophoblast secretion of the soluble form of VEGFR-1 in vitro also increased. Together, the results of this study showed that VEGF family members regulate cytotrophoblast survival and that expression of a subset of family members is dysregulated in severe forms of preeclampsia.

Cell Differentiation↗

Patterns of integrin expression in a human mandibular explant model of osteoblast differentiation.

Cell-matrix interaction is crucial in regulating osteoblast differentiation and function. These interactions are themselves regulated, at least in part, by integrins. Although there are some data from mammalian models, few studies have compared integrin expression at different stages of the osteoblast lineage. Here, primary human mandibular osteoblast cultures were grown in the presence of epidermal growth factor (EGF), giving a proliferative, less differentiated phenotype, or of vitamin D(3) and hydrocortisone (D+Hc), giving a more differentiated phenotype. These cultures were compared with those of cells prepared in the absence of EGF or D+Hc by fluorescence-activated cell sorter using a panel of monoclonal antibodies to specific integrin heterodimers. To provide in vivo correlation, the same panel of antibodies was used to stain fresh-frozen, undemineralised sections of human mandibular bone. Under baseline conditions the alpha(3), alpha(5), alpha(v), alpha(v)beta(3), beta(3) and beta(1) integrin subunits were expressed strongly by the cells, with low-level expression of the alpha(1), alpha(2) and alpha(4) subunits. In the presence of EGF there was increased alpha(2) expression. With D+Hc, alpha(3) and alpha(5) expression was elevated. Immunohistochemical analysis demonstrated alpha(2), alpha(3), alpha(5), alpha(v)beta(3), beta(1) and beta(3) subunits in cells of the osteoblast lineage; alpha(2) staining was restricted to cells close to the bone surface whilst alpha(v)beta(3) and beta(3) were most frequently localised in the osteocytes. The results provide evidence that cells at successive stages of the osteoblast lineage show different patterns of integrin expression. These integrins may be important in cell-matrix interactions leading to osteoblast differentiation.

Antibodies, Monoclonal↗

Differential expression of alpha 1, alpha 3 and alpha 5 integrin subunits in acute and chronic stages of myocardial infarction in rats.

OBJECTIVE: Anchoring cardiac myocytes to extracellular matrix, which is mediated mainly by integrins on their surfaces, is important for maintaining the architecture of myocardial tissues and transmitting mechanical force. We evaluated the expression of alpha integrin subunits on myocytes and the accumulation of interstitial collagen and fibronectin at acute and chronic stages after myocardial infarction. METHODS: Myocardial infarction was induced by ligation of left coronary arteries in rats. The expression of alpha 1, alpha 3 and alpha 5 integrin subunits, and accumulation of collagen and fibronectin were analyzed with immunohistochemistry or sirius-red staining. RESULTS: In hearts without infarction, moderate expression of the alpha 3 subunit and only slight expression of the alpha 5 subunit were observed on myocytes. In the first week after infarction, the alpha 1 subunit, collagen and fibronectin were increased only in the peri-infarcted area, while the alpha 5 subunit was increased both in peri-infarcted and non-infarcted areas. At day 42, the expression of the alpha 1 subunit and collagen were still increased, although the alpha 5 subunit and fibronectin were decreased. The expression of the alpha 3 subunit was not altered throughout the experimental period. CONCLUSION: These data suggest that integrin subunits play an important role in healing and remodeling processes after myocardial infarction.

Animals↗

Effect of the hepatitis B virus HBx protein on integrin-mediated adhesion to and migration on extracellular matrix.

BACKGROUND/AIMS: The hepatitis B virus HBx protein is associated with the development of hepatocellular carcinoma (HCC). However, its possible contribution to tumor spreading has not been explored. The migration of tumor cells through the extracellular matrix (ECM) represents a crucial step in tumor metastasis. Our aim was to study the effect of HBx on the integrin-mediated cell-ECM interaction, and its possible consequences for cell migration. METHODS: Cell-ECM interaction was evaluated by static adhesion experiments, using blocking and stimulating anti-beta1 integrin mAbs. ECM receptor expression was analyzed by flow cytometry. The cellular distribution of the activated beta1 integrin subunit was determined by immunofluorescence analysis, and cell motility was determined by wound-healing assays. RESULTS: HBx-bearing cells showed decreased adhesion to fibronectin, which correlated with a decreased expression of the alpha5 integrin subunit. The activated beta1 subunit was redistributed to the tips of pseudopodial protrusions of HBx-bearing cells, whereas it was evenly localized in the control cells. HBx-induced cell migration was abrogated by irreversible stimulation of beta1 integrins. CONCLUSIONS: These results suggest that HBx might play a role in tumor spreading by modulating the adhesion-deadhesion balance of the cells in the primary tumor site and favoring integrin-mediated cell migration.

Antigens, CD↗

Endometrial integrin expression in the early luteal phase in natural and stimulated cycles for in vitro fertilization.

OBJECTIVE: To investigate the effect of ovarian stimulation on integrin expression in the early luteal phase. STUDY DESIGN: Seven endometrial biopsies were taken 2 days after the oocyte retrieval from stimulated cycles for IVF and 23 from natural cycles, 2 days after ovulation. RESULT: Endometrium was in-phase in 22/23 and 7/7 biopsies from the natural and stimulated cycles, respectively. Integrins alpha(1) and alpha(4) were simultaneously positive in 43.4% from the natural and in all (100%) the stimulated cycles (P<0.03). On the day of the endometrial biopsy, progesterone serum values were higher in the stimulated cycles (55.2+/-9.5 microg/l versus 8.5+/-3.8 microg/l) (P<0.001). HSCORE value was significantly higher in stimulated cycles for both integrins. CONCLUSION: Endometrial integrin expression is more consistently present in the early luteal phase in stimulated cycles than in natural cycles and this may be related to the higher serum progesterone concentration and/or the more advanced endometrial histological features.

Adult↗

Expression of integrin subunits in normal and malignant human salivary gland cell clones and its regulation by transforming growth factor-beta 1.

In this study, we have examined the expression of integrin subunits in normal and malignant human salivary gland cell clones as well as its regulation by transforming growth factor-beta 1 (TGF-beta 1). By the analysis using immunofluorescence staining, an SV40 immortalized normal human salivary gland duct cell clone (NS-SVDC) with no tumorigenic ability by s.c. implantation into nude mice was identified to express the integrin beta 1, alpha 2, alpha 3 and alpha 6 subunits on the cell surface, while the expression of these subunits, except for beta 1 subunit, was reduced or completely diminished in a neoplastic human salivary gland duct cell clone (HSGc) with tumorigenic but not metastatic potential in nude mice and metastatic cell clones derived after in vitro exposure of HSGc to N-methyl-N-nitrosourea. In addition, immunoblot analysis also exhibited the same results as those obtained with immunofluorescence staining. The alpha 1 subunit was not demonstrable in any of the cell clones by both techniques. TGF-beta 1 augmented the expression of the beta 1 subunit in NS-SV-DC, while HSGc and metastatic cell clones demonstrated no changes in the expression of the beta 1 subunit in response to TGF-beta 1. These findings, therefore, suggest that there is an inverse relationship between the malignancy and the expression mode of integrin subunits, especially alpha 2 subunit, in human salivary gland cell clones with varying degrees of malignant potential, and that TGF-beta 1 is a positive regulatory factor in the expression of the beta 1 subunit in normal but not malignant cell clones.

Animals↗

The expression of VLA integrins in the human tonsilla palatina.

The integrin receptors are a family of transmembrane glycoproteins comprising non-covalent heterodimers. They interact with a wide variety of ligands including extracellular matrix glycoproteins, complement and other cell, while their intracellular domains interact with the cytoskeleton. They participate in cell-matrix and cell-cell adhesion in many physiologically important processes including embryological development, hemostasis, thrombosis, wound healing, immune and nonimmune defense mechanisms, and in oncogenic transformation. This investigation was focused on the histological distribution of the beta 1-integrins in the human tonsil using an indirect immunoperoxidase method. Present data suggest that lymphocyte and antigen presenting cells (FDCs, IDCs, and macrophages) interact with each other following adhesion to extracellular matrix proteins (e.g. fibronectin) through their integrin receptors in order to carry out special immunological functions. In addition, stromal elements and epithelial components were shown to express VLA integrins providing interactions for tissue organization and compartmentalization.

Antibodies, Monoclonal↗