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G Tarone

Publications and source records attributed to G Tarone.

At least 55 records · Page 3Linked to original sources

Integrin-mediated signal transduction in human endothelial cells: analysis of tyrosine phosphorylation events.

Adhesion of human umbilical endothelial cells to fibronectin resulted in increased tyrosine phosphorylation of a group of proteins with molecular mass ranging from 100 to 130 kDa and of a 70 kDa protein. This pattern of tyrosine phosphorylation was also observed when endothelial cells adhered to vitronectin, collagen IV, collagen I and laminin or to culture dishes coated with antibodies directed to either beta 1, alpha 3, alpha 5, alpha 6 or beta 3 integrin subunits. Increased phosphorylation of the 100-130 kDa proteins was detectable as early as 30 sec after adhesion, reached maximal level after 15 min, and remained high as long as the cells adhere to culture dishes. The 70 kDa protein was phosphorylated with a slower kinetics and its phosphorylation increased over a period of 3 h. Using specific monoclonal antibodies, the major component of the 100-130 kDa complex was identified as the focal adhesion tyrosine kinase p125FAK. The phosphorylation of the p125FAK was also observed by inducing beta 1 integrin clustering in non adherent HEC, indicating that this is a primary signalling event induced by integrins. Using tyrosine kinase inhibitors, we show a direct correlation between integrin-stimulated tyrosine kinases and assembly of focal adhesions and actin fibres.

Antibodies↗

Expression of integrin alpha 1 beta 1 is regulated by nerve growth factor and dexamethasone in PC12 cells. Functional consequences for adhesion and neurite outgrowth.

PC12 cells respond to nerve growth factor by differentiating into sympathetic neuron-like cells that employ the integrin alpha 1 beta 1 to attach to, and extend neurites on, substrata coated with collagen or laminin. In one PC12 subline, PC12i, prolonged treatment with nerve growth factor results in a marked increase in synthesis of alpha 1 subunits and in the level of alpha 1 mRNA, with a corresponding increase in alpha 1 beta 1 expressed on the cell surface. These changes are accompanied by substantial increases in initial cell attachment to collagen and in the fraction of neurite-bearing cells and average neurite length. Integrin beta 1-subunits are constitutively expressed, so that alpha 1 synthesis controls the amount of alpha 1 beta 1 heterodimer expressed on PC12i cells. Acidic fibroblast growth factor also induces alpha 1 beta 1 in PC12i cells, with consequent enhancement of neurite outgrowth; treatment with epidermal growth factor or dibutyryl cyclic AMP does not have these effects. Another subline, PC12c, expresses high levels of alpha 1 mRNA and alpha 1 protein constitutively. With or without nerve growth factor pretreatment, these cells adhere well to collagen and a majority extend neurites when replated in the presence of nerve growth factor. Dexamethasone treatment of PC12c cells reduces expression of alpha 1 mRNA and alpha 1 protein, with consequent reduction in attachment to collagen. In both sublines, then, there is a direct relationship between the level of a specific matrix receptor and cell-matrix adhesion. Moreover, our results suggest that induced expression of this matrix receptor is an essential aspect of the regulation of neurite extension by nerve growth factor in PC12i cells.

Animals↗

Expression and functional analysis of a cytoplasmic domain variant of the beta 1 integrin subunit.

We have previously described a variant form of the integrin beta 1 subunit (beta 1B)1 characterized by an altered sequence at the cytoplasmic domain. Using polyclonal antibodies to a synthetic peptide corresponding to the unique sequence of the beta 1B, we analyzed the expression of this molecule in human tissues and cultured cells. Western blot analysis showed that the beta 1B is expressed in skin and liver and, in lower amounts, in skeletal and cardiac muscles. The protein was not detectable in brain, kidney, and smooth muscle. In vitro cultured keratinocytes and hepatoma cells are positive, but fibroblasts, endothelial cells, and smooth muscle cells are negative. An astrocytoma cell line derived from immortalized fetal astrocytes was found to express beta 1B. In these cells beta 1B represent integral of 30% of the beta 1 and form heterodimers with alpha 1 and alpha 5 subunits. To investigate the functional properties of beta 1B, the full-length cDNA coding for this molecule was transfected into CHO cells. Stable transfectants were selected and the beta 1B was identified by a mAb that discriminate between the transfected human protein and the endogenous hamster beta 1A. Immunoprecipitation experiments indicated that the beta 1B was exported at the cell surface in association with the endogenous hamster alpha subunits. The alpha 5/beta 1B complex bound to a fibronectin-affinity matrix and was specifically released by RGD-containing peptides. Thus beta 1B and beta 1A are similar as far as the alpha/beta association and fibronectin binding are concerned. The two proteins differ, however, in their subcellular localization. Immunofluorescence studies indicated, in fact, that beta 1B, in contrast to beta 1A, does not localize in focal adhesions. The restricted tissue distribution and the distinct subcellular localization, suggest that beta 1B has unique functional properties.

Amino Acid Sequence↗

Integrin-mediated neurite outgrowth in neuroblastoma cells depends on the activation of potassium channels.

Electrical signals elicited by integrin interaction with ECM components and their role in neurite outgrowth were studied in two clones (N1 and N7) isolated from 41A3 murine neuroblastoma cell line. Although the two clones similarly adhered to fibronectin (FN) and vitronectin (VN), this adhesion induced neurite outgrowth in N1 but not in N7 cells. Patch clamp recordings in whole cell configuration showed that, upon adhesion to FN or VN but not to platelet factor 4 (PF4), N1 cells undergo a marked (approximately equal to 20 mV) hyperpolarization of the resting potential (Vrest) that occurred within the first 20 min after cell contact with ECM, and persisted for approximately 1 h before reverting to the time zero values. This hyperpolarization was totally absent in N7 cells. A detailed analysis of the molecular mechanisms involved in N1 and N7 cell adhesion to ECM substrata was performed by using antibodies raised against the FN receptor and synthetic peptides variously competing with the FN or VN binding to integrin receptor (GRGDSP and GRGESP). Antibodies, as well as GRGDSP, abolished adhesion of N1 and N7 clones to FN and VN, revealing a similar implication of integrins in the adhesion of these clones to the ECM proteins. However, these anti-adhesive treatments, while ineffective on Vrest of N7 cells, abolished in N1 cells the FN- or VN-induced hyperpolarization and neurite outgrowth, that appeared therefore strictly associated and integrin-mediated phenomena. The nature of this association was deepened through a comparative analysis of the integrin profiles and the ion channels of N1 and N7 cells. The integrin immunoprecipitation profile resulted very similarly in the two clones, with only minor differences concerning the alpha V containing complexes. Both clones possessed Ca2+ and K+ delayed rectifier (KDR) channels, while only N1 cells were endowed with inward rectifier K+ (KIR) channels. The latter governed the Vrest, and, unlike KDR channels, were blocked by Ba2+ and Cs+. By moving patched cells in contact with FN-coated beads, it was shown that KIR channel activation was responsible for the FN-mediated hyperpolarization of Vrest. Treatment with Pertuxis toxin (PTX) abolished this hyperpolarization and neurite outgrowth, indicating that a G protein is interposed between integrins and KIR channels and that the activation of these channels is required for neuritogenesis. In fact, the block of KIR channels by Cs+ abolished both hyperpolarization and neurite outgrowth, provided that the cation was supplied during the first two hours after N1 cell contact with FN.(ABSTRACT TRUNCATED AT 400 WORDS)

Action Potentials↗

Expression of beta 1 integrin complexes on the surface of unfertilized mouse oocyte.

Integrins are a family of cell surface receptors that mediate cell-cell and cell-matrix interactions in a variety of different cellular systems. Here we show that unfertilized mouse oocytes express beta 1 class integrins both at mRNA and protein levels. Using the reverse transcription polymerase chain reaction and oligonucleotide primers based on the DNA sequence of mouse integrins, the RNA transcripts for the beta 1, alpha 5 and alpha 6 subunits were detected in unfertilized oocytes. The expression of the mRNAs is paralleled by the expression of the corresponding proteins, in fact, the alpha 5/beta 1 and the alpha 6/beta 1 complexes can be immunoprecipitated with specific antibodies form 125I-surface-labeled oocytes. Using subunit-specific antibodies we also demonstrate the presence of the alpha 3/beta 1 at the oocyte surface but alpha 1, alpha 2, alpha 4 or alpha V subunits were not detectable. Since the mouse alpha 3 DNA sequence is not available, we have not tested for the corresponding transcript. Integrin subunits alpha 6 and beta 1 were differently distributed on the oocyte surface, as visualized by immunofluorescence staining and by immunoelectron microscopy. alpha 6 antigen was mainly confined to the microvillous area of the oocyte surface, while beta 1 was more homogeneously distributed over the whole oolemma. These data demonstrate for the first time the expression of three beta 1 integrin complexes in unfertilized mouse oocytes. Such proteins may have a role in sperm-egg interaction or during very early steps of embryogenesis.

Animals↗

The beta 1 integrin distal promoter is developmentally regulated in transgenic mice.

Transgenic mice harbouring 5' flanking sequences of the human beta 1 integrin gene linked to the Escherichia coli lacZ gene have been generated to examine spatial and temporal distribution of the promoter activity during development. Our previous data showed that this regulatory region is composed by two promoters, called distal and proximal, located closely on the human genome. To determine the role of each promoter region during development we generated transgenic mice using these two sequences linked to the lacZ reporter gene. Their analysis shows that these two sequences, as determined by in vitro studies, have different efficiencies in promoting transcription. Actually mice carrying the proximal promoter region exhibit a weak lacZ expression resulting in an undetectable beta-galactosidase activity in both embryonic and adult tissues. On the other hand, transgenic mice carrying the distal promoter express beta-galactosidase at high efficiency during embryonic development. The pattern of transgene expression is consistent with the localization of beta 1 protein on mouse embryos evidenced by immunohistochemistry. Moreover the distal promoter is subjected to a temporal modulation since in adult transgenic mice lacZ expression decreases to a level detected only by RT-PCR analysis. We have determined a similar down-regulation analysing by Northern blot beta 1 mRNA in adult and embryonic organs such as heart and gut.

Animals↗

Alpha 6.beta 1 integrin (laminin receptor) is down-regulated by tumor necrosis factor alpha and interleukin-1 beta in human endothelial cells.

Endothelial cells from human umbilical vein (HEC) express several distinct integrin complexes that mediate the interaction with the basal membrane components. In this paper we show that treatment with tumor necrosis factor alpha (TNF alpha) down-regulates the expression of the laminin receptor alpha 6.beta 1 integrin in cultured HEC. After 48 h of treatment with TNF alpha, the level of expression of the alpha 6.beta 1 complex reached 20% of the control value. The down-regulation of the alpha 6.beta 1 integrin is caused by a decreased expression of the alpha 6 subunit, whereas the synthesis of the beta 1 subunit remains constant. Northern blot analysis shows that the decreased level of alpha 6 subunit synthesis is caused by down-regulation of alpha 6 mRNA in TNF alpha-treated HEC. TNF alpha treatment does not alter the expression of alpha 2, alpha 3, and alpha 5 integrins, also present on endothelial cell surface, thus showing that this cytokine has a selective action on distinct integrin complexes. Down-regulation of alpha 6.beta 1 correlates with pronounced reduction in adhesion of TNF alpha-treated HEC to laminin, but not to fibronectin-coated culture dishes. In addition to TNF alpha, interleukin-1 beta also decreases the expression of the alpha 6.beta 1 integrin and reduces adhesion to laminin, thus suggesting that this regulation plays an important role in inflammation.

Amino Acid Sequence↗

Distribution of beta 1 integrin subunit in rat seminiferous epithelium.

We have studied the presence and distribution of beta 1 integrins in the seminiferous epithelium of prepubertal and adult rats. Our immunofluorescence data show that in the adult the antibody recognizes specific areas localized around the heads of elongating and maturing spermatids and above spermatogonia at stages I-VII. The following were found to be negative: a) areas adjacent to spermatogonia at stages IX-XIV and adjacent to spermatocytes and to round spermatids; b) spermiated spermatozoa. In the prepubertal rat, positive tubules are first apparent around Day 17 of age. Immunofluorescence and immunoprecipitation studies show that Sertoli cell monolayers from 3-wk-old rats express beta integrins in vitro.

Animals↗

Tumor necrosis factor alpha and interferon gamma modulate the expression of the vitronectin receptor (integrin beta 3) in human endothelial cells.

In this paper we show that tumor necrosis factor alpha (TNF alpha) and interferon gamma (IFN gamma) alter the expression of extracellular matrix receptors (integrins) in cultured human endothelial cells. Endothelial cells express at their surface integrins of the beta 1 and beta 3 groups that include receptors for fibronectin, collagen, laminin, and vitronectin. After treatment for 72 h with a combination of TNF alpha and IFN gamma, the level of the vitronectin receptor (alpha v beta 3) at the cell surface decreases by 70%, whereas the amounts of the beta 1 integrins remain unchanged. The decreased expression of the alpha v beta 3 complex at the cell surface is due to a selective effect of TNF alpha and IFN gamma on the regulation of the beta 3 subunit synthesis at the translational level. In fact, although the steady state levels of the mRNA for the beta 3 subunit are comparable in control and treated cells, the overall synthesis of the beta 3 subunit is decreased by a factor of 70%. No significant alteration of the synthesis of the companion alpha v subunit is detectable in cytokine-treated cells. As a consequence of the decreased expression of the receptor, cytokine-treated cells show decreased ability to adhere to vitronectin but adhere normally to fibronectin. These data show that two important inflammatory mediators, TNF alpha and IFN gamma, can modify the interaction of endothelial cells with the extracellular matrix by selectively altering the expression of specific cell surface integrin complexes.

Blotting, Northern↗

Differential distribution and modulation of expression of alpha 1/beta 1 integrin on human endothelial cells.

In this paper we report that the integrin complex alpha 1/beta 1, a laminin/collagen receptor, is expressed on cultured foreskin microvascular endothelium, but is absent on endothelial cells from large vessels such as the aorta and umbilical and femoral veins. The restricted expression of integrin alpha 1/beta 1 to microvascular endothelium was also demonstrated in vivo, by immunohistochemical staining of human tissue sections. Alpha 1 specific antibodies reacted strongly with endothelial cells of small blood vessels and capillaries in several tissues, but not with endothelium of vein and arteries of umbilical cord. Expression of integrin alpha 1 can be induced in cultured umbilical vein endothelial cells by treatment with 5 ng/ml tumor necrosis factor alpha (TNF alpha). Induction of alpha 1 subunit expression also occurred after treatment of umbilical vein endothelium with 10(-5) M retinoic acid or with 10 nM PMA; Maximal induction of alpha 1 integrin was reached after 48 h of treatment and costimulation with TNF alpha and PMA resulted in a synergistic effect. The induction of alpha 1 integrin changed the adhesive properties of umbilical vein endothelial cells, by increasing the adhesiveness to collagen, laminin, and laminin fragment P1, while adhesion to fibronectin and laminin fragment E8 remained constant. The alpha 1 integrin is thus a marker of a specific population of endothelial cells and its expression confers distinctive properties of interaction with the underlying basal membrane.

Amino Acid Sequence↗

Generation and characterization of the murine monoclonal antibody M-KID 2 to VLA-3 integrin.

Through the analysis of the antigenic phenotype of a recently established human renal carcinoma cell line (KJ29), we have demonstrated that alpha 3 subunit of the integrin family is selectively expressed by the plastic adherent cell subpopulation. Because of the scanty availability of monoclonal antibodies to this adhesion molecule, we have used KJ29 cell line as immunogen to raise novel murine monoclonal antibodies. We isolated an hybridoma secreting the mAb M-KID 2 of the IGg1k isotype that immunoprecipitates from intrinsically [35S]-Methionine labeled KJ29 cells, an heterodimer of 130/130 and 110/150 Kd, in reducing and nonreducing conditions respectively. This reactivity was completely abolished by immunodepletion of the cell extract with a polyclonal anti alpha 3 chain antiserum. Treatment of M-KID 2 immunoprecipitates with various solutions of pH ranging from 2 to 10.5, to dissociate alpha 3 from beta 1 chains, showed a retention of both alpha 3 beta 1 chains thus indicating that the epitope identified by mAb M-Kid 2 is likely to be constituted by the alpha 3 beta 1 heterodimer. Furthermore immunohistochemical studies on selected frozen and paraffin embedded tissues with mAb M-Kid 2 have provided staining pattern indicating the recognition of Vla-3. These findings demonstrate that mAb M-KID 2 can represent a valuable reagent for the study of Vla-3 integrin in normal and pathologic conditions.

Animals↗

Up-regulation of the integrin alpha 1/beta 1 in human neuroblastoma cells differentiated by retinoic acid: correlation with increased neurite outgrowth response to laminin.

Retinoic acid (RA) is known to induce differentiation of neuroblastoma cells in vitro. Here we show that treatment of two human neuroblastoma cell lines, SY5Y and IMR32, with RA resulted in a fivefold increase of the integrin alpha 1/beta 1 expression. The effect was selective because expression of the alpha 3/beta 1 integrin, also present in these cells, was not increased. The up-regulation of the alpha 1/beta 1 differentiated SY5Y cells correlated with increased neurite response to laminin. In fact, RA-treated SY5Y cells elongated neurites on laminin-coated substratum more efficiently compared with untreated cells or cells treated with nerve growth factor, insulin, or phorbol 12-myristate 13-acetate. These three agents induced partial morphological differentiation but did not increase alpha 1 integrin expression. Neurite extension in RA-treated cells was more efficient on laminin than on fibronectin or collagen type I and was inhibited with beta 1 integrin antibodies on all three substrates. Affinity chromatography experiments showed that alpha 1/beta 1 is the major laminin receptor in both untreated and RA-treated SY5Y cells. These data show that RA, a naturally occurring morphogen implicated in embryonic development, can selectively regulate the expression of integrin complexes in neuronal cells and suggest an important role of the alpha 1/beta 1 laminin receptor in the morphological differentiation of nerve cells.

Cell Differentiation↗

A human integrin beta 1 subunit with a unique cytoplasmic domain generated by alternative mRNA processing.

The integrin subunit (beta 1) is common to a group of plasma membrane glycoprotein heterodimers that include the fibronectin, laminin and collagen receptors. These receptors span the plasma membrane, providing a transmembrane linkage between the extracellular matrix and the cytoskeleton. Here, we describe a variant of the human beta 1 differing from the previously described beta 1 in the cytoplasmic domain. The variant beta 1 transcript (beta 13'v) is present in different cell types and is synthesized at lower levels compared to the beta 1 mRNA. The cytoplasmic domain of the beta 13'v is characterized by a unique 12-amino acid C-terminal sequence. A Tyr residue present in this region, and known to be phosphorylated in the beta 1, is no longer part of a consensus sequence for phosphorylation by Tyr kinases. The integrin cytoplasmic domain anchors actin fibrils to the plasma membrane by interacting with cytoskeletal proteins such as talin and fibulin. The integrin beta 13'v with the variant cytoplasmic domain is likely to mediate a new type of membrane-cytoskeleton interaction during cell-cell and cell-matrix adhesion. Analysis of genomic clones showed that the new sequences of the variant mRNA are identical to an intron located between the last two exons of the beta 1 gene, indicating that the alternative message is generated either by premature transcription termination or by lack of splicing at this site.

Amino Acid Sequence↗

A novel fibronectin receptor with an unexpected subunit composition (alpha v beta 1).

The integrins are a family of heterodimeric cell surface receptors for extracellular matrix molecules. An analysis of integrin subunits expressed by a number of cell lines identified a novel heterodimer. The alpha subunit of this integrin was immunologically and electrophoretically indistinguishable from the vitronectin receptor alpha subunit (alpha v) and the beta subunit was indistinguishable from beta 1. Affinity chromatography experiments and cell adhesion assays indicated that this receptor complex is a new fibronectin receptor. Its unexpected subunit composition demonstrates the importance of the beta subunit in determining the ligand specificity of integrins and suggests that the current integrin classification scheme needs revision.

Antibodies, Monoclonal↗

Nerve growth factor induces increased expression of a laminin-binding integrin in rat pheochromocytoma PC12 cells.

Rat pheochromocytoma PC12 cells exposed to nerve growth factor differentiate as sympathetic neurons and extend neurites on laminin and to a much lesser extent on fibronectin. Analysis of laminin fragments indicated that neurite outgrowth occurs mainly on fragment P1, corresponding to the center of the cross, and only poorly on fragment E8, a long arm structure that is active with other neuronal cells. Integrin antibodies prevented adhesion and neurite sprouting of these cells on laminin, fragment P1, and fibronectin. By affinity chromatography we isolated an integrin-type receptor for laminin consisting of two subunits with molecular massess of 180 and 135 kDa. The latter is recognized by an antiserum to integrin beta 1 subunit. The bound laminin receptor could be displaced by EDTA, but not by Arg-Gly-Asp or Tyr-Ile-Gly-Ser-Arg peptides. Affinity chromatography on laminin fragments showed that the 180/135 kDa receptor binds to P1. The expression of the 180-kDa alpha subunit of the laminin receptor at the cell surface was increased 10-fold after NGF treatment. The effect of NGF is specific since the amount of a 150-kDa fibronectin-binding integrin alpha subunit remained unchanged. Moreover, the increased expression of the 180/135 kDa receptor at the cell surface corresponded to a selective increase in cell adhesion to laminin and to fragment P1. The 180/135-kDa complex is thus an integrin-type receptor for laminin whose expression and binding specificity correlates with the capacity of NGF-induced PC12 cells to extend neurites on laminin.

Adrenal Gland Neoplasms↗

Expression of receptors for extracellular matrix proteins in human endothelial cells.

The interaction with matrix components of the basal membrane is an important factor in the control of vascular endothelial cell function in both normal and pathological conditions. In the present work we define integrin receptors in vascular endothelial cells and analyze whether their expression is affected by endothelial cell activators. Using in vitro adhesion tests we show that human endothelial cells (HEC) can attach and spread on substrates coated with several matrix components including fibronectin, laminin, collagen type IV, fibrinogen and vitronectin. Using specific antibodies we detect integrin receptor complexes of the beta 1 and beta 3 families that can support adhesion of HEC to the above matrix proteins. These are the alpha 2/beta 1 collagen receptor, the alpha 3/beta 1 receptor for fibronectin, collagens and laminin, the alpha 5/beta 1 fibronectin receptor, the alpha 6/beta 1 laminin receptor and the alpha V/beta 3 receptor for vitronectin and fibrinogen. When HEC are exposed to a combination of tumor necrosis factor alpha (TNF alpha) and immune interferon (IFN-gamma) the amount of the alpha V/beta 3 vitronectin receptor at the cell surface was decreased by a factor of 50-70%, while the beta 1 integrin complexes were not affected. HEC cells thus express receptors for several matrix components and inflammatory mediators such as TNF alpha and IFN-gamma can selectively alter the expression of some of them.

Cell Adhesion↗