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Biomedical subjects

P C Marchisio

Publications and source records attributed to P C Marchisio.

At least 19 recordsLinked to original sources

Platelet-activating factor (PAF) induces the early tyrosine phosphorylation of focal adhesion kinase (p125FAK) in human endothelial cells.

Platelet-activating factor (PAF) is a potent activator of angiogenesis and controls the motility and the shape of vascular endothelium. The mechanism(s) whereby PAF exerts its action are in part known. Here we report that the biological active (R)PAF enantiomer administrated to cultured endothelial cells induces the early phosphorylation in tyrosine residues of focal adhesion kinase (p125FAX) and paxillin, two molecules involved in the early signaling and cytoskeleton assembly in cells that undergo integrin-mediated adhesion or are challenged by neuropeptides or lysophosphatidic acid. The phenomenon is rapidly turned on, lasts for a few minutes and is adhesion-independent indicating that the chain of events induced by (R)PAF, including p125FAK activation, precedes adhesion. The inhibitory effect of WEB2086, a PAF receptor antagonist, and the lack of activity exerted by the (S)PAF enantiomer, indicate that (R)PAF-mediated p125FAK activation, is PAF receptor-dependent. Calphostin C, an inhibitor of protein kinase C blocks the effect of (R)PAF on p125FAK phosphorylation suggesting that protein kinase C activation is up-stream the activation of this tyrosine kinase. When endothelial cells are exposed to a substratum that allows adhesion and spreading. (R)PAF-stimulated cells, change their adhesive phenotype and start migrating. Inhibitors of tyrosine kinases, like 3-(1,4,-dihydroxytetralyl) methylen-2-oxindole and herbimycin A, reduce the cells migration, the transendothelial flux of albumin and the enhancement of p125FAK activity induced by (R)PAF. The observation that increased tyrosine phosphorylation of p125FAK and its ensuring association with focal adhesion occurs rapidly upon (R)PAF challenge indicates that this signaling molecule has a primary and independent role also in the signaling cascade initiated by (R)PAF.

Amino Acid Sequence

Hypertension-associated point mutations in the adducin alpha and beta subunits affect actin cytoskeleton and ion transport.

The adducin heterodimer is a protein affecting the assembly of the actin-based cytoskeleton. Point mutations in rat adducin alpha (F316Y) and beta (Q529R) subunits are involved in a form of rat primary hypertension (MHS) associated with faster kidney tubular ion transport. A role for adducin in human primary hypertension has also been suggested. By studying the interaction of actin with purified normal and mutated adducin in a cell-free system and the actin assembly in rat kidney epithelial cells (NRK-52E) transfected with mutated rat adducin cDNA, we show that the adducin isoforms differentially modulate: (a) actin assembly both in a cell-free system and within transfected cells; (b) topography of alpha V integrin together with focal contact proteins; and (c) Na-K pump activity at V(max) (faster with the mutated isoforms, 1281 +/- 90 vs 841 +/- 30 nmol K/h.mg pt., P < 0.0001). This co-modulation suggests a role for adducin in the constitutive capacity of the epithelia both to transport ions and to expose adhesion molecules. These findings may also lead to the understanding of the relation between adducin polymorphism and blood pressure and to the development of new approaches to the study of hypertension-associated organ damage.

Actins

Changes in integrin and E-cadherin expression in neoplastic versus normal thyroid tissue.

UNLABELLED: BACK: The functional organization of polarized epithelia depends mostly on adhesion molecules belonging to the integrin and cadherin families. These molecules either recognize basement membrane components, such as laminins, or form intercellular junctions via homotypic interactions. Such tissue organization is often disrupted upon neoplastic transformation, and the resulting loss of functional polarization and cell cohesion might be a prerequisite for the invasive and metastatic behavior of carcinomas. PURPOSE: We studied modifications on thyroid adhesive mechanisms at various stages of neoplastic progression in terms of adhesion molecule expression, topography, and functional regulation by tyrosine kinases. Starting from this working hypothesis, we sought to identify one or more biological markers that would be suggestive of malignant transformation and poorer prognosis and that could be developed as a reliable indicator(s) in early diagnostic steps. METHODS: The study was carried out on both surgical samples and the corresponding fine-needle aspiration biopsy smears (numbers of specimens collected: 19 adenomas, seven follicular carcinomas, 13 papilary carcinomas, and 39 normal tissues). Immunohistochemistry of tissue sections and smears and immuno-precipitation and western blot analysis of protein extracts were done with a battery of monoclonal and polyclonal antibodies. Northern blotting was performed on RNA extracts from frozen tissue samples and use of an integrin subunit beta4 complementary DNA probe. RESULTS: Our findings can be summarized as follows: 1) In normal thyroid cells, the cooperative role of integrin alpha6beta4 and laminin 5/kalinin in hemidesmosome-mediated adhesion adhesion is missing, and recognition of the basal lamina occurs via integrin alpha3beta1 and laminin 1 and/or 2 (this pattern being maintained in adenomas but altered in carcinomas regardless of their histotype or differentiation grade); 2) only in carcinomas with clinical and/or histologic aggressiveness do neoexpression of integrin subunit beta4 and loss of laminin 2/merosin occur, indicating de novo assembly of integrin alpha6beta4; 3) pericellular redistribution and cytoskeletal disconnection of the E-cadherin-catenin complex occur; and 4) basal E-cadherin tyrosine phosphorylation decreases in carcinomas as compared with that in normal and adenomatous tissue. CONCLUSION: The malignant progression of thyroid tumors involves marked rearrangement of cell-basement membrane and cell-cell adhesion molecules and changes in their cytoskeleton linkage. These rearrangements are also easily and reproducibly detected on fine-needle aspiration biopsy smears. IMPLICATIONS: Immunodetection of adhesion molecules in sections and/or fine-needle smears may complement the toolbox of thyroid surgical pathologists; it may expand the possibilities of achieving a correct early diagnosis of thyroid tumors and of gaining some prognostic information on thyroid tumors.

Adenocarcinoma, Follicular

Tubulointerstitial responses in the progression of glomerular diseases: albuminuria modulates alpha v beta 5 integrin.

Proteinuria represents one of the most unfavorable prognostic factors in the progression of nephropathies. Several lines of evidence support a role for proteinuria per se in the development of interstitial fibrosis, albeit the molecular mechanisms are still unknown. We investigated the potential role of integrins expressed on tubular cells in regulating the synthesis and organization of interstitial matrix or as mediators of tubulointerstitial damage in conditions mimicking the nephrotic milieu. Under basal conditions, cultured tubular cells highly expressed alpha 3 beta 1 and, at focal contacts, alpha v beta 3. In contrast, alpha v beta 5 was weakly and diffusely distributed all over the plasma membrane. Cultures on a variety of matrix substrates (fibronectin, laminin, collagen types I and IV, vitronectin, von Willebrand factor, fibrinogen) did not induce any phenotypic change in integrin expression by tubular cells. Conversely, the addition of albumin resulted in a highly increased membrane expression of beta 5, which was organized in typical focal contacts and was related to the dose of albumin added. Immunofluorescence, flow cytometry, immunoprecipitation and RT-PCR experiments argue for a complex mechanism that includes increased post-transcriptionally regulated protein synthesis, accelerated conversion of precursors to mature forms, and increased surface delivery to discrete adhesive structures. Up-regulation of the beta 5 chain in tubular cells was confirmed in 9 out of 11 kidney biopsies from proteinuric glomerulonephritides including membranous and focal sclerosing glomerulonephritis, while it was not expressed in nonproteinuric kidneys including five biopsy specimens. This is the first report indicating that proteinuria up-regulates the surface expression and distribution of a specific integrin chain on tubular cells. These observations suggest the participation of integrins in a hitherto unexplored mechanism of tubulo-interstitial responses to glomerular injury.

Albuminuria

Significance of adhesion molecules as biological prognostic factor in locally advanced laryngeal squamous cell carcinomas.

Thirty laryngeal carcinomas were studied immunohistochemically in order to evaluate whether the expression and different distribution of adhesion molecules influence the clinical features and progression of the tumors. On the basis of clinical and pathological variables, two different groups were established: one with good and the other with poor prognosis. The patients were included in one of the two groups on the basis of prognostic factors previously studied by multivariate analysis (the validity of this choice was confirmed by the NED survival curves of the two groups). Different integrins, type I and V laminin and type IV collagen were evaluated by means of monoclonal antibodies in the tumoral specimens and in normal mucosa. Univariate statistical analysis was performed to evaluate differences between the two groups. The degree of expression and pattern of distribution were different in tumor compared with normal mucosa and significant differences were found between the good- and worst-prognosis tumors.

Antibodies, Monoclonal

The alpha 3 beta 1 integrin is involved in melanoma cell migration and invasion.

The VLA3 (alpha 3 beta 1) integrin receptor recognizes several ligands; however, the function of this integrin is still debated. Expression of VLA3 appears to be increased in malignant melanoma and correlates with the degree of dermal invasiveness. Here we have studied the role the alpha 3 integrin subunit in malignant melanoma cell migration and invasion into extracellular matrices. The 2/14 clone of the Me665/2 human melanoma cell line, which expresses high levels of VLA integrins, was highly migratory and invasive, while the low integrin expressing 2/56 clone showed limited migration and was not invasive. Antibodies to the beta 1 subunit inhibited adhesion, migration, and invasion of two different malignant melanoma cell lines, the 2/14 clone and A2058 cells, indicating a crucial role for VLA integrins in these phenomena. While anti-alpha 6 antibodies inhibited adhesion to laminin and anti-alpha 5 antibodies inhibited adhesion to fibronectin, antibodies to the alpha 3 subunit did not inhibit adhesion of these cells to laminin, fibronectin, or collagen i.v. In contrast, the P1B5 anti-alpha 3 antibodies were good inhibitors of the migration of these cells toward laminin, fibronectin, and collagen IV and also blocked invasion of these cells through a reconstituted basement membrane matrix (Matrigel). Another anti-alpha 3 antibody, F4, did not effect migration, while both the P1B5 and F4 antibodies induced cellular aggregation on Matrigel. Our data suggest a specific role for alpha 3 beta 1 in the migration and invasion of melanoma cells.

Antibodies, Monoclonal

Transforming growth factor-beta 1 modulates beta 1 and beta 5 integrin receptors and induces the de novo expression of the alpha v beta 6 heterodimer in normal human keratinocytes: implications for wound healing.

The molecular mechanism underlying the promotion of wound healing by TGF-beta 1 is incompletely understood. We report that TGF-beta 1 regulates the regenerative/migratory phenotype of normal human keratinocytes by modulating their integrin receptor repertoire. In growing keratinocyte colonies but not in fully stratified cultured epidermis, TGF-beta 1: (a) strongly upregulates the expression of the fibronectin receptor alpha 5 beta 1, the vitronectin receptor alpha v beta 5, and the collagen receptor alpha 2 beta 1 by differentially modulating the synthesis of their alpha and beta subunits; (b) downregulates the multifunctional alpha 3 beta 1 heterodimer; (c) induces the de novo expression and surface exposure of the alpha v beta 6 fibronectin receptor; (d) stimulates keratinocyte migration toward fibronectin and vitronectin; (e) induces a marked perturbation of the general mechanism of polarized domain sorting of both beta 1 and beta 4 dimers; and (f) causes a pericellular redistribution of alpha v beta 5. These data suggest that alpha 5 beta 1, alpha v beta 6, and alpha v beta 5, not routinely used by keratinocytes resting on an intact basement membrane, act as "emergency" receptors, and uncover at least one of the molecular mechanisms responsible for the peculiar integrin expression in healing human wounds. Indeed, TGF-beta 1 reproduces the integrin expression pattern of keratinocytes located at the injury site, particularly of cells in the migrating epithelial tongue at the leading edge of the wound. Since these keratinocytes are inhibited in their proliferative capacity, these data might account for the apparent paradox of a TGF-beta 1-dependent stimulation of epidermal wound healing associated with a growth inhibitory effect on epithelial cells.

3T3 Cells

Integrin expression in head and neck cancers.

Neoplastic transformation results in rearrangement of the cell membrane with a breakdown of the regular expression of adhesion molecules such as integrins. A relationship may exist between the intensity of this alteration, and the form it takes, and a tumour's ability to metastatise. We studied this possibility by investigating the epithelial integrin expression of 35 head and neck squamous cell carcinomas. Two types of positivity were observed: one associated with tumours with a better prognostic index, the other with those characterized by greater malignancy.

Carcinoma, Squamous Cell

Distribution of integrins and extracellular matrix proteins in vulvar squamous cell carcinomas.

We report the topography of integrins and some basement membrane zone (BMZ) proteins in normal vulvar skin and in seven cases of vulvar squamous carcinoma (VSC). In vulvar epidermis integrin chains alpha 2, alpha 3 and beta 1 lined the lateral surface of basal cells, while the heterodimer alpha 6 beta 4 was detected only at their basal domain. The location of alpha 6 beta 4 exactly matched BMZ identified by kalinin, laminin and collagen type IV. In VSC this pattern was subverted since both beta 1 integrins and alpha 6 beta 4 became pericellular. In particular, alpha 6 beta 4 lost its coherence with the residual organization of BMZ. In fact, BMZ components displayed their normal pattern were this was preserved, and so were fibronectin and tenascin in the stroma underlying the tumor. Furthermore, alpha 5 beta 1, the prototype fibronectin receptor that is not normally exposed in vulvar epidermal cells, became detectable pericellularly in VSC tumor cells. Alteration of integrin polarized topography appears to be typical of VSC cells as well as of other tumor epidermal cells. This alteration may be easily shown by immunohistochemistry on routinely collected frozen biopsies. It may then represent a tool for the early diagnosis of VSC that provides a quick and easy complement of traditional histology.

Aged

Osteoclast precursors circulate in the peripheral blood of patients with aggressive multiple myeloma.

Osteolysis resulting in extensive bone damage is a major clinical manifestation of patients with multiple myeloma (MM). The mechanisms of bone resorption in MM are incompletely understood. The final pathway is the generation of activated osteoclasts within bone marrow (BM) microenvironment. To investigate the mechanisms of bone resorption in MM we established an experimental system that, including bone marrow (BM) stromal cells and bone slices, closely mimicks in vitro the in vivo BM microenvironment. Peripheral blood mononuclear cells (PBMC) from nine patients with MM, three monoclonal gammopathy of undetermined significance (MGUS), and nine normal controls were cultured in this system. PBMC from patients with aggressive and bone devastating MM gave rise to multi-nucleated cells with the morphology and phenotype of osteoclasts. These cells induced bone resorption in vitro which was inhibited by the addition of calcitonin. No bone resorption was observed in cultures of PBMC from patients with MM and limited bone damage, with MGUS and from normal subjects. These findings indicate that patients with aggressive MM have a population of circulating precursors that develop into functionally active osteoclast-like cells once they come in contact with the BM microenvironment. These cells may contribute to the wide-spread and generalized bone erosion observed in the patients.

Aged

Colocalization of the p185HER2 oncoprotein and integrin alpha 6 beta 4 in Calu-3 lung carcinoma cells.

Anti-p185HER2 monoclonal antibodies often show intense reactivity with the basement membrane of tumor cells that overexpress the HER2/neu gene product (p185HER2). To evaluate a possible interaction between p185HER2 and adhesion molecules or their receptors, the polarity of p185HER2 was tested in lung carcinoma cell line Calu-3, which overexpresses this protein, in cultures grown as confluent monolayers or as aggregates. MAb immunostaining patterns indicated that p185HER2 is concentrated on the baso-lateral membrane of cells and that it colocalizes with the integrin alpha 6 beta 4 at the cell-cell junctions where laminin is also found. The same membrane region showed intense reactivity with antiphosphotyrosine antibodies. Furthermore, integrin clustering induced by the specific antibody was accompanied by the clustering of p185HER2, as indicated by immunoelectron microscopy, and by a subsequent increase in p185HER2 tyrosine phosphorylation. Treatment with exogenous laminin also resulted in increased basal levels of p185HER2 phosphorylation. These data suggest a physical interaction between the integrin and the oncoprotein that might be functionally relevant in directly controlling the tyrosine phosphorylation of the catalytic domain of p185HER2.

Antibodies, Monoclonal

Adhesion properties and integrin expression of cultured human osteoclast-like cells.

Osteoclast interaction with extracellular matrix drives the sequential events that end with bone resorption. However, the role of matrix proteins is not yet fully understood. We studied this problem on human osteoclast-like cells derived from giant cell tumors of bone (GCT cells). On GCT cells we considered cytoskeletal organization, adhesion properties, and integrin expression upon plating in serum-free medium onto fibronectin (FN), collagen (COL), thrombospondin (TSP), bone sialoprotein (BSPII), and osteopontin (OPN). GCT cells promptly adhered and spread on FN, BSPII, and OPN, while only 50% adhered on COL and none on TSP. The integrin beta 1 chain was always associated to focal adhesions, while the alpha v beta 3 heterodimer was detected in focal contacts only upon plating on BSPII, OPN, and FN. The focal clustering of beta 1 was impaired by monensin treatment, indicating that endogenous FN secretion was required to drive beta 1 into focal contacts. Conversely, alpha v beta 3 clustering was also not affected by monensin when cells were plated onto plasma FN. Immunoprecipitation of metabolically labeled GCT cell lysates showed that three different heterodimers (alpha v beta 3, alpha 3 beta 1, and alpha 5 beta 1) were assembled. Adhesion to FN was completely inhibited by beta 1 antibodies at dilutions up to 1:400, while beta 3 antibodies, at similar dilutions, impaired spreading but not adhesion. We conclude that alpha v beta 3 is the main integrin used by GCT cells in bone recognition. We also suggest that selected substrata may induce the release and the organization of endogenous FN that eventually drives the recruitment of a beta 1 integrin receptor into focal contacts.

Amino Acid Sequence

Characterization of bone marrow stromal cells from multiple myeloma.

We have cultured multiple myeloma (MM) bone marrow (BM) stromal cells that are able to sustain the in vitro growth of monoclonal B-cells. Our aim was to evaluate which adhesion molecules are expressed and which extracellular matrix proteins are produced by these cells and whether they differ from the stromal cells that can be grown under the same experimental conditions from the BM of monoclonal gammopathies of undetermined significance (MGUS) and of normal donors. MM BM stromal cells that support malignant B-cell development have a striking proliferative ability that is absent in MGUS and normal donors of the same age group and are formed by four major different cell populations. Two kinds of HLA-DR+, CD10+ fibroblast-like cells can be recognized through the expression (or the lack) of alpha-smooth muscle actin isoform; further, macrophages and osteoclasts can be identified. Fibroblast-like cells that express alpha-smooth muscle actin isoform, often organized along stress fibers in a periodic fashion, may be considered as myofibroblasts. Fibroblast-like cells react strongly with antibodies to CD54 (ICAM-1), integrin beta 1, beta 3, beta 5 and some of associated alpha chains. Integrin beta 1 is diffusely exposed on the surface while beta 3 is clustered in focal contacts in association with vinculin. A still undetermined subpopulation of fibroblasts is highly positive for alpha v beta 5 that is clustered at focal contacts as shown by association with stress fiber termini and by interference reflection microscopy. A major difference between MM and normal donor BM stromal cells involves lower deposition and simpler organization of the extracellular matrix proteins (fibronectin, laminin, collagen type IV) deposited by MM fibroblast-like cells. CD14+ macrophages from MM, MGUS and normal donor BM are CD11a+ (alpha L), CD11b+ (alpha M), CD11c+ (alpha X), CD54+ (ICAM-1), CD56+ (N-CAM), beta 1 and beta 2 (CD18) integrin positive. The integrin beta 1 is diffusely expressed on the surface, while beta 2 is concentrated in podosomes. MM osteoclasts show a weak diffuse staining with CD54 and CD56 MoAbs; beta 1 integrin has a diffuse surface expression, while beta 3 integrin is concentrated in the podosomes. Normal donor osteoclasts are CD54- and the staining with CD56 is barely visible. These findings lead us to suggest that the microenvironment provided by MM BM may be significantly different from that of normal BM indicating its potential role in controlling the local proliferation and differentiation of malignant B-lineage cells.

Aged

Psoriatic lesions in patients with chronic liver disease are distinct from psoriasis vulgaris lesions, as judged on basis of integrin adhesion receptors.

Psoriatic lesions are relatively frequent in patients with chronic liver disease. Furthermore, therapy with interferons tends to exacerbate the symptoms. The pathogenesis of psoriatic lesions is unclear. An important question is whether such lesions may be linked to the underlying chronic liver disease in these patients, or whether they are incidental manifestations of psoriasis vulgaris. We collected biopsy specimens from involved and uninvolved skin areas of chronic liver disease patients with psoriatic manifestations, as well as from psoriasis vulgaris patients, and investigated the patterns of integrin adhesion receptors by means of immunohistochemical methods. Integrin expression is known to be characteristically altered in psoriasis vulgaris. We found some of these changes in chronic liver disease psoriatic lesions-namely pericellular redistribution and suprabasal expression of the basement membrane receptor alpha 6 beta 4 and of the intercellular integrins alpha 2 beta 1 and alpha 3 beta 1. However, psoriasis vulgaris causes two other typical changes: One is the induction of the prototype fibronectin receptor alpha 5 beta 1, and the other is the alteration of integrin expression in areas of the epidermis that are macroscopically normal. These two changes were not found in chronic liver disease psoriasis biopsy specimens in 14 patients investigated. Thus integrin expression may be useful in differentiating chronic liver disease psoriatic lesions from psoriasis vulgaris lesions. Even though the two types of lesions are indistinguishable on inspection or by their histological features, they may be caused by distinct pathogenetic mechanisms. It remains to be seen whether the underlying chronic liver disease has a role, albeit indirect, in such mechanisms.

Aged

Integrins and basement membrane proteins in skin carcinomas.

The topography of some integrins and basement membrane proteins in cutaneous basal cell carcinomas (BCC) and squamous cell carcinomas (SCC) has been studied by immunohistochemistry. The typical cell-to-cell distribution of alpha 2 beta 1 and alpha 3 beta 1 of normal epidermis becomes pericellular in both BCC and SCC cells. BCC and SCC also showed different patterns of expression of alpha 6 beta 4, the integrin normally located at the basal surface of basal epidermal keratinocytes. SCC showed high expression and pericellular distribution of alpha 6 beta 4, while BCC did not express alpha 6 beta 4 at all also in Western blotting. The basement membrane was markedly different in the two tumor types. Laminin and collagen type IV were conserved in the basement membrane zone of both tumors while nicein/kalinin was absent from BCC cells. The simultaneous loss of expression of alpha 6 beta 4 and nicein/kalinin in BCC cells but not in SCC cells indicates that alpha 6 beta 4 and one potential ligand may be co-regulated in both BCC and SCC. We suggest a role for this phenomenon in the pathogenesis of these epidermal tumors.

Antigens, Surface

Role of integrins in cell adhesion and polarity in normal keratinocytes and human skin pathologies.

In vitro, normal human keratinocytes reconstitute a differentiated stratified epidermis, maintaining the same gene expression pattern as its in vivo counterpart and are suitable for permanent grafting onto patients. Keratinocyte adhesion to basal lamina and lateral interactions among basal epidermal cells are also mediated by integrin receptors that are sorted to defined plasma membrane domains. The hemidesmosome-associated integrin alpha 6 beta 4 is sharply localized at the basal surface of basal cells and codistributes with laminin and nicein/kalinin; the alpha 2 beta 1 and alpha 3 beta 1 integrins are enriched laterally and play crucial roles in cell-cell interaction and proper colony morphology. During wound healing, proliferating and migrating keratinocytes express on their plasma membrane alpha v beta 5 and alpha 5 beta 1, which allow keratinocyte attachment and migration over the provisional matrix present in the wound. TGF beta, which is an autocrine and paracrine mediator in wound healing, specifically increases the synthesis and expression of alpha v beta 5 and alpha 5 beta 1, induces the de novo expression of alpha v beta 6, and determines the loss of integrin polarization. In hyperproliferative skin diseases, such as skin cancer or psoriasis vulgaris, and in normal keratinocytes forced into more frequent cell cycles, the polarized expression of integrins is lost, and alpha 5 beta 1 becomes costitutively expressed on the plasma membrane. In addition, the alpha 6 beta 4 integrin becomes associated with focal contacts. Nerve growth factor (NGF) is a potent autocrine stimulator of keratinocyte growth and induces melanocyte migration toward the leading edge of a healing wound.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Adhesion

The alpha 6 and beta 4 integrin subunits are expressed by smooth muscle cells of human small vessels: a new localization in mesenchymal cells.

The alpha 6 beta 4 integrin complex is generally thought to be expressed by epithelial cells, where it is localized in specific adhesion structures, the hemidesmosomes. Recent observations have suggested a new localization of the beta 4 integrin chain in small vessels, possibly in endothelial cells, i.e., in cells of mesenchymal origin. In the present study we show that (a) the alpha 6 and beta 4 integrin chains are not expressed by endothelial cells, since they are not localized in von Willebrand factor-producing cells; (b) instead, smooth muscle cells of small vessels are intensely positive to antibodies to both alpha 6 and beta 4 intergrin chains; and (c) in some restricted regions of these smooth muscle cells there is a clear colocalization between alpha-smooth muscle actin and alpha 6 and beta 4 integrin chains, suggesting that a new type of cytoskeletal linkage for the alpha 6 beta 4 integrin complex may occur in mesenchyme-derived cells. Our observations are supported by confocal laser microscopy (CLSM) images of specimens labeled by double immunofluorescence. This technical choice was made to take advantage of the higher resolution offered by CLSM in comparison with conventional immunofluorescence. A careful selection of barrier filters was necessary to separate accurately emission and excitation spectra of the fluorochromes used in this study, resulting in an efficient colocalization analysis.

Actins