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E Roos

Publications and source records attributed to E Roos.

At least 55 records · Page 3Linked to original sources

Adhesion mechanisms in liver metastasis formation.

Our results strongly indicate that integrin mediated adhesion between metastasizing tumour cells and hepatocytes has a decisive role in the formation of liver metastases. However, it is also clear that tumour cells may use different adhesion pathways and furthermore that the adhesion may be modulated by several factors. The role of adhesion has been demonstrated most clearly for LFA1 on T cell hybridomas, which interacts with ICAM1 present in the liver. Alternative pathways must exist, however, given the high invasive capacity of ESb cells, which is apparently LFA1 independent. A possible alternative is adhesion to fibronectin, which is present in abundance on the hepatocyte surface, both in vivo and in vitro. As there is no basement membrane under the endothelium of liver microvessels, so that tumour cells cannot adhere to laminin and collagen type IV as in other organs, adhesion to this fibronectin may be particularly important for metastasis to the liver. Many tumour types can use this pathway, and many different fibronectin receptors may be involved, including VLA-4, VLA-5 and several alpha V integrins. For carcinomas there is another possibility: Fibronectin receptor deficient cells may still adhere using the integrin alpha 6 beta 4, which binds to an unknown ligand present on the hepatocyte surface. Modulation of adhesion can occur in several ways. One example is steric hindrance by mucins that may strongly affect and even abrogate adhesion, despite high levels of appropriate integrins. Another is the activation required for integrins on lymphoma cells, the best known example of which is the activation of LFA1 on T cell hybridomas. It will be evident, therefore, that the role of adhesion in the formation of liver metastases can only be fully understood if the complete set of adhesion molecules on the tumour cells is known as well as their functional status and the possible effects of both cellular and extracellular modulating factors.

Antigens, Surface↗

Transdermal delivery of buprenorphine through cadaver skin.

The skin permeation of buprenorphine base and HCl salt through cadaver skin was investigated. The octanol-water partition coefficient and solubilities of both buprenorphine free base and HCl salt were determined at 32 degrees C. As expected, buprenorphine free base was more lipophilic than its HCl salt and was practically insoluble in aqueous buffer at pH 8.7. The drug solubility decreased exponentially as the pH of the solution increased, whereas the permeability coefficient increased as the donor solution pH decreased. The skin flux of buprenorphine.HCl was significantly higher than that of the free base from propylene glycol/lauric acid vehicle mixtures. Buprenorphine base permeation through tape-stripped epidermis suggested that in addition to stratum corneum, viable epidermis presented a significant diffusion barrier because of the very low aqueous solubility of the free base observed. The mean steady-state skin fluxes of buprenorphine.HCl were 20.3 and 29.7 micrograms/cm2/h from propylene glycol:lauryl alcohol: ethanol (80:15:5) and propylene glycol: propylene glycol monolaurate: water (80:15:5) vehicle mixtures, respectively. The skin flux of buprenorphine.HCl from various monolithic matrix patches was also evaluated. When capric acid, lauric acid, and lauryl alcohol were separately incorporated into an adhesive matrix, the skin flux of buprenorphine.HCl was enhanced by a factor of 2 to 3.5. Finally, based on the total body clearance and minimum effective concentration of buprenorphine, a transdermal delivery rate of 2.5 micrograms/cm2/h from a 20-cm2 patch was estimated. The in vitro skin permeation data clearly suggest that transdermal delivery of buprenorphine is feasible to achieve a desired systemic analgesic effect.

Administration, Cutaneous↗

The mucin epiglycanin on TA3/Ha carcinoma cells prevents alpha 6 beta 4-mediated adhesion to laminin and kalinin and E-cadherin-mediated cell-cell interaction.

TA3/Ha murine mammary carcinoma cells grow in suspension, do not adhere to extracellular matrix molecules, but do adhere to hepatocytes and form liver metastases upon intraportal injection. Recently we showed that the integrin alpha 6 beta 4 on the TA3/Ha cells is involved in adhesion to hepatocytes. However, despite high cell surface levels of alpha 6 beta 4, TA3/Ha cells do not adhere to the alpha 6 beta 4 ligands laminin and kalinin. Here we show that this is due to the mucin epiglycanin that is highly expressed on TA3/Ha cells. Some monoclonal antibodies generated against epiglycanin induced capping of most of the epiglycanin molecules. TA3/Ha cells treated with these mAb did adhere to laminin and kalinin, and an epithelial monolayer was formed on kalinin, with alpha 6 beta 4 localized in HD1-containing hemidesmosome-like structures and E-cadherin at the cell-cell contact sites. Similar results were obtained after treatment of TA3/Ha cells with O-sialoglycoprotein endopeptidase which removes all epiglycanin. In addition, the enzyme induced E-cadherin-mediated cell-cell aggregation. Both treatments also enhanced the adhesion to hepatocytes, but given the potent antiadhesive effect of epiglycanin it is remarkable that nontreated TA3/Ha cells adhere to hepatocytes at all. We found that during this interaction, epiglycanin was redistributed. We conclude that epiglycanin can completely prevent both intercellular and matrix adhesion, but that this effect can be overcome in certain intercellular interactions because of the induced redistribution of the mucin.

Animals↗

Pertussis toxin inhibition of T-cell hybridoma invasion is reversed by manganese-induced activation of LFA-1.

Pertussis toxin (PT) inhibits invasiveness of T-cell hybridomas in vitro and metastasis formation in vivo. We present evidence for the hypothesis that PT interferes with functional activation of LFA-1. Invasion by TAM2D2 T-cell hybridoma cells of fibroblast monolayers was completely blocked by PT pretreatment, but the cells regained invasiveness in the presence of Mn2+, which activates LFA-1. This invasion was blocked by anti-LFA-1 mAb, and Mn2+ did not stimulate invasiveness of LFA-1-deficient TAM2D2 mutants. TAM2D2 cells did not adhere to surfaces coated with the LFA-1 counterstructure ICAM-1, but Mn2+ induced adhesion. Hence, LFA-1 on TAM2D2 cells requires activation before it can participate in the invasion process. The hypothesis is further supported by the slightly different results obtained with the TAM8C4 T-cell hybridoma. PT inhibited invasion strongly but not completely. This reduced invasion was increased by Mn2+. TAM8C4 cells did adhere to ICAM-1, but Mn2+ enhanced adhesion. Thus, part of LFA-1 on TAM8C4 cells is constitutively active, allowing for some PT-insensitive invasion, but further activation is required for optimal adhesion and invasion. PT blocks G-protein-mediated signals, suggesting that an extracellular factor is involved. This is not a serum component or an autocrine motility factor, since the PT effect was serum-independent, and PT did not inhibit motility. Therefore, it is probably produced by the fibroblasts, and either secreted or associated with the cell surface. These results are in line with the hypothesis that a fibroblast constituent activates LFA-1 via a PT-sensitive G-protein and thus stimulates invasion of T-cell hybridomas into the fibroblast monolayer.

Animals↗

Immuno-EM localization of the beta 1 integrin subunit in wet-cleaved fibronectin-adherent fibroblasts.

Using immuno-EM, we have studied the distribution of the beta 1 integrin subunit in chicken embryo fibroblasts allowed to adhere and spread for 3 hours on a fibronectin-coated surface in serum-free medium. The cells were wet-cleaved, which removed most of the cell body, yielding ventral plasma membranes with little, and sometimes virtually no, associated cytoskeleton. The beta 1 integrin subunit was detected with antibodies against the cytoplasmic domain. In immune fluorescence, it colocalized with adhesion plaques, in a punctate staining pattern, and often seemed to be at the periphery of the plaque. By immuno-EM, beta 1 was in fact found in discrete clusters, not throughout the plaque. In deep-cleaved cells from which virtually all cytoskeleton was removed, clusters could often be seen to be located on fibronectin fibrils. Furthermore, beta 1 was present in clusters at the cell margins, and isolated or in small groups at the very edge of the cell. When fibronectin synthesis, and consequently fibril formation, was inhibited by cycloheximide, large adhesion plaque-like structures were formed at the cell margin. This phenotype was reversed by addition of soluble fibronectin, which was incorporated into fibrils. As in normal plaques, talin and vinculin were present, the plasma membrane was very close (10-20 nm) to the substratum and the fibronectin layer underneath was removed. These plaques did contain beta 1 integrins but they were not in clusters. These observations indicate that the talin-vinculin network of an adhesion plaque is normally anchored to the substratum at discrete beta 1 integrin clusters that may be located on fibronectin fibrils, and that elsewhere the plaque is not necessarily attached to the substratum by interaction of integrins with matrix proteins. In the absence of fibronectin fibrils, adhesion plaque-like structures can be formed, but these are aberrant in size, location and fine structure.

Animals↗

LFA-1 integrin redistribution during T-cell hybridoma invasion of hepatocyte cultures and manganese-induced adhesion to ICAM-1.

We have reported previously that the integrin LFA-1 is essential for metastasis of T-cell hybridomas to the liver. We show here that hepatocytes isolated from normal non-inflamed rat liver express intercellular adhesion molecule-1 (ICAM-1) at the dorsal surface and more prominently at the lateral and substratum-adherent surfaces. Anti-rat ICAM-1 mAb inhibited adhesion of TAM8C4 T-cell hybridoma cells to hepatocytes. Invasion between hepatocytes was not affected, but this is probably due to lack of penetration of the mAb between the hepatocytes. In all hepatocyte-adherent TAM8C4 cells, LFA-1 was concentrated at the adhesion site. Redistribution of ICAM-1 to the interacting hepatocyte membrane was also seen, but only for part of the adherent TAM8C4 cells. LFA-1 was highly concentrated on pseudopods of invading TAM8C4 cells inserted between hepatocytes, and on the upper surface of invaded TAM8C4 cells located under the hepatocytes. ICAM-1 was concentrated in the hepatocyte membrane overlying TAM8C4 cells located underneath the monolayer. These results suggests that ICAM-1 is of major importance for liver invasion by these lymphoma cells. For optimal adhesion to ICAM-1, LFA-1 on T-cell hybridomas requires activation, which apparently occurs upon contact with cell layers that are invaded (G. La Rivière et al., J. Cell Sci. 107, 551-559, 1994). LFA-1 can be activated artificially by Mn2+. To study LFA-1 redistribution upon ICAM-1 interaction with higher resolution, we performed immuno-EM on cells before and after Mn(2+)-induced adhesion and spreading on immobilized ICAM-1. By immune fluorescence, LFA-1 was observed to redistribute to the ICAM-1-adherent surface, and to be concentrated in lamellipodia of spreading TAM8C4 cells. By immuno-EM, LFA-1 was localized in microclusters of approximately 10 gold particles. This was seen in cells fixed in suspension, and the size of these clusters did not change upon adhesion to ICAM-1. LFA-1 was present at high density in thin filopodia, but again in microclusters of similar size. Comparable results were obtained with a cytotoxic T-cell clone. We conclude that Mn(2+)-induced activation of LFA-1 is not associated with the formation or enlargement of LFA-1 clusters.

Animals↗

TA3/St, but not TA3/Ha, mammary carcinoma cell adhesion to hepatocytes is mediated by alpha 5 beta 1 interacting with surface-associated fibronectin.

The cell lines TA3/Ha and TA3/St are derived from the same tumor, grow both in suspension and form liver metastases upon intraportal injection. We have studied the interaction of these cell lines with hepatocytes, which is likely to be relevant for liver metastasis formation. Recently we have shown that the integrin alpha 6 beta 4 is involved in adhesion of TA3/Ha cells to hepatocytes. However, we show here that the alpha 6 beta 4-specific antibodies, that inhibit adhesion of TA3/Ha cells, did not affect adhesion of TA3/St cells to hepatocytes. The beta 4 subunit, present at high levels on TA3/Ha cells, was found to be expressed at a much lower level by TA3/St cells. In contrast, TA3/St cells express much more of the beta 1-integrin subunit than TA3/Ha cells. We assessed whether these differences in integrin expression are responsible for the different adhesion mechanisms used by these cell lines. We show that alpha 5 beta 1, which is expressed by TA3/St cells, and not by TA3/Ha cells, is involved in TA3/St adhesion to fibronectin that is associated with the hepatocyte surface. Since fibronectin is the main extracellular matrix component present on the hepatocyte surface underneath the sinusoidal endothelium, alpha 5 beta 1 may be particularly important for metastasis formation in the liver, as compared to other organs.

Animals↗

The integrin alpha 6 beta 4 on TA3/Ha mammary carcinoma cells is involved in adhesion to hepatocytes.

TA3/Ha mammary carcinoma cells form liver metastases upon intraportal injection. We have studied the interaction between these cells and hepatocytes that is likely to be important for liver metastasis formation. We show that the integrin alpha 6 beta 4, which is highly expressed on TA3 cells, is involved in this interaction. Fab fragments, generated from a polyclonal serum against TA3 cells, inhibited TA3-hepatocyte adhesion. By affinity purification on purified alpha 6 beta 4, we isolated alpha 6 beta 4-specific Fab fragments from this anti-TA3 serum. These antibodies were highly specific for alpha 6 beta 4, as demonstrated by Western blot analysis and immunoprecipitation, and inhibited TA3-hepatocyte adhesion. This shows that alpha 6 beta 4, which thus far has only been implicated in cell-matrix adhesion, can also mediate interactions with cell surfaces. Our results suggest that the high levels of alpha 6 beta 4 often expressed by metastatic carcinoma cells contribute to liver metastasis formation.

Animals↗

In vitro invasiveness of CTL clones and in vivo dissemination of CTL hybridomas.

Activated spleen T cells are invasive in hepatocyte and fibroblast cultures, and this property is dominantly expressed in T cell hybridomas. The invasive potential of the hybrids correlates with their capacity to disseminate in vivo. We have used this model to study the invasive and migratory properties of cytotoxic T lymphocytes (CTLs). Two murine CTL clones were highly invasive, independent of their state of activation. CTL hybridomas, derived from one of the clones, were similarly invasive. In vivo, CTL hybridoma cells disseminated to extravascular sites in the liver, kidneys, lungs, ovaria, tubae, uterus, and lymphoid, mesenchymal, and fat tissues. Within 7 to 14 days, 10(6) cells were lethal in 100% of mice. The adhesion molecules CD2, CD8, CD54, L-selectin, and CD49d (VLA-4 and LPAM-1 alpha-chain) were not expressed by all CTL hybridomas and therefore not indispensable for invasion in vitro and dissemination in vivo. In contrast, LFA-1 (CD11a/CD18), CD44, and VLA-6 (CD49f/CD29) were expressed on all hybrids. LFA-1 antibodies inhibited CTL hybridoma invasion in vitro, but antibodies inhibiting CD44-hyaluronate and VLA-6-laminin interaction had no effect. These results suggest that migration of cytotoxic T cells into noninflamed tissues is independent of their activation state and does not require L-selectin, LPAM-1, CD2, and VLA-4.

Animals↗

Seasonal variation of serum concentrations of beta-carotene and alpha-tocopherol.

We studied the seasonal variation in serum concentrations of beta-carotene and alpha-tocopherol (HPLC) in 17,247 Finnish men who smoked. Month of blood sampling was a statistically significant determinant of serum concentration of beta-carotene in a regression model including age, body mass index, alcohol and fat intakes, total serum cholesterol, and daily cigarettes as covariates. The serum concentrations were lowest in April-June and highest in October-November. The 1.5-fold increase in the serum concentration of beta-carotene during the fall reflects the seasonality of dietary sources of carotenoids in Finland. The serum concentrations of alpha-tocopherol demonstrated no seasonal variation but remained close to 27.6 mumol/L throughout the year. The results indicate that the seasonal variation of serum concentrations of beta-carotene should be taken into account in long-term studies in which comparison of groups or individuals is based on serum concentrations.

Aged↗

Adhesion molecules in lymphoma metastasis.

Lymphoma cells are derived from normal lymphocytes and therefore their metastatic behavior is probably based on mechanisms of migration of these normal progenitors. Several adhesion molecules that are involved in this normal migration, have been identified. These include the 'lymph node homing receptors' and the leukocyte (beta 2) integrins. The limited evidence available for a role of these molecules in lymphoma metastasis is reviewed here. Recently, the regulation of the activity of adhesion molecules was shown to be of pivotal importance for the control of leukocyte traffic. The implications of these findings for lymphoma metastasis are discussed.

Animals↗

Putative invasion-specific proteins in mouse T-cell hybridomas that differ in invasive and metastatic potential.

Fusion of invasive, activated T-lymphocytes with non-invasive BW5147 T-lymphoma cells mainly yields highly invasive (HI), highly metastatic T-cell hybridomas. In addition, several non-invasive (NI), non-metastatic hybrids have been obtained, probably due to loss of involved gene(s) by chromosome segregation. Here we have compared a panel of HI and NI hybrids in a search for proteins specifically expressed by either cell type. MAbs were raised against HI hybrids, but out of more than 1,000 none bound exclusively to HI cells. Furthermore, polyclonal rat, rabbit and chicken antisera did not immunoprecipitate specific proteins from total lysates, and the expression of 18 (T-cell) surface markers did not correlate with invasiveness. These results indicated that the number of differences between HI and NI hybridomas was surprisingly small. This notion was confirmed by 2-dimensional gel electrophoresis. Among 1,000 detectable spots, we found only 2 clear-cut differences between HI and NI T-cell hybridomas, whereas multiple differences were found between individual hybrids. One protein (p130) was expressed at much higher levels by HI than by NI hybrids in this panel, whereas the other (p15) was only seen in NI hybrids. These proteins are primary candidates for a role in invasion.

Animals↗

Tumour necrosis factor-alpha stimulates invasiveness of T-cell hybridomas and cytotoxic T-cell clones by a pertussis toxin-insensitive mechanism.

Tumour necrosis factor-alpha (TNF-alpha) stimulated invasion by mouse T-cell hybridomas and cytotoxic T-lymphocyte clones into rat embryo fibroblast monolayers. The effect on these highly invasive cells was limited: invasion was stimulated maximally to 130% of controls. However, when cells were pretreated with pertussis toxin (PT), which inhibits invasion to +/- 20% of controls, a clearcut effect was observed: 400 U TNF-alpha per ml stimulated invasion usually two- to threefold, and sometimes even up to 10-fold. Therefore, experiments were done with PT-pretreated cells. Stimulation was dose dependent and maximal at 200-400 U TNF-alpha per ml. An anti-TNF-alpha monoclonal antibody completely abolished TNF-alpha-induced invasion. The effect was maximal 30 min after addition of cells and TNF-alpha to the monolayer and then declined. TNF-alpha preincubation of T-cell hybridoma cells, but not of fibroblasts, had a similar stimulatory effect, which was also maximal after 30 min. This shows that TNF-alpha acts directly on the T-cell hybridoma cells. Invasive T-cell hybridomas colonize many tissues from the blood similarly as normal T cells. Our data thus suggest that TNF-alpha can stimulate migration of normal T lymphocytes into inflamed tissues and can promote metastasis of malignant T lymphomas. The signals involved are transmitted via a pertussis toxin-insensitive pathway.

Animals↗

Adhesion molecules in lymphoma metastasis.

Recently, many surface proteins of lymphoid cells that mediate adhesion to other cells and extracellular matrix have been identified. Several of these cellular adhesion molecules (CAM) are also expressed by metastatic lymphoma cells and may mediate adhesion to tissue components during the metastatic process. Correlations observed between expression of certain CAM, like MEL-14 and CD44, and particular patterns of spread, support this notion, but conclusive evidence is scarce. We have used T-cell hybridomas to study the mechanisms of wide-spread lymphoid metastasis. The results obtained with this model are reviewed here. The advantages are that a large number of genetically similar cell lines can be generated, which can be grouped in large panels of highly invasive and non-invasive cells. Invasiveness of these cells in hepatocyte and fibroblast monolayers correlates with experimental metastasis. Lymphoid CAM that are potentially involved in metastasis are reviewed. Several of these CAM are not, or not consistently, expressed by the invasive T-cell hybridomas, indicating that they are not indispensable. Notably, some of the CAM involved in the onset of an immune response or in migration into inflamed tissues, like ICAM-1 and VLA-4, and the 'homing receptors' MEL-14 and LPAM-1 do not seem to be involved. CAM that are consistently expressed by the T-cell hybrids include LFA-1, the beta-1 integrin subunit CD29, CD31 (PECAM-1) and CD44 ('Hermes homing receptor'). We have generated considerable evidence that LFA-1 is required for efficient metastasis of T-cell hybrids, based on the behavior of LFA-1-deficient mutants and revertants. High levels of LFA-1 are required. The relevant counterstructure is probably ICAM-2 rather than ICAM-1. Preliminary results suggest that also a beta-1 integrin, possibly VLA-5, plays a role. Finally, we summarize evidence indicating that CD31 and CD44 are primary candidates for involvement in metastatic spread of T-cell hybridomas.

Animals↗

Organization of talin and vinculin in adhesion plaques of wet-cleaved chicken embryo fibroblasts.

We have studied the fine structure of adhesion plaques in chicken embryo fibroblasts (CEF) and visualized the localization of vinculin and talin using immunoelectron microscopy on CEF opened by 'wet-cleaving'. This procedure, performed with nitrocellulose on cells grown on electron microscope grids, cleaved the CEF close to the inner face of the ventral membrane or at a slightly higher level through the cytoplasm. In the resulting preparations, adhesion plaques were identified by their localization at the end of microfilament bundles and by their density of vinculin and talin. The plaques showed a substructure of moderately electron-dense parallel bands that were interconnected. Both the parallel bands as well as the interconnecting threads showed a high density of vinculin and talin labels, whereas neither the surrounding membrane cytoskeleton nor the overlaying bundled microfilaments were labeled. In stereomicrographs, we observed no difference between the distances from vinculin or talin label, respectively, to the plasma membrane. In early spreading cells, vinculin and talin were found to be deposited simultaneously in fine radiating streaks that covered rather large parts of the ventral membrane at areas of close contact with the substratum. These streaks, which were initially overlayed by an isotropic cytoskeletal network without filament bundles, were the apparent precursors of later formed adhesion plaques. These observations suggest that there are no separate layers of talin and vinculin, but rather that adhesion plaques consist of a dense network of talin and vinculin. The observations strongly support the model proposed by Bendori et al. (1989), J. Cell Biol. 108, 2383-2393, that was based on the location of vinculin- and talin-binding sites in the vinculin molecule.

Animals↗

Invasive and metastatic capacity of revertants of LFA-1-deficient mutant T-cell hybridomas.

From the highly metastatic TAM2D2 T-cell hybridoma we have previously generated three independent mutants that were deficient in the surface expression of the adhesion molecule Leukocyte Function-associated Antigen 1 (LFA-1). Both the invasive capacity and the metastatic potential of these mutants were greatly reduced compared with TAM2D2 cells (F.F. Roossien et al., J. Cell Biol., 108: 1979-1985, 1989). We now show that, during in vivo transplantation, LFA-1 is reinduced in these mutants. From such revertant cell populations obtained after two to three i.p. passages, we isolated clones with different LFA-1 levels. Of each of the three mutant cell lines, the clone with the highest and the one with the lowest LFA-1 level were selected for further study. Invasiveness in fibroblast monolayers correlated strongly with LFA-1 level; i.e., the low-LFA-1 clones (mean LFA level, approximately 10% of TAM2D2) invaded as poorly as the original mutants, whereas the high-LFA-1 clones (greater than 25% of TAM2D2) were highly invasive. Metastatic potential was determined after tail vein injection of 10(6) cells in syngeneic AKR mice. A difference was observed between high- and low-LFA-1 clones, albeit less striking than previously found between LFA-1-negative mutants and parental TAM2D2 cells. The high-LFA-1 clones developed metastases in more mice (76 versus 43%) and earlier (mean survival, 30 versus 37 days). These results provide further evidence for an important role of LFA-1 in invasion and metastasis of mouse T-cell hybridomas.

Antigens, Differentiation↗

Disintegration of adhesion plaques in chicken embryo fibroblasts upon Rous sarcoma virus-induced transformation: different dissociation rates for talin and vinculin.

The localization of talin and vinculin in chicken embryo fibroblasts (CEF) during transformation was studied by immunoelectron microscopy. CEF cells were infected with a temperature-sensitive mutant of Rous sarcoma virus. After 16 h at 42 degrees C, transformation was induced by incubation at 37 degrees C for different intervals up to 3 h. Cells were cleaved by "wet cleaving" as reported previously by us (R. Brands and C.A. Feltkamp, 1988, Exp. Cell Res. 176, 309) and labeled with affinity-purified polyclonal antibodies to talin or vinculin, or monoclonal anti-vinculin. We observed a rapid reduction of vinculin in adhesion plaques within 15 min and a much slower dissociation of talin. This was found using single-labeling procedures and also within the same cell using double labeling. Seemingly intact microfilament bundles were observed associated with adhesion plaques that contained relatively little vinculin. These observations show that an early event in src-induced transformation is the release of vinculin from adhesion plaques. Furthermore, since adhesion plaques with attached filament bundles can exist at least transiently with very little or no vinculin present, it seems likely that vinculin is not, or not the only protein, linking actin filaments to adhesion plaques.

Animals↗

Involvement of LFA-1 in lymphoma invasion and metastasis demonstrated with LFA-1-deficient mutants.

Lymphocyte function-associated antigen-1 (LFA-1) is a leukocyte and lymphoma cell surface protein that promotes intercellular adhesion. We have previously shown that the invasion of hepatocyte cultures by lymphoma cells is inhibited by anti-LFA-1 antibodies (Roos, E., and F. F. Roossien. 1987. J. Cell Biol. 105:553-559). In addition, we now report that LFA-1 is also involved in invasion of lymphoma cells into fibroblast monolayers. To investigate the role of LFA-1 in metastasis of these lymphoma cells, we have generated mutants that are deficient in LFA-1 cell surface expression because of impaired synthesis of either the alpha or beta subunit precursor of LFA-1. We identified at least three distinct mutant clones. The invasive potential of the mutant cells in vitro, in both hepatocyte and fibroblast cultures, was considerably lower than that of parental cells. The metastatic potential of the mutants was much reduced, indicating that LFA-1 expression is required for efficient metastasis formation by certain lymphoma cells.

Animals↗