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[Correlation of GLC-82 lung carcinoma cell aggregation in suspension culture to the activation of protein kinases FAK, AKT, ERK, and SRC].

BACKGROUND & OBJECTIVE: Our previous study revealed that tyrosine kinase FAK can partly mediate the aggregation of tumor cells in suspension culture, therefore, suppress cell apoptosis and promote cell proliferation. However, the downstream pathway of FAK in the formation of cell aggregation is unclear. This study was to investigate the roles of FAK and its potential downstream molecules ERK, AKT, and SRC in mediating aggregation of lung adenocarcinoma GLC-82 cells in suspension culture. METHODS: Morphology of the aggregations of GLC-82 cells and normal lung HBE cells in polyHEMA suspension culture was observed. Cell apoptosis was studied by DNA electrophoresis on agarose gel. The ability of cell transformation was studied by colony formation assay. The phosphorylation of the protein kinases was investigated by Western blot. FAK was silenced by RNA interference. RESULTS: GLC-82 cells survived and aggregated in suspension culture; while apoptosis occurred in HBE cells which formed no aggregation in suspension culture. Phosphorylation levels of FAK, ERK, AKT, and SRC were related to GLC-82 cell aggregation. FAK silencing partly blocked the formation of GLC-82 cell aggregation, and decreased the phosphorylation levels of ERK and AKT; the colony formation rate in soft agar was significantly lower in GLC-82 cells with FAK silencing than in GLC-82 cells without FAK silencing [(12.2+/-1.1)% vs. (3.6+/-0.7)%, P=0.001]. CONCLUSION: The formation of GLC-82 cell aggregation is partly mediated by FAK signal pathway, and ERK and AKT are the downstream molecules of FAK.

Adenocarcinoma↗

[Study of the mechanisms of protease-induced cell aggregation. I. Effect of trypsin on the aggregating capacity of chick embryo fibroblasts].

The administration of trypsin (1-100 mcg/ml) to the chick embryo fibroblast suspension, removed from the monolayer by means of EDTA, causes a pronounced aggregation of the cells. The aggregation completes within a few minutes and occurs in two steps. On the first step of the trypsin-induced aggregation, the amount of aggregating cells, grows rather slowly and monotonously, whereas on the second step, a sharp and non-linear acceleration of the aggregation process is observed. The data presented favour an assumption that the second stage of the fibroblast aggregation may be due to a structural rearrangement of cytoplasmic membranes that involves a splitting of a small, critical number of peptide bonds of cell surface proteins.

Animals↗

[Induced cell aggregation].

Data from literature concerning cell aggregation induced by various substances are considered. The biochemical nature of cell aggregation inducers, participation of membrane receptors in this process, biochemical aspects and practical significance of the cell aggregation process are discussed.

Animals↗

An essential role for calmodulin in regulating human T cell aggregation.

After activation of T cells with either CD3 antibodies or phorbol esters, we have found that T cell-cell aggregation, integrin-dependent actin reorganisation and cell spreading are strongly suppressed by any of three structurally different calmodulin antagonists, without any effect on the amount of CD11/CD18 integrin binding to the actin cytoskeleton. However, only T cell receptor-induced, and not phorbol ester-induced, aggregation and cell spreading are prevented by inhibitors of phosphatidylinositide (PI) 3-kinase. These results suggest that PI 3-kinase lies upstream of calmodulin in the signalling pathway leading to T cell aggregation, cell spreading and actin reorganisation and that cell spreading and actin reorganisation are essential for T cell adhesion.

Actins↗

Nevus cell aggregates associated with lymph nodes: estimated frequency and clinical significance.

Aggregates of cells resembling those of cutaneous nevi have been found in the capsules of lymph nodes. Although seemingly rare, this extraordinary lesion could conceivably occur often enough to be more than a pathological curiosity, and should be differentiated from metastatic tumor. Slides from every axillary lymph node dissection for female mammary carcinoma in the years 1964 and 1974 at Memorial Hospital were reviewed, as were slides from 100 consecutive lymph node dissections performed during 1974 in patients with malignant melanoma. Nevus cell aggregates (NCA) were associated with three of 17,504 lymph nodes (0.017%) obtained from 909 mastectomies, or 0.33% of the cases. Among the 100 lymph node dissections for malignant melanoma, NCA were found associated with three of the 2,607 lymph nodes examined (0.12%), or 3.0% of the cases studied. Since NCA occur in association with lymph nodes more often than previously thought, the possibility that they may be a potential source of malignant melanoma in patients without a demonstrable cutaneous or mucosal primary is discussed.

Axilla↗

Cadherin-dependent cell aggregation is affected by decapeptide derived from rat extracellular super-oxide dismutase.

A synthetic HAV-containing decapeptide homologous to the amino acid sequence 44R-Q53 in rat extracellular superoxide dismutase B affects cadherin-dependent cell aggregation. Cell lines, some of them transfected, expressing different types of cadherins were tested using in vitro cell aggregation and cell dissociation assays. A concentration-dependent inhibition of aggregation by the EC-SOD-derived HAV-containing peptide was detected only in N-cadherin expressing cells. These results suggest the localisation and possible protective role of EC-SOD B for cells expressing N-cadherin.

Amino Acid Sequence↗

A tumour cell aggregation promoting substance from rat ascites hepatoma cells.

A substance capable of promoting tumour cell aggregation was released from rat ascites hepatoma cell (possibly from the cell surface) kept in Hanks' balanced salt solution (free of calcium and magnesium) in the cold, and then partially purified by chromatography with DEAE-Sephadex and gel filtration with Bio-gel. The thermostable substance seemed to be a glycoprotein and its molecular weight was about 72,000 when measured by gel filtration on Sephadex G-200. It had no proteolytic activity. The material was clearly effective for rat ascites hepatoma cells as well as SV40 transformed cells, but less effective for Chang's cells and apparently ineffective for normal rat liver cells and red blood cells. The action of this material was more potent than that of Jack bean concanavalin A when assayed for aggregation of SV40 transformed cells. Its effect was not influenced by concanavalin A inhibitors such as alpha-methyl-D-glucopyranoside, N-acetyl-D-glucosamine and D-glucose.

Animals↗

Possible role of galectin-9 in cell aggregation and apoptosis of human melanoma cell lines and its clinical significance.

Galectin-9 expression was examined in 6 human melanoma cell lines. Among them, MM-BP proliferated with colony formation, but MM-RU failed. RT-PCR analysis revealed evident expression of galectin-9 mRNA in MM-BP but not in MM-RU. MM-BP expressed galectin-9 protein both on the surface and in the cytoplasm, whereas MM-RU expressed it only weakly in the cytoplasm. Exogenous galectin-9 induced in vitro both cell aggregation and apoptosis of MM-RU proliferating without colony formation. Association of galectin-9 expression in melanoma cells with prognosis of the patients bearing melanocytic tumors was further examined. Galectin-9 protein was strongly and homogeneously expressed in melanocytic nevi, but down-regulated in melanoma cells especially in metastatic lesions. High galectin-9 expression was inversely correlated with the progression of this disease, suggesting that high galectin-9 expression in primary melanoma lesions links to a better prognosis.

Annexin A5↗

Involvement of Phenolic Esters in Cell Aggregation of Suspension-Cultured Rice Cells.

Fluorescence microscopy of rice (Oryza sativa L.) callus sections showed that all of the walls fluoresced blue in water (pH 5.8) and green in ammonia (pH 10.0), both characteristics of feruloyl esters. Such fluorescence in the walls of cells cultured in Gamborg's B5 medium was much stronger than that in amino acid (AA) medium. Laser scanning microscopy showed that the level of fluorescence was higher in the intercellular layer, especially at corner junctions between cells, suggesting that ferulic acid ester derivatives are located in the middle lamella as well as in the wall. Extracellular polysaccharides appearing during cultivation in AA medium were more highly feruloylated than those in B5 medium during cultivation. Both the levels of ferulic and diferulic acid and the relative proportion of diferulic acid in the walls of cells increased on transfer of the cells cultured in AA medium to B5 medium. The walls of cells cultured in B5 medium maintained constant levels and proportions of the phenolic acids. Removal of phenolic acids from wall preparations by carboxylesterase facilitated the solubilization of noncellulosic polysaccharides. Treatment of the cell aggregates grown in AA medium with an enzyme that hydrolyzes feruloyl esters decreased the size of the aggregates to between 20 and 500 [mu]m, compared with an original size between 200 and 1000 [mu]m. These findings suggest that feruloyl and diferuloyl esters between polysaccharides are involved in the aggregation of cultured rice cells.

Journal Article↗

Ultraviolet-induced alterations of beat rate and electrical properties of embryonic chick heart cell aggregates.

Embryonic heart cell aggregates were irradiated with ultraviolet light at wavelengths between 260 and 310 nm. Spontaneous beat rate was monitored with the aid of a closed-circuit TV camera and, in separate experiments, electrophysiological changes were assayed by intracellular recording. The characteristic response of 7-day aggregates was an increase in spontaneous beat rate to a maximum plateau level, followed by a rather abrupt cessation of beating. Intracellular recordings during irradiation showed a marked decline in the maximum rate of rise, overshoot, and repolarization phase of the action potential, and a significant change in threshold toward zero. The action spectrum for the termination of beating peaked between 290 and 295 nm; it fell off sharply at longer wavelengths and more slowly at shorter wavelengths. The maximum increase in beat rate was increasingly greater for shorter wavelengths and exhibited no peak in the wavelength range investigated. The sensitivity of aggregates to 295-nm light, as measured by the inverse of irradiation time required to terminate beating, decreased with increasing aggregate size and external potassium concentration, was relatively independent of temperature, and increased with embryonic age. The ultraviolet-induced increase in beat rate and termination of beating are attributed to separate complementary processes, a depolarization of the membrane, and a decline in "fast" sodium conductance.

Action Potentials↗

Homotypic cell aggregation via conformational change of CD44 molecule induced by anti-CD44 monoclonal antibodies.

The homotypic cell aggregation of leukocytes is an unique adhesive event which is caused by cellular activation. Anti-CD44 monoclonal antibody (mAb) induces homotypic cell aggregation of hematopoietic cell lines expressing CD44, but the mechanism of homotypic cell aggregation is poorly understood. We used four mAbs against CD44: TL-1 which was newly developed and seemed to react with a non-hyaluronate binding site, OS/37 and BU52 which recognized a hyaluronate binding site, and Hermes-3 which recognized a non-hyaluronate binding site. TL-1 treatment induced strong homotypic cell aggregation in several types of cell lines including a B cell line from a patient with leukocyte adhesion deficiency syndromes (LAD) and normal peripheral blood lymphocytes (PBL). OS/37 and BU52 also induced weak homotypic cell aggregation. None of these anti-CD44 mAbs-induced homotypic cell aggregations was blocked by antibodies against LFA-1, ICAM-1, VLA-4, or L-selectin. Interestingly, the TL-1-induced homotypic cell aggregation was blocked by Hermes-3 or OS/37, but not by BU52. BU52-induced homotypic cell aggregation was blocked by Hermes-3 or OS/37, but not by TL-1. OS/37-induced homotypic cell aggregation was blocked by Hermes-3, TL-1 or BU52. The blocking experiments with anti-metabolic agents revealed that the induced homotypic cell aggregation was energy-dependent and associated with intracytoplasmic actin filaments. This homotypic cell aggregation did not require de novo protein synthesis, because it was not affected by pretreatment with either cycloheximide or actinomycin D. FACS analysis revealed that TL-1 binding did not affect the intensity of expression of the CD44 molecule on the cell surface.

Animals↗

Evidence for a pertussis toxin-sensitive signalling pathway in the dual action of angiotensin II on growth hormone release in pituitary cell aggregates.

In anterior pituitary cell aggregates cultured in the presence of the glucocorticoid dexamethasone (DEX) angiotensin II (AII) had a dual effect on growth hormone (GH) release. The peptide stimulated the release in aggregates from 2-week-old rats, whereas the peptide had an inhibitory effect in cultures from adult rats. Treatment of aggregates from adult rats with pertussis toxin (PT) reversed the inhibitory effect of AII on GH release in a stimulatory effect; PT treatment of aggregates from 18- to 20-day-old rats significantly enhanced the stimulation of GH release by AII. The effect of PT was seen only when DEX was added to the culture medium. The present data suggest that the glucocorticoid-dependent stimulus-effect coupling of AII on GH release involves both a stimulatory and an inhibitory component, the latter being abolished by PT, and that the stimulatory component predominates during immature life while the inhibitory one during adult life.

Age Factors↗

Do nonionic contrast media increase red cell aggregation and clot formation?

Red cell aggregate formation was studied both macroscopically and microscopically in blood mixed with a contrast medium, either ioxaglate or iohexol. Whole blood was layered on top of the contrast medium, and after being shaken, blood cells were separated from the medium by centrifugation. The kinetics of red cell aggregate formation were measured by a transparent rheoscope and a photoaggregometer at different shear rates. Coagulation studies were conducted on citrated platelet-rich plasma mixed with contrast media. Platelet shapes were observed with phase contrast optics, and coagulation times were measured. It was demonstrated that the increased red cell aggregation, which occurred during the initial contact between blood and the contrast medium, dispersed after being submitted to shear force and did not re-form in the remaining plasma. Since this phenomenon is associated with high concentrations of contrast media in nonflowing blood, the high shear rate in arteries and arterioles make it unimportant in the in vivo situation. Within highly concentrated contrast media solutions, blood clot formation was not inducible, and the risk of thrombus formation in fresh blood drawn into contrast medium-filled syringes appears minimal.

Blood Coagulation↗

Cell aggregation assay: a rapid means of evaluating and selecting in vitro transformed cells.

A cell aggregation assay for evaluating in vitro transformation has recently been reported. Transformed cells formed larger cell aggregates than counterpart normal cells when suspended in liquid media above an agar base, a property which correlates with growth in soft agar and tumorigenicity. Using a human osteosarcoma cell line transformed by viruses and chemicals, we found increased cell growth of the transformed aggregates over untransformed cells. Moreover, certain aggregation properties (size/survival of aggregates) of transformed rat, mouse, hamster, human, dog, cat, chimpanzee, and sheep cell lines were found to be correlated with tumor potential, regardless of the method of transformation (spontaneous, chemical, or virus induced). Certain lines derived from cell aggregates growing in liquid medium above an agar layer were tumorigenic in nude mice, whereas the parent transformed line was not. Therefore, this assay can be utilized not only to evaluate tumorigenic potential, but also for selection of cells, which have undergone malignant transformation.

Animals↗

Production and turnover of cAMP signals by prestalk and prespore cells in Dictyostelium discoideum cell aggregates.

Dictyostelium discoideum prestalk cells and prespore cells from migrating slugs and culminating cell aggregates were isolated by Percoll density centrifugation. Several activities relevant to the generation, detection, and turnover of extracellular cyclic AMP (cAMP) signals were determined. It was found that: the two cell types have the same basal adenylate cyclase activity; prespore cells and prestalk cells are able to relay the extracellular cAMP signal equally well; intact prestalk cells show a threefold higher cAMP phosphodiesterase activity on the cell surface than prespore cells, whereas their cytosolic activity is the same; intact prestalk cells bind three to four times more cAMP than prespore cells; no large differences in cAMP metabolism and detection were observed between cells derived from migrating slugs and culminating aggregates. The results are discussed in relation to the possible morphogenetic role of extracellular cAMP in Dictyostelium cell aggregates. On the basis of the properties of the isolated cells we assume that a gradient of extracellular cAMP exists in Dictyostelium aggregates. This gradient appears to be involved in the formation and stabilization of the prestalk-prespore cell pattern.

3',5'-Cyclic-AMP Phosphodiesterases↗