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Concomitant alterations of desmosomes, adhesiveness, and diffusion through gap junction channels in a rat ovarian transformation model system.

Gap junctional intercellular communication (GJIC), desmosomes, and cell movement were evaluated in a rat ovarian epithelial cell model system which consisted of an immortalized clonal cell line (SIGC), a pSV3neotransfected clonal derivative (SV-SIGC), and a nude mouse SV-SIGC-tumor-derived cell line (T-SV-SIGC). Complementary ultrastructural, indirect immunofluorescence, and Western blot data identified a relatively small loss of desmosomes and associated cytokeratins in SV-SIGC compared to SIGC but a near total loss in T-SV-SIGC. SIGC and SV-SIGC migrated outward from monolayer-coated microcarrier beads as epithelial sheets, whereas in T-SV-SIGC there was dissociation and migration of individual fibroblastoid cells. GJIC was assessed by fluorescence recovery after photobleaching (gap FRAP) and equations based on Fick's first law of diffusion were derived to quantitatively compare GJIC of systems with different recovery equilibria after photobleaching. Taken together the data suggested that GJIC in SIGC was quantitatively reduced to similar levels by various conditions associated with reduced cell-cell adhesiveness including transformation to T-SV-SIGC, mitosis, and culture in low calcium medium. These results supported linkage between changes in desmosomal adhesiveness, cell movement, and GJIC.

Animals↗

Changes in cytosolic CA2+ are not involved in DDT-induced loss of gap junctional communication in WB-F344 cells.

Recent studies have demonstrated that the insecticide DDT is a tumor promoting agent. Similar to many other tumor promoting agents, DDT has been shown to inhibit gap junctional intercellular communication (GJIC) between cells in culture, and it has been suggested that DDT-induced loss of communication between adjacent cells may depend on changes in cytosolic free Ca2+ concentration [( Ca2+]i). In the present study, the role of [Ca2+]i in DDT-induced loss of GJIC was investigated in WB-F344 in rat liver cells using the scrape-loading/dye transfer assay (SLDT) and the Ca2+ fluorescent indicator, fura-2. Our results show that DDT at noncytotoxic concentrations caused a reversible loss of GJIC. Inhibition of GJIC was not associated with detectable increases in [Ca2+]i, and was not prevented by loading cells with the intracellular Ca2+ chelator, BAPTA. In addition, the hydroquinone, tBuBHQ, which caused a 2-3 fold sustained increase in [Ca2+]i, did not inhibit GJIC. Conversely, when untreated cells were loaded with increasing BAPTA concentrations, GJIC were lost. These results indicate that increases in [Ca2+]i are not responsible for DDT-induced loss of communication and that, in general, an increase in [Ca2+]i within physiological levels is not sufficient to abolish GJIC. However, Ca2(+)-dependent processes that are active at normal resting [Ca2+]i appear to be required for the maintenance of GJIC.

Animals↗

Mechanistic study on liver tumor promoting effects of piperonyl butoxide in rats.

Piperonyl butoxide, alpha-[2-(2-butoxyethoxy)ethoxy]-4,5-methylenedioxy-2-propyltol uene, is a widely used pesticide-synergist. Recently, results were reported indicating that piperonyl butoxide is a hepatocarcinogen in rat. Since the underlying mechanism was not elucidated, we examined the effects on rat liver cells in detail. For this purpose male F344 rats were administered piperonyl butoxide mixed in the diet at concentrations of 0 (negative control), 0.05, 0.2 or 2% for 2 days, 1, 2, and 4 weeks. As a positive control, phenobarbital was administered to rats for up to 4 weeks as a 0.1% solution in the drinking water. Increased liver weight, centrilobular hepatocellular hypertrophy due to increased smooth endoplasmic reticulum, decreased numbers and areas of connexin 32-positive spots per hepatocyte, and increased cell proliferation were observed in rats treated with 0.2 and 2% piperonyl butoxide. Similar results were obtained for 0.1% phenobarbital treated rats. Hepatocellular necrosis suggestive of hepatotoxicity was also observed in the 2% piperonyl butoxide group. These results indicate that the promoting mechanism of piperonyl butoxide in hepatocarcinogenesis is similar to that of phenobarbital, involving an ability to induce CYP isoenzymes and inhibit gap junctional intercellular communication. In addition, increased cell proliferation following hepatocellular necrosis may also play a role at high doses.

Animals↗

Tight junctions and human diseases.

Tight junctions are intercellular junctions adjacent to the apical end of the lateral membrane surface. They have two functions, the barrier (or gate) function and the fence function. The barrier function of tight junctions regulates the passage of ions, water, and various macromolecules, even of cancer cells, through paracellular spaces. The barrier function is thus relevant to edema, jaundice, diarrhea, and blood-borne metastasis. On the other hand, the fence function maintains cell polarity. In other words, tight junctions work as a fence to prevent intermixing of molecules in the apical membrane with those in the lateral membrane. This function is deeply involved in cancer cell biology, in terms of loss of cell polarity. Of the proteins comprising tight junctions, integral membrane proteins occludin, claudins, and JAMs have been recently discovered. Of these molecules, claudins are exclusively responsible for the formation of tight-junction strands and are connected with the actin cytoskeleton mediated by ZO-1. Thus, both functions of tight junctions are dependent on the integrity of the actin cytoskeleton as well as ATP. Mutations in the claudin14 and the claudin16 genes result in hereditary deafness and hereditary hypomagnesemia, respectively. Some pathogenic bacteria and viruses target and affect the tight-junction function, leading to diseases. In this review, the relationship between tight junctions and human diseases is summarized.

Claudins↗

Reduced cell-cell communication between mitotic and nonmitotic coupled cells.

The effects of mitosis on gap junctional intercellular communication (GJIC) were quantified in a clonal cell line of spontaneously immortalized rat granulosa cells (SIGC) using a fluorescence recovery after photobleaching assay. Reduction of GJIC was associated with the process of mitosis and was first apparent at the onset of prophase. Resumption of GJIC between newly divided cells and surrounding cells occurred slowly, requiring several hours following cytokinesis before reestablishment of maximal rates. Mitotic rates of GJIC in SIGC were comparable to values obtained in interphase cells partially uncoupled by 0.5 mM octanol. Limited studies of other cell lines generalized the mitotic-associated reduction of GJIC observed in SIGC. The data suggest that mitosis is one process which alters GJIC. This could be of significance when there is a change in the rate of proliferation, such as in the acquisition of immortalization, an early stage of transformation.

1-Octanol↗

Assay of Rab13 in regulating epithelial tight junction assembly.

Rab13 is recruited to tight junctions from a cytosolic pool after cell-cell contact formation. Tight junctions are intercellular junctions that separate apical from basolateral domains and are required for the establishment/maintenance of polarized transport in epithelial cells. They form selective barriers regulating the diffusion of ions and solutes between cells. They also maintain the cell surface asymmetry by forming a "fence" that prevents apical/basolateral diffusion of membrane proteins and lipids in the outer leaflet of the plasma membrane. We generate stable MDCK cell lines expressing inactive (T22N mutant) and constitutively active (Q67L mutant) Rab13 as GFP-Rab13 chimeras. Expression of GFP-Rab13Q67L delays the formation of electrically tight epithelial monolayers, induces the leakage of small nonionic tracers from the apical domain, and disrupts the tight junction fence diffusion barrier. It also alters the tight junction strand structure and delays the localization of the tight junction transmembrane protein, claudin1. In contrast, the inactive Rab13T22N mutant does not disrupt tight junction functions, tight junction strand architecture, or claudin1 localization. Here we describe a set of assays that allows us to investigate the role of Rab13 in modulating tight junction structure and function.

Animals↗

Risk assessment for possible carcinogens: a critical look.

Our overall understanding of mechanisms of toxicology in relation to human disease, with prevention of disease as a major objective, depends in part on the development of an adequate number of ways to assess risks, both short term and long term. Despite the cost, the long duration of the test, and some pitfalls, the long-term animal tests remain, to date, the only reliable assay for possible carcinogens. Recent work has concentrated increasingly on the development of short-term tests to replace the long-term tests. Such a development would be most welcome from several points of view. To date, a variety of approaches have been or are being used. These include (1) activation to an alkylating agent with DNA as the most important target, generating possible mutations in DNA and DNA damage with or without repair, (2) induction of cell proliferation, at least a few cycles, with DNA synthesis as the major target, again favoring mutations, and (3) decrease in cell-to-cell communication (gap-junctional intercellular communication) as a supposed test for promotion. None of these proposed assays are reliable indices for possible carcinogenic effects of chemicals or other agents; the scientific basis for this negative conclusion is discussed.

Carcinogenicity Tests↗

A-CAM: a 135-kD receptor of intercellular adherens junctions. I. Immunoelectron microscopic localization and biochemical studies.

The recently described adherens junction-specific 135-kD protein (Volk, T., and B. Geiger, 1984, EMBO (Eur. Mol. Biol. Organ.) J., 3:2249-2260) was localized along cardiac muscle intercalated discs by immunogold labeling of ultrathin frozen sections. Analysis of this labeling indicated that the 135-kD protein, adherens junction-specific cell adhesion molecule (A-CAM), is tightly associated with the plasma membrane unlike vinculin labeling, which was present along the membrane-bound plaques of the fascia adherens. In cultured chick lens cells, A-CAM was associated with Ca2+-dependent junctions that were cleaved upon a decrease of extracellular Ca2+ concentrations to less than or equal to 0.5 mM. In the chelator-separated junction, A-CAM became exposed to exogenously added antibodies or to proteolytic enzymes. Upon addition of trypsin to EGTA-treated cells, A-CAM was cleaved into three major cell-bound antigenic peptides with apparent molecular masses of 78, 60, and 46 kD, suggesting that the extracellular domain of A-CAM has a size greater than or equal to kD. Incubation of electrophoretic gels with 125I-concanavalin A (Con A) indicated that one of the major Con A-binding proteins in chicken lens membranes is a integral of 135-kD glycoprotein that was partially purified on Con A-Sepharose column and identified as A-CAM by immunoblotting. Detergent partitioning assay using Triton X-114 biphasic system was carried out to determine whether A-CAM displays properties of an integral membrane protein. This assay indicated that the intact A-CAM molecule was recovered in the buffer phase but its cell-associated tryptic peptides, which presumably lost a great part of the A-CAM extracellular extension, readily partitioned into the detergent phase. The results obtained in this and in the following paper (Volk, T., and B. Geiger, 1986, J. Cell Biol., 103:1451-1464) strongly suggest that A-CAM is a Ca2+-dependent adherens junction-specific membrane glycoprotein that is involved in intercellular adhesion in these sites.

Animals↗

Specificity of gap junction communication among human mammary cells and connexin transfectants in culture.

In a previous paper (Lee et al., 1992), it was shown that normal human mammary epithelial cells (NMEC) express two connexin genes, Cx26 and Cx43, whereas neither gene is transcribed in a series of mammary tumor cell lines (TMEC). In this paper it is shown that normal human mammary fibroblasts (NMF) communicate and express Cx43 mRNA and protein. Transfection of either Cx26 or Cx43 genes into a tumor line, 21MT-2, induced the expression of the corresponding mRNAs and proteins as well as communication via gap junctions (GJs), although immunofluorescence demonstrated that the majority of Cx26 and Cx43 proteins present in transfected TMEC was largely cytoplasmic. Immunoblotting demonstrated that NMEC, NMF, and transfected TMEC each displayed a unique pattern of posttranslationally modified forms of Cx43 protein. The role of different connexins in regulating gap junction intercellular communication (GJIC) was examined using a novel two-dye method to assess homologous and heterologous communication quantitatively. The recipient cell population was prestained with a permanent non-toxic lipophilic dye that binds to membranes irreversibly (PKH26, Zynaxis); and the donor population is treated with a GJ-permeable dye Calcein, a derivative of fluorescein diacetate (Molecular Probes). After mixing the two cell populations under conditions promoting GJ formation, cells were analyzed by flow cytometry to determine the percentage of cells containing both dyes. It is shown here that Cx26 and Cx43 transfectants display strong homologous communication, as do NMEC and NMF. Furthermore, NMEC mixed with NMF communicate efficiently, Cx26 transfectants communicate with NMEC but not with NMF, and Cx43 transfectants communicate with NMF. Communication between Cx26 TMEC transfectants and NMEC was asymetrical with preferential movement of calcein from TMEC to NMEC. Despite the presence of Cx43 as well as Cx26 encoded proteins in the GJs of NMEC, few Cx43 transfectants communicated with NMEC. No heterologous GJIC was observed between Cx26- and Cx43-transfected TMEC suggesting that heterotypic GJs do not form or that Cx26/Cx43 channels do not permit dye transfer.

Blotting, Western↗

Histogenesis of dermatofibrosarcoma protuberans. An ultrastructural study.

Ultrastructural study of five typical lesions of dermatofibrosarcoma protuberans revealed that the basic cell is fusiform and has a somewhat indented nucleus and an even distribution of cytoplasmic organelles. Fragments of basal lamina, intercellular junctions, abundant intercellular fibers, and a tendency to form cellular sheaths also were found. The tumor cells had a strong resemblance to pericytes and perineural cells, as well as marked ultrastructural similarities to neurofibroma. The authors conclude that dermatofibrosarcoma protuberans arises from a primitive fibroblastic cell with a "sheath forming cell" differentiation that has a closer relationship to the perineural cell than to the pericyte.

Fibrosarcoma↗

Effect of cAMP elevating compounds on inhibition of gap junctional communication and induction of morphological transformation in Syrian hamster embryo cells.

An enhancement of the cellular cAMP level has been shown to protect against phorbol ester-induced inhibition of gap junctional intercellular communication (GJIC) and induction of morphological transformation in Syrian hamster embryo (SHE) cells. Cholera toxin, forskolin, 3-isobutyl-1-methylxanthine (IBMX) and theophylline counteracted the 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced inhibition of GJIC. The enhancement of communication by these compounds was independent of the TPA concentration, as well as whether the cells were treated with TPA prior to or after the cAMP elevating agents. The induced increase in the cAMP level by cholera toxin occurred in the same concentration range as the enhancement of GJIC. With forskolin the effect on GJIC was apparent at concentrations 10 times lower than needed to enhance the cAMP level. IBMX and theophylline were found to enhance GJIC with only a 20% elevation of cAMP. The cAMP elevating compounds also suppressed the response of TPA on induction of transformed morphology in SHE cells.

1-Methyl-3-isobutylxanthine↗

A synthetic C22 carotenoid inhibits carcinogen-induced neoplastic transformation and enhances gap junctional communication.

In 10T1/2 cells several dietary carotenoids have previously been shown to be capable of inhibiting carcinogen-induced neoplastic transformation. Two synthetic novel compounds, a C22 carotenoid, C22-polyene-tetrone-diacetal, and a C28 carotenoid, C28-polyene-tetrone, have now been tested in this system. The C22 compound was active in completely inhibiting 3-methylcholanthrene-induced transformation at 10(-5) M when added during the post-initiation phase of carcinogenesis. Gap junctional intercellular communication was strongly upregulated at this concentration. This activity has previously been shown to be highly correlated with, and has been proposed to be mechanistically linked to, inhibition of transformation by carotenoids in 10T1/2 cells. In contrast, the C28 compound, previously reported to be more active as a singlet oxygen quencher than C22, did not demonstrate activity in 10T1/2 cells in either assay system. This lack of activity was not due to chemical instability or lack of cellular uptake: the C28 compound was more stable in cell culture medium over 7 days and achieved higher cellular levels than the C22 compound (5 x 10(-11) mol/10(6) cells versus 0.5 x 10(-11) mol/10(6) cells). The activity of the C22 compound was not due to toxicity, since transformation occurred in carcinogen-treated cultures after its removal; neither was it due to antiproliferative effects on transformed cells, since the C22 compound did not prevent focus formation by transformed cells in reconstruction experiments. The demonstration that synthetic carotenoids possess biological activities comparable to the most potent naturally occurring compounds suggest that rational synthesis of compounds with improved pharmacological properties should be possible.

Acetals↗

Further characterization of the in vitro assay for inhibitors of metabolic cooperation in the Chinese hamster V79 cell line.

12-O-Tetradecanoylphorbol-13-acetate (TPA) has been previously shown to inhibit metabolic cooperation in Chinese hamster V79 cells. An in vitro assay, based on this phenomenon, has been developed to study tumor promoters. Several parameters concerning the metabolic cooperation assay using V79 Chinese hamster cells were further investigated in this report. Pretreatment of the cells with TPA in situ for different periods of time did not result in any detectable change in the inhibition of metabolic cooperation. If cells were replated after TPA treatment, a different result was obtained. There was an apparent decrease in the ability of TPA to inhibit metabolic cooperation when TPA was added back to the TPA-pretreated cultures. However, when TPA was omitted from the TPA pretreated cultures after replating, the inhibition of metabolic cooperation remained high. It was also found that pretreatment of the cells with another chemical, aldrin, exhibited the same pattern as the in situ TPA pretreatment effect on inhibition of metabolic cooperation. In order to obtain a high level of inhibition of metabolic cooperation when using aldrin in this assay, it was determined that the chemical needed to be present for more than one day. Our studies also showed that a 24 h treatment with 6-thioguanine did not kill 6-thioguanine-sensitive cells quickly, nor did it prevent them from performing metabolic cooperation. The relationship of cell density and TPA concentration was also studied. It was observed that a higher cell density required higher TPA concentration to inhibit, maximally, metabolic cooperation. A 'down regulation' type effect was noted when culture was challenged with different concentrations of TPA. These results were interpreted to be consistent with the hypothesis that inhibited gap-junctional intercellular communication is one of the components of tumor promotion.

Aldrin↗

Inhibition of gap junctional blockage by palmitoyl carnitine and TMB-8 in a rat liver epithelial cell line.

Exposure to 12-O-tetradecanoylphorbol-13-acetate (TPA) has been shown to inhibit gap junctional intercellular communication (GJIC) in many cell types in vitro. Using a scrape loading/dye transfer technique, TPA was shown to cause a dose-dependent and transient inhibition of GJIC in WB-F344, a normal rat liver epithelial cell line. Such a down-modulation of intercellular communication was found to be associated with an increase in protein kinase C (PKC) activity. Translocation of this activity to the particulate fraction occurred 10 min after exposure to 16 nM TPA and was consistent with the time course needed to inhibit GJIC. After 6 h exposure to TPA, essentially all the PKC activity was lost concurrent with the recovery of communication in these cells. During this time, the cells also became refractory to inhibition by further addition of TPA. Blockage of communication induced by TPA in WB cells was prevented by treating the cells with 23 microM palmitoyl carnitine for 1 h or 100 microM 8-N, N-(diethylamino)-octyl-3,4, 5-trimethoxybenzoate for 30 min. The results indicate that TPA transiently modulates GJIC in WB cells and PKC activation is possibly involved in blockage of communication in these cells.

Animals↗

Lack of correlation between the gap junctional communication capacity of human colon cancer cell lines and expression of the DCC gene, a homologue of a cell adhesion molecule (N-CAM).

In many human colorectal cancers, the DCC gene encoding for a homologue of the neural cell adhesion molecule (N-CAM) is found to be deleted. Previous work suggested that gap junctional intercellular communication (GJIC) might play an important role in carcinogenesis and could be regulated by the expression of cell adhesion molecules such as E-cadherin in some epithelial cell systems. In order to examine whether the deletion of the putative cell adhesion molecule DCC is related to the level of GJIC, which might, in turn, be important in human colorectal cancers, we compared levels of expression of the DCC gene with the GJIC capacity of a panel of human colorectal adenocarcinoma cell lines isolated from different stages of tumor progression. While the level of GJIC varied between the cell lines studied, we found no correlation between their communication capacity and DCC expression revealed by a reverse-transcriptase/polymerase chain reaction method. This lack of correlation suggests that DCC is not a crucial regulator of GJIC.

Adenocarcinoma↗

Cell-cell interaction and carcinogenesis.

Before carcinogenic stimuli are introduced, a potentially cancerous cell functions normally; growth is controlled and the cell exists in complete harmony with that of surrounding cells in a given tissue. During the process of multi-stage carcinogenesis, such harmony is destroyed and a presumptive initiated cell accomplishes a clonal expansion, neglecting the growth pattern of surrounding normal cells. Recent results from our own laboratory and others strongly suggest that blocked gap-junctional intercellular communication is an important determinant during the process of tumor promotion.

Animals↗

Studies on the tumor-promoting activity of polyethylene: inhibitory activity of metabolic cooperation of polyethylene films containing an antioxidant.

Tumor-promoting activity, inhibitory activity on the gap-junctional intercellular communication of polyethylene (PE) film containing a model antioxidant, 2,2'-methylene-bis(4-methyl-6-tert-butylphenol) (MBMBP), at various amounts was assessed by V79 metabolic cooperation (MC) assay. The extracts prepared from PE film containing MBMBP showed the inhibitory activities and the potencies of the inhibitory activities depended on the amount of MBMBP involved in the film, whereas the extract prepared from MBMBP-free PE film did not show any inhibitory activities. However, the inhibitory activities were observed when MC assay was carried out on the surface of the MBMBP-free film. These findings indicate that tumor-promoting activity of PE film is influenced by the surface property of the film as well as by amount and kind of additives incorporated.

Antioxidants↗

[Study on the expression of connexin 43 in human nasopharyngeal carcinoma].

OBJECTIVE: To study the relationship of the expression of connexin 43 (Cx43) in human nasopharyngeal carcinoma (NPC). METHOD: The cell shape and the expression of Cx43 in 18 cases of NPC and 10 cases of chronic inflammation disease of nasopharyngeal epitheliems (CIDNE) were observed under the laser scanning confocal microscopy and technology of fluorescence. RESULT: The scanning images displayed that the fluorescence signal of Cx43 in cell membrane of NPC was significantly lower than in CIDNE (P < 0.01). CONCLUSION: The expression of Cx43 plays an important role in the development of NPC. The reduced or loss of gap junctional intercellular communication may be one of the important factors in the development of a normal nasopharyngeal epithelium cell into a neoplastic one.

Aged↗