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Biomedical subjects

B Sordat

Publications and source records attributed to B Sordat.

At least 19 recordsLinked to original sources

Cystatin C and cathepsin B in human colon carcinoma: expression by cell lines and matrix degradation.

Expression of the cysteine proteinase cathepsin B and its physiological inhibitor cystatin C was analyzed in vitro in 1 human fibrosarcoma and 4 human colon carcinoma cell lines. Cystatin C antigen as well as cathepsin B activity were detected in the conditioned media of the 5 cell lines. The corresponding cell extracts expressed high levels of cathepsin B activity, whereas only trace amounts of cystatin C antigen could be found. Northern-blot analysis revealed the presence in the 5 cell lines of a 0.8-kb cystatin C mRNA transcript and 2 cathepsin B transcripts of 2.3 and 4.3 kb. Pepsin treatment of tumor-cell-released cathepsin B induced an average 7.3-fold increase in activity, indicating that the enzyme was mainly present as a latent form in conditioned medium. The pepsin-activated cathepsin B from one colon carcinoma cell line was further characterized using the cysteine proteinase inhibitors E-64, recombinant cystatin C, a cystatin-C-derived peptidyl inhibitor (Z-LVG-CHN2), and cathepsin-B-specific diazomethyl ketone inhibitors (Z-FT(OBzl)-CHN2, Z-FS(OBzl)-CHN2). This activity was totally neutralized by recombinant cystatin C, suggesting a potential for interaction between released extracellular cathepsin B and cystatin C. In vitro assays of degradation of extracellular matrix showed that cysteine proteinase inhibitors could decrease matrix degradation induced by pepsin-activated conditioned media. With colon cells, this inhibition was not observed, indicating a requirement for an extracellular activation of latent cathepsin B. Our data provide evidence that cystatin C and latent cathepsin B are both released extracellularly by colon carcinoma cells in vitro. They suggest that cystatin C and cathepsin B interactions may participate, in an as yet unelucidated way, in the modulation of the invasive phenotype of human colonic tumors.

Carcinoma

Responsiveness of three newly established human colorectal cancer cell lines to transforming growth factors beta 1 and beta 2.

We have established 3 new human colorectal cancer cell lines (LS411N, LS513, and LS1034) from clinical biopsy samples. These lines are tumorigenic and grow s.c. as adenocarcinomas in nude mouse xenografts. Specific marker chromosomes are observed in each line. Carcinoembryonic antigen is expressed at the surface of all 3 lines, but with marked quantitative differences. Indeed, less than 10% of the cells from the HT-29 line used as a reference express carcinoembryonic antigen while more than 90% of the LS1034 cells do so. LS513 and LS1034 consistently express HLA class I antigens and intercellular adhesion molecule 1 which are not detected at the surface of the LS411N cells. No expression of HLA class II antigens DR, DQ, and DP has been measured on any of the lines. All three lines grow well in 5% fetal calf serum medium without addition of exogenous growth factors. The LS1034 line has been adapted to growth in serum-free conditions and exhibits increased clonogenicity when cells are seeded in serum-free methylcellulose medium, as compared with medium containing 5% fetal calf serum. The LS513 and LS1034 lines have proved to be of particular interest since they respond to the growth-inhibitory action of TGF-beta 1 and TGF-beta 2 in both liquid and semisolid medium. Both factors were, at pM concentrations, equipotent inhibitors of LS1034 cell proliferation. In contrast, higher concentrations of TGF-beta 1 are inhibitory for proliferation of LS513 cells, whereas TGF-beta 2 has no effect on the growth of these cells in liquid assay. On this basis, using appropriate anti-TGF-beta 1 and anti-TGF-beta 1 IgY, we developed a bioassay for TGF-beta 1 and TGF-beta 2. Two of the three lines have indeed been shown to produce latent-TGF-beta 1 activity.

Adult

Induction of apoptosis by wild-type p53 in a human colon tumor-derived cell line.

A wild-type p53 gene under control of the metallothionein MT-1 promoter was stably transfected into human colon tumor-derived cell line EB. Repeated inductions of the metallothionein wild-type p53 gene with zinc chloride results in progressive detachment of wild-type p53 cells grown on culture dishes. Examination at both the light and electron microscopic level revealed that cells expressing wild-type p53 developed morphological features of apoptosis. DNA from both attached and detached cells was degraded into a ladder of nucleosomal-sized fragments. Expression of wild-type p53 inhibited colony formation in soft agar and tumor formation in nude mice. Furthermore, established tumors in nude mice underwent regression if wild-type p53 expression was subsequently induced. Regressing tumors showed histological features of apoptosis. Thus, regression of these tumors was the result of apoptosis occurring in vivo. Apoptosis may be a normal part of the terminal differentiation program of colonic epithelial cells. Our results suggest that wild-type p53 could play a critical role in this process.

Base Sequence

Modulation of the malignant phenotype with the urokinase-type plasminogen activator and the type I plasminogen activator inhibitor.

Gene transfer techniques were utilized to evaluate the role of urokinase-type plasminogen activator (uPA) and plasminogen activator inhibitor type 1 (PAI-1) in enhancing or preventing the expression of the invasive malignant phenotype, respectively. Mouse L-cell transfectants expressing human uPA or human PAI-1 as well as mouse B16 transfectants expressing mouse uPA or human PAI-1 were generated. These transfectants were tested using a variety of experimental methods including smooth muscle cell matrix solubilization in vitro, lung colony formation in vivo and co-cultures of antagonist-expressing cells in vitro. Results from these studies provide direct evidence for an enhancing role of uPA in malignant invasion and experimental metastasis and for a modulatory role of PAI-1 in tumor cell-mediated breakdown of extracellular matrices.

Animals

Plasminogen-activator inhibitor type 1 is a potent natural inhibitor of extracellular matrix degradation by fibrosarcoma and colon carcinoma cells.

We have analyzed the role of plasminogen-activator inhibitor type 1 (PAI-1) in the regulation of tumor cell-mediated extracellular matrix degradation. Immunocytochemical analysis revealed PAI-1 associated with microgranular and fibrillar material of the extracellular matrix and demonstrated the presence of PAI-1 as a cell surface-associated antigen. Transforming growth factor beta significantly reduced matrix degradation mediated by HT-1080 human fibrosarcoma cells. This inhibition was correlated with an increase in PAI-1 antigen expression, whereas urinary-type plasminogen activator (u-PA) secretion was unaffected. In this experimental system, PAI-1 regulated extracellular matrix breakdown, as added PAI-1 inhibited matrix solubilization, whereas monoclonal antibodies to PAI-1 increased it. A cell line (LPAI) producing high levels of biologically active PAI-1 was established by transfection of a human PAI-1 cDNA clone into mouse L cells. Coculture experiments demonstrated that LPAI cells prevented matrix degradation by Lu-PA cells (L cells expressing high levels of u-PA) or Co-115 human colon carcinoma cells (expressing tissue-type plasminogen activator). These results indicate that PAI-1 may play a critical role in the regulation of extracellular matrix degradation during tumor cell invasion.

Animals

Urokinase-type plasminogen activator biosynthesis is induced by the EJ-Ha-ras oncogene in CL26 mouse colon carcinoma cells.

CL26 murine colon carcinoma cells express urokinase-type plasminogen activator (u-PA) mRNA and activity after transfection with the activated c-Ha-ras-I (EJ-ras) oncogene cloned from the EJ bladder carcinoma. PA activity and mRNA in control cells transfected with the non-mutated c-Ha-ras-I (CO-ras) gene remained negative. Ras mRNA was detected in EJ-ras- and CO-ras-transfected cells, but not in untransfected or pSV2-neo-transfected cells. These results indicate that u-PA biosynthesis can be modulated by EJ-Ha-ras-dependent pathways of signal transduction.

Animals

Mouse L cells expressing human prourokinase-type plasminogen activator: effects on extracellular matrix degradation and invasion.

A cosmid (cos pUK0322) harboring the complete human urokinase-type plasminogen activator (u-PA) gene and Geneticin resistance as a selectable marker was isolated from a human genomic library and characterized. After transfection of cos pUK0322 into mouse L cells and selection, several plasminogen activator (PA)-expressing clones were obtained and one (LuPA) was chosen for additional study. The PA expressed was identical to human pro-u-PA in enzymatic, electrophoretic, and antigenic properties. The expression of PA was stable over 50 population doublings. The regulation of the transfected gene was studied by treatment of the cells with various hormones and other effectors. Expression of PA activity was inhibited fivefold by dexamethasone and stimulated two- to threefold by agonists of the adenylate cyclase dependent pathway of signal transduction, such as dibutyryl cyclic AMP and cholera and pertussis toxins. The modulation of PA activity was associated with corresponding changes in mRNA steady-state levels. The phenotypic changes associated with pro-u-PA expression were analyzed in vitro by degradation of 3H-labeled extracellular matrix (ECM), invasion of a matrigel basement membrane analogue, and by light and electron microscopy. LuPA cells and reference HT-1080 fibrosarcoma cells, in contrast to control Lneo cells transfected with the neomycin resistance gene, degraded the ECM and invaded the matrigel basement membrane. Matrix degradation correlated with the modulation of pro-u-PA gene expression as it was inhibited by dexamethasone and promoted by dibutyryl cyclic AMP. Inhibition of PA or plasmin using anti-u-PA IgG or aprotinin prevented ECM degradation and invasion. These results demonstrate that u-PA expression alone is sufficient to confer to a cell an experimental invasive phenotype.

Animals

T cell antigen receptor expression in athymic (nu/nu) mice. Evidence for an oligoclonal beta chain repertoire.

The expression of T cell antigen receptors (TCR) in congenitally athymic (nude) mice has been investigated. Lymph node T cells from 4-5-mo-old athymic mice expressed full-length transcripts for the TCR alpha and beta chains at a level two-to three-fold lower than normal littermate (nu/+) controls. Low levels of expression of TCR protein at the surface of a proportion of nude T cells was demonstrated by staining with monoclonal antibodies KJ16-133 and F23.1 (directed against protein products of a family of TCR beta chain variable region genes known as V beta 8). Immunoprecipitation studies confirmed that F23.1 reacted with a similar molecular species on nude and nu/+ T cells. Studies with individual nude mice revealed a striking heterogeneity in the proportion of T cells expressing KJ16/F23.1 that was not seen in normal animals. This heterogeneity correlated with the expression of mRNA specific for V beta 8 but not with total expression of full-length beta chain transcripts. Analysis of Lyt-2+ and L3T4+ T cell subsets in individual nude mice further demonstrated that F23.1 expression was frequently associated with only one subset, and several cases were seen in which all L3T4+ cells expressed F23.1. In contrast, a similar (and constant) proportion of Lyt-2+ or L3T4+ T cells expressed F23.1 in control mice. Southern blotting of Hind III-digested DNA from nude T cells with a C beta probe revealed a more restricted pattern of TCR beta chain rearrangements than was seen for normal T cells. Taken together, these data provide compelling evidence that TCR gene rearrangement and expression can occur extrathymically. Furthermore, they suggest a model according to which the restricted functional repertoire of T cells previously observed in individual nude mice results from an oligoclonal expansion of T cells that have randomly rearranged and expressed TCR beta chain genes.

Animals

Plasminogen activators, plasminogen activator inhibitors and procoagulant analyzed in twenty human tumor cell lines.

We have analyzed the CM of 20 human tumor cell lines for the presence of PA, PA-I and PC. Most of the cell lines expressed PA activity as measured by a radioiodinated fibrin plate assay. The urinary type and tissue-type PA activities were specifically quantified by means of purified inhibitory antibodies. U-PA and/or t-PA antigen, as measured by radioimmunoassays, were detected in all but 4 of the CM and were generally 10 times more concentrated than PA activity, indicating the presence of specific PA-Is. Analysis of CM by electrophoresis followed by fibrin-agarose zymography demonstrated the presence not only of free but also of inhibitor-complexed PA. Affinity purification demonstrated that 8/20 cell lines expressed detectable PA-I activity. The PA-I1 and PA-I2 inhibitors were most frequently observed, while PN was recovered only from CM of the HT1080 fibrosarcoma cell line. PC activity, as measured by the plasma recalcification time method, was found in 9/20 CM. It was of the thromboplastin tissue factor type since most of its activity was lost when assayed with a Factor VII-deficient plasma.

Blood Coagulation Factors

Developmental coordination of alpha-amylase and psp gene expression during mouse parotid gland differentiation is controlled posttranscriptionally.

We have compared the developmental expression of psp and Amy-1a genes during postnatal differentiation of the mouse parotid gland. The mRNAs encoded by both genes accumulate with identical kinetics and accumulate in the same subset of acinar cells early in development. Transcriptional activation of the two genes is unexpectedly asynchronous. While the increase of alpha-amylase mRNA levels in development arise from increased Amy-1a transcription, psp is transcribed at almost adult levels at 12 days of age, but cellular psp mRNA accumulation is very low. Since nuclear processing of psp pre-mRNAs and transport of mature mRNA into the cytoplasm occur with similar efficiencies in young and adult mice, the rapid turnover of psp mRNA in young animals occurs in the cytoplasm.

Animals

Cellular growth and metabolic adaptations to nutrient stress environments in tumor microregions.

Heterogeneity of cell subpopulation growth was significantly modulated by different oxygen and glucose environments and necrosis in multicellular tumor spheroids of rodent and human origin. PO2 profiles within spheroids measured with microelectrodes showed major differences associated with different oxygen and glucose supply conditions, indicating important interactions of these two substrates affecting oxygen consumption rates and cellular viability. Cellular interactions in association with the development of growth quiescence and differentiation changed oxygen consumption rates and slopes of PO2 profiles within spheroids. Protein synthesis in monolayer cells in culture was severely inhibited when exposed to extreme hypoxia, but certain proteins were synthesized at increased rates. Many of these oxygenated regulated proteins can also be induced by glucose deprivation. The data demonstrate cellular and subcellular changes in tumor models in vitro because of variations in oxygen and glucose supply. Many of these changes would be expected to occur in tumor microregions in vivo and could have important consequences for therapeutic responsiveness.

Animals

Human primary colon carcinomas xenografted into nude mice. I. Characterization of plasminogen activators expressed by primary tumors and their xenografts.

Analysis was made of plasminogen activator (PA) activities present in 0.125% Triton X-100 extracts of human primary colon carcinomas and of their respective serial subcutaneous xenografts in nude mice. A correlation between tumor invasiveness and PA expression was observed in that primary tumors exhibiting clearly invasive growth patterns demonstrated high concentrations of PAs while subcutaneous xenografts, exhibiting noninvasive pseudobenign growth, contained very low levels of PA activity. The decrease in fibrinolytic activity observed in subcutaneous xenografts was not due to an increase in inhibitors of fibrinolytic activity. Immunologic characterization of PAs in tumor extracts showed that over 90% of human PA activity was of the urokinase type. Furthermore, tumor-derived urokinase was shown to be present in a proenzyme form. It was resistant to diisopropyl fluorophosphate (DFP) and was not inhibited by purified PA inhibitor. However, after its activation into urokinase by plasmin, it was completely inhibited by DFP and PA inhibitor.

Adenocarcinoma

Establishment of two rabbit mammary epithelial cell lines with distinct oncogenic potential and differentiated phenotype after microinjection of transforming genes.

The goal of this work was to establish an assay for transformation of epithelial cells. Two epithelial cell lines were obtained after microinjecting transforming genes into primary rabbit mammary secretory cells. The cell lines were analyzed for their oncogenic potential and for the maintenance of a differentiated phenotype. A fully transformed cell line, which retained epithelial cell organization, was obtained by coinjecting simian virus 40 DNA and the activated human c-Ha-ras gene. The proliferation rate of these cells was high, with a doubling time of 16 h. Their growth was anchorage independent, and they had lost contact inhibition. The cells were tumorigenic in nude mice, but had no metastatic potential. Both microinjected DNAs were efficiently transcribed and translated, in contrast to the casein genes, which were expressed in primary cells but not in the transformed cell line. An immortalized cell line established after injection with simian virus 40 DNA alone was characterized by a moderate rate of proliferation with a doubling time of approximately 30 h. The growth of these cells was contact inhibited and anchorage dependent. The cells were not tumorigenic in nude mice. The viral DNA was expressed during early passages, as shown by the presence of the large T antigen in cell nuclei, but not at later passages. A high number of lactogenic hormone receptors were found associated with the cell surface. Despite the presence of these receptors, no induction of genes coding for milk proteins was observed after addition of prolactin. These data demonstrate that this assay system can be used to assess the immortalizing and transforming potential of candidate oncogenes in epithelial cells.

Animals

Human primary colon carcinomas xenografted into nude mice. II. Modulation of tumor plasminogen activator activity by the host tissue environment.

The characterization and quantitation of plasminogen activators (PAs) expressed by human colon carcinoma cell lines and primary colon carcinomas inoculated into nude outbred (nu/nu) mice, either as subcutaneous or gut-implanted (GI) xenografts, were discussed. The two colon carcinoma cell lines used in this study, Col 112 (moderately differentiated) and Col 115 (poorly differentiated), differ in their PA expression, the former being a urinary-type PA and the latter being a tissue-type PA producer. Both cell lines demonstrate a positive correlation between tumor invasiveness and measured PA activity; subcutaneous xenografts growing as noninvasive pseudobenign tumor masses were associated with low levels of PA activity, whereas GI xenografts exhibiting invasive growth expressed higher PA activity. Furthermore, coinoculation of Col 115 tumor cells sc and GI in the same host induced high levels of PA activity in subcutaneous xenografts, suggesting a stimulatory effect of the GI xenograft on subcutaneous xenograft PA expression. Also, purified murine plasminogen was demonstrated to represent an efficient substrate for tumor-secreted human PA.

Animals