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F Capony

Publications and source records attributed to F Capony.

11 recordsLinked to original sources

Estradiol stimulates cell growth and secretion of procathepsin D and a 120-kilodalton protein in the human ovarian cancer cell line BG-1.

Ovarian cancers are highly invasive. In a first attempt to define the hormones and factors involved in the control of tumor invasion and metastasis, we have used the human ovarian cancer cell line BG-1 which contains both estrogen and progesterone receptors. Protein synthesis and secretion was assayed by [35S]methionine incorporation and polyacrylamide gel electrophoresis followed by fluorography. Three responses to estradiol were found: 1) procathepsin D secretion was increased, whereas the corresponding intracellular proteins were not significantly affected; 2) an abundant but nonidentified 120-kilodalton (kDa) estrogen-induced secreted glycoprotein, different from CA125, was detected for the first time; and 3) the number of cells as determined by DNA assay was markedly stimulated, reaching a higher level of confluency. The antiestrogen OH-tamoxifen was weakly agonist at low concentrations to stimulate cell growth but was a pure antagonist on the 120-kDa protein. The steroid specificity of these responses strongly suggests that they are mediated by the estrogen receptor. We conclude that cathepsin D secretion is specifically stimulated by estrogen in this ovarian cancer cell line as it is in estrogen receptor-positive breast cancer cells. Both cathepsin D and a newly described 120-kDa secreted glycoprotein are potential markers of hormone responsiveness and/or aggressiveness which deserve to be further studied in clinical ovarian cancers.

Cathepsin D

MCF7 mammary cancer cells respond to bFGF and internalize it following its release from extracellular matrix: a permissive role of cathepsin D.

High and low affinity receptors for basic fibroblast growth factor (bFGF) were detected by binding experiments on MCF7 breast cancer cells. These cells were stimulated for growth by physiological concentrations of bFGF. However, in contrast to endothelial cells, these MCF7 cells did not produce detectable amounts of biologically active bFGF or related heparin-binding growth factor(s) of the FGF family. In vitro, the cathepsin D (cath-D) secreted by MCF7 cells was able to digest extracellular matrix (ECM) and to release ECM-bound 125I-bFGF. When MCF7 cells were cultured on ECM containing bound bFGF, they internalized bFGF, which was slowly and partially proteolyzed in the cells. Processing occurred in acidic compartments and was inhibited by leupeptin. Pepstatin A, an inhibitor of aspartyl proteases, had no effect on the processing but reduced internalization of matrix-bound bFGF by MCF7 cells. Taken together, these results suggest a cooperation between cath-D and bFGF, by which the protease could facilitate the release of bFGF from ECM and its subsequent use by breast cancer cells and/or adjacent cells involved in angiogenesis.

Breast Neoplasms

Estradiol down-regulates the mannose-6-phosphate/insulin-like growth factor-II receptor gene and induces cathepsin-D in breast cancer cells: a receptor saturation mechanism to increase the secretion of lysosomal proenzymes.

We have studied the regulation by estradiol of the mannose-6-phosphate (Man-6-P)/insulin-like growth factor-II (IGF-II) receptor concentration in different breast cancer cell lines. The mRNA level was assayed by Northern blot using the H5.1 cDNA probe. The protein level was assayed by Western ligand blot, by binding saturation with [125I]procathepsin-D on total membrane preparations, and by immunoprecipitation of 35S-labeled proteins. In three estrogen receptor-positive cell lines (MCF7, T47D, and ZR75-1), estradiol specifically decreased the steady state level of the Man-6-P/IGF-II receptor protein and mRNA. Moreover, in different cell lines and in primary culture of normal mammary cells, the secretion of procathepsin-D was inversely correlated with the level of Man-6-P/IGF-II receptor protein and mRNA. We conclude that estradiol down-regulates the Man-6-P/IGF-II receptor in breast cancer cells. Since two of its ligands, procathepsin-D and IGF-II, are induced by estrogen, we propose that the Man-6-P/IGF-II receptor becomes saturated after estrogen treatment. This model might explain the previously described estrogen-induced secretion of procathepsin-D and other lysosomal proenzymes routed by the same transport system.

Breast Neoplasms

Cathepsin D: a protease involved in breast cancer metastasis.

Cathepsin D is an acidic lysosomal protease present in all cells. In estrogen receptor positive and negative breast cancer cell lines, the mRNA coding for pro-cathepsin D is overexpressed and sorting and maturation of the pro-enzyme are altered, via possibly saturation of the Man-6-P/IGF-II receptor, leading to accumulation of the active proteinase in large endosomes and to secretion of the precursor (52K protein). In MCF7 cells, the cathepsin D mRNA is induced directly and transcriptionally by estrogens and indirectly by growth factors. In patients, there is a significant correlation between high cathepsin D concentrations in the cytosol of primary breast cancer and development of metastasis. This marker is independent of other prognostic factors and appears to be particularly useful in axillary node-negative tumors. Transfection of a human cDNA cathepsin D expression vector under the control of SV40 promoter increases the metastatic potential of 3YA1-Ad12 rat tumorigenic cells when intravenously injected into nude mice. The mechanism of cathepsin D-induced metastasis is currently unknown. These results indicate that overexpression of cathepsin D might facilitate breast cancer metastasis, suggesting new possible therapeutic approaches.

Breast Neoplasms

Cathepsin D in breast cancer: from molecular and cellular biology to clinical applications.

Cathepsin D is a ubiquitously expressed lysosomal protease. Initially synthesized as an inactive precursor of 52 kD (pro-cathepsin D), the enzyme is subsequently converted to its active forms by proteolytic processing. Breast cancer cells, unlike normal cells, secrete high levels of pro-cathepsin D; this abnormal secretion is due to both overexpression of the gene and altered processing of the protein. Recent transfection experiments indicate that overexpression of cathepsin D can increase the metastatic potential of tumor cells in nude mice. This study complements clinical studies, which have shown than high cathepsin D concentrations in the cytosol of primary breast cancers may be predictive of subsequent metastasis, particularly for patients with axillary node-negative tumors. These results, and the potential mechanisms by which cathepsin D may promote metastasis, are considered here.

Breast Neoplasms

In vivo effect of anti-estrogens on the localisation and replenishment of estrogen receptor.

Interactions between estrogen recpetors and triaryl ethylene anti-estrogens (U-11100A, MER 25 and CI 628) were tested on immature rat uteri. The accessible and the total (accessible and occupied) estrogen receptor sites were assayed in the cytosol and nuclear extracts using charcoal adsorption. After in vivo administration of anti-estrogens, the estradiol receptor sites were occupied and subsequently transferred to the nuclear compartment. The nuclear localisation of the receptor induced by the antagonist lasted for several days, during which replenishment of the cytosol receptor occurred. The nuclear receptors transferred by anti-estrogens and labelled in vitro with [3H]estradiol, were similar to the nuclear receptor-estradiol complex formed in vivo as far as their sedimentation constants and extractability from nuclei were concerned. Although these anti-estrogens are capable to translocate the estrogen receptor to the nucleus and to induce the replenishment of the cytosol receptor, the mechanism of their antagonism and of their weak estrogenic activity is still not clear.

Animals

High-affinity binding of the antiestrogen [3H]tamoxifen to the 8S estradiol receptor.

The interaction of tamoxifen (ICI 46,474), a synthetic antiestrogen, with uterine cytosol proteins of immature calf and rat has been studied directly using the tritiated compound labeled with a high specific activity. The binding complexes were measured by the dextrancoated charcoal, protamine sulfate and hydroxyapatite assays. Scatchard plots revealed a single class of high-affinity (KD congruent to 1.7 nM) binding sites, with a binding capacity similar to that of estradiol. Competitive experiments showed the same binding specificity for estrogens and antiestrogens. Sucrose gradient analysis revealed an 8S binding protein which could be partially proteolysed by trypsin into a 4S binding protein. Kinetic studies showed that the association rate of tamoxifen was 5 times lower than that of estradiol and reacted according to a second order kinetics. The first-order kinetics of dissociation was considerably higher than that of estradiol, giving a half-dissociation time of 20--40 min at 0--2 degrees C. In some cases tamoxifen displayed two slopes of dissociation, but the proportion of the slow-dissociating complex was always inferior to that found with estradiol. In contrast to estradiol, the kinetic constants ratio (k-/k+) gave a calculated dissociation constant, similar to that determined in equilibrium conditions (KD), agreeing with a simple reactional scheme. We conclude that the antiestrogen tamoxifen binds directly to the 8S cytosol receptor for estrogens and not to another receptor for the antagonists. In contrast to estradiol, the antagonist is rapidly dissociated from the receptor sites and is unable to protect them against thermal inactivation. The affinity of tamoxifen for its receptor sites as determined directly is surprisingly high when compared to its affinity evaluated indirectly by competitive experiments. It is then suggested that the two ligands either bind on two different sites of the same protein or induce a different conformational change of the same binding site.

Animals