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Biomedical subjects

M Presta

Publications and source records attributed to M Presta.

At least 109 records · Page 6Linked to original sources

Characterization of a Mr 20,000 basic fibroblast growth factor-like protein secreted by normal and transformed fetal bovine aortic endothelial cells.

A mitogenic and plasminogen activator (PA)-inducing activity for endothelial cells has been identified in serum-free culture medium of normal AG 7680 and transformed tumorigenic GM 7373 fetal bovine aortic endothelial (FBAE) cells. The activity binds to heparin-Sepharose and it is quenched by polyclonal anti-human placental basic fibroblast growth factor (bFGF) antibodies. In the serum-free conditioned medium of FBAE cells, the anti-bFGF antiserum recognizes an immunorective Mr 20,000 molecule which co-purifies with the mitogenic and PA-inducing activity on a heparin-Sepharose column. The partially purified Mr 20,000 bFGF-like molecule competes with the typical Mr 18,000 125I-bFGF form for the binding to high-affinity bFGF receptors in intact GM 7373 cells. Immunoprecipitation of biosynthetically labeled GM 7373 cells with anti-bFGF antiserum confirms the presence of a Mr 20,000 bFGF-like molecule in the conditioned medium of these cells and identifies the typical Mr 16,000 and Mr 18,000 bFGF forms and two high-molecular-weight immunoreactive Mr 22,000 and Mr 25,000 bFGF forms in their cell extract. Immunoreactive Mr 20,000 bFGF is detectable also in the conditioned medium of transformed nontumorigenic FBAE GM 7372 cells and of adult bovine aortic endothelial cells, but not in the culture medium of nonendothelial cell types, including rat and mouse fibroblasts, human hepatoma, and human endometrial adenocarcinoma cells. The results indicate that bovine endothelial cells secrete a Mr 20,000 bFGF-like molecule which shares several biological, biochemical, and immunological characteristics with the typical cell-associated Mr 18,000 bFGF.

Animals↗

Chemical structure and genotoxic activity of the hepatocarcinogenic beta-blocker DL-ZAMI 1305.

A single administration of the sex-dependent hepatocarcinogenic beta-blocker DL-1-(2-nitro-3-methyl-phenoxy)3-tert-butylamino-propan-2-ol (DL-ZAMI 1305) induces liver DNA damage, as evaluated by alkaline sucrose gradient analysis, in female but not in male Fisher 344 rats. The shift of the methyl-group from the 3-position of the aromatic ring of DL-ZAMI 1305 to the 4- and 5-position causes the progressive decrease of the genotoxic activity of the molecule. No effect on the DNA-damaging capacity of DL-ZAMI 1305 is instead observed when the NO2 group of the aromatic ring is reduced to an NH2 group. Bis-demethylation of the side chain of DL-ZAMI 1305, or its modification to an alpha-hydroxicarboxylic acid or glycol, increases the DNA-damaging capacity of the molecule, which becomes genotoxic also for the liver of the male rat. Thus, modifications of the chemical structure of the aromatic ring or of the side chain of DL-ZAMI 1305 affect the genotoxic activity of the molecule both in male and female rat liver. The modifications of the side chain of DL-ZAMI 1305 investigated in the present work are likely to occur in vivo as a consequence of the hepatic metabolism of the molecule. Sex-dependent differences in the activity of the liver drug-metabolizing system might explain the different genotoxic and oncogenic activity of DL-ZAMI 1305 in the two sexes.

Adrenergic beta-Antagonists↗

Synthesis of urokinase-type plasminogen activator and of type-1 plasminogen activator inhibitor in neuronal cultures of human fetal brain: stimulation by phorbol ester.

Human neuronal brain cultures established from 12- and 14-week-old fetuses synthesize and secrete urokinase-type plasminogen activator (uPA) and limited amounts of tissue-type plasminogen activator (tPA). These cells also produce and secrete the endothelial cell-type PA inhibitor (PAI-1), which forms sodium dodecyl sulfate-stable tPA/PAI-1 complexes in the culture medium. Immunocytochemistry shows a predominant localization of uPA, tPA, and PAI-1 in neuronal cells, with only a very weak positivity detectable in the few glial cells present in these cultures. The protein kinase C (PKC) activator 12-O-tetradecanoylphorbol 13-acetate (TPA) stimulates the synthesis of both uPA and PAI-1, resulting in a final increase in the plasmin-generating capacity of neuronal cell cultures. No significant effect is observed, however, when cells are treated with the TPA analogue 4 alpha-phorbol 12,13-didecanoate, which is inactive as a PKC inducer, or with the neurotrophic polypeptide basic fibroblast growth factor. These data represent the first characterization of the plasmin-generating system in human fetal brain neurons and suggest a role for PKC in the modulation of uPA and PAI-1 synthesis.

Brain↗

Basic fibroblast growth factor in ovulatory cycle and postmenopausal human endometrium.

Biopsies of human endometrium were studied for the presence of basic fibroblast growth factor (bFGF). An immunoreactive Mr 18,000 bFGF-like molecule was detected at high levels both in ovulatory cycle and postmenopausal endometrium. This molecule was identified as bFGF on the basis of its molecular weight, its affinity for heparin, its capacity to induce plasminogen activator production and cell proliferation in endothelial GM 7373 cells, and its cross-reactivity with various anti-bFGF antibodies. The levels of endometrial bFGF do not change during the menstrual cycle but they increase significantly after menopause, as evaluated both by biological and immunological assays. Lower levels of an acidic FGF-like activity were also evident in ovulatory cycle endometrium but, at variance with bFGF, no significant increase of this activity was observed in postmenopausal endometrium. These data represent the first characterization of a polypeptide growth factor present in human endometrium.

Adult↗

Characterization of a Mr 25,000 basic fibroblast growth factor form in adult, regenerating, and fetal rat liver.

A heparin-binding Mr 25,000 immunoreactive bFGF-like protein (ir-bFGF) is recognized in adult rat liver extract by affinity-purified polyclonal anti-human placental bFGF antibodies. Hepatic levels of this protein increase 4-fold in regenerating rat liver during the first 48 h after partial hepatectomy. Also, they appear to be higher in embryonic than in newborn or in adult rat liver. Mr 25,000 ir-bFGF from regenerating rat liver, partially purified by heparin-affinity chromatography, induces plasminogen activator activity and cell proliferation in transformed fetal bovine aortic endothelial GM 7373 cells and competes with Mr 18,000 [125I]bFGF for the binding to high affinity bFGF receptors. The data indicate the presence in rat liver of a high molecular weight form of bFGF whose expression is modulated during embryonic development and liver regeneration.

Aging↗

Induction of plasminogen activator activity by phorbol ester in transformed fetal bovine aortic endothelial cells. Possible independence from protein kinase C.

12-O-tetradecanoyl phorbol 13-acetate (TPA) and 1,2-dioctanoyl-sn-glycerol (diC8) activate protein kinase C (PKC) in transformed fetal bovine aortic endothelial GM 7373 cells. Both molecules cause a similar increase in membrane-associated PKC activity and in the phosphorylation of a PKC-specific endogenous 87-kDa substrate in intact cells. Even though both TPA and diC8 exert a mitogenic activity in GM 7373 cells, only TPA induces also an increase in cell-associated plasminogen activator (PA) activity. Down-regulation of PKC which follows TPA-pretreatment completely abolishes the mitogenic activity of diC8 and the mitogenic and PA-inducing activity of TPA. However, both the PKC inhibitor H-7 and the down-regulation of PKC which follows a prolonged stimulation with diC8 do not abolish the PA-inducing activity of TPA. The PA-inducing activity of TPA is instead inhibited in cultures incubated in the presence of 1 mM EGTA or in a calcium-free medium. The data indicate that TPA and diC8 induce a different pattern of cellular activation in GM 7373 cells and that the PA-inducing activity of TPA might not be mediated by PKC.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Basic fibroblast growth factor is released from endothelial extracellular matrix in a biologically active form.

Basic fibroblast growth factor (bFGF) binds to heparin-like molecules present in the extracellular matrix (ECM) of transformed fetal bovine aortic endothelial GM 7373 cells. Binding of bFGF to ECM can be competed by heparin or heparan sulfate, and ECM-bound bFGF can be released by treating the cells with heparinase or heparatinase. After binding to ECM, bFGF is slowly released into the medium in a biologically active form, as shown by its capacity to induce an increase of cell-associated plasminogen activator activity and cell proliferation. The increase is prevented upon removal of ECM-bound bFGF by a neutral 2 M NaCl wash. Soluble heparin and heparan sulfate reduce the amount of ECM-bound bFGF released into the medium, possibly competing with ECM polysaccharides for heparinase-like enzymes produced by endothelial cells, suggesting that these enzymes are involved in the mobilization of ECM-bound bFGF.

Animals↗

Basic fibroblast growth factor: production, mitogenic response, and post-receptor signal transduction in cultured normal and transformed fetal bovine aortic endothelial cells.

Normal FBAE AG 7680 cells and chemically transformed FBAE GM 7373 cells were compared for their capacity to produce and to respond to bFGF. Normal FBAE cells showed higher levels of bFGF protein and of poly(A)+ bFGF mRNA than transformed GM 7373 cells, indicating that chemical transformation in FBAE cells is paralleled by a decrease of bFGF gene expression. Basic FGF induced cell proliferation in both normal and transformed FBAE cells. However, bFGF appeared to be much more potent in transformed than in normal cells. No differences in bFGF membrane receptors were observed between normal and transformed FBAE cells in terms of apparent molecular weight, number per cell, dissociation constant, and kinetic of downregulation. In respect to normal cells, however, transformed GM 7373 cells showed higher basal levels of PKC activity. This kinase is activated by bFGF and is involved in mediating the mitogenic activity of bFGF, as shown by the capacity of the PKC inhibitor H-7 to abolish the mitogenic activity of bFGF both in normal and transformed FBAE cells. Like bFGF, the PKC activators DAG and TPA exerted a stronger mitogenic activity in transformed than in normal FBAE cells. Thus, the different susceptibility of normal and transformed FBAE cells to bFGF appears to depend on differences in the post-receptor signal transduction mediated by PKC rather than on differences in bFGF receptors. The results indicate that chemical transformation causes significant modifications of bFGF physiology in FBAE cells. The relevance of these modifications to the genesis of tumors of vascular origin deserves further investigation.

Animals↗

The mitogenic signaling pathway but not the plasminogen activator-inducing pathway of basic fibroblast growth factor is mediated through protein kinase C in fetal bovine aortic endothelial cells.

Basic fibroblast growth factor (bFGF) induces cell proliferation and plasminogen activator (PA) activity in transformed fetal bovine aortic endothelial (FBAE) GM 7373 cells. A similar response is observed after treatment with 12-O-tetradecanoylphorbol-13-acetate (TPA). In these cells, bFGF and TPA cause activation of protein kinase C (PKC), as demonstrated by the induction of the phosphorylation of an 87-kD PKC substrate in intact cells and by the increase in membrane-associated PKC activity. Activation of PKC by bFGF or TPA is inhibited in cells made PKC-deficient by pretreatment with high concentrations of TPA. The mitogenic activity of bFGF or of TPA is completely inhibited in PKC-deficient cells or in naive cells treated with the PKC inhibitor H-7. However, these cells proliferate in response to serum, epidermal growth factor, and dibutyryl cyclic AMP. Similar results are obtained in normal FBAE AG 7680 cells. These data indicate that activation of PKC is responsible for the mitogenic activity of bFGF in FBAE cells. On the contrary, the PA-inducing activity of bFGF is unaffected by down-regulation of PKC or by treatment with the PKC inhibitor H-7 in both transformed GM 7373 and normal AG 7680 cells. bFGF induces a rapid 45Ca influx in naive and in PKC-deprived GM 7373 cells. In these cells, addition of EGTA to the incubation medium prevents both the 45Ca influx and the increase in PA activity induced by bFGF, without affecting its mitogenic activity. Even though the involvement of PKC in the increase of cell-associated PA activity induced by bFGF can not be completely dismissed, the present results suggest a role of calcium entry in the modulation of the PA-inducing activity of bFGF.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Modulation of plasminogen activator activity in human endometrial adenocarcinoma cells by basic fibroblast growth factor and transforming growth factor beta.

Human endometrial adenocarcinoma HEC-1-A and HEC-1-B cells produce and secrete the urokinase-type plasminogen activator and trace amounts of the tissue-type plasminogen activator. The two clones, which originate from the same tumor, possess high affinity binding sites for basic fibroblast growth factor (bFGF) and they respond to the addition of human recombinant bFGF with an increase of the synthesis and secretion of urokinase-type and tissue-type plasminogen activators and with an increase in cell proliferation. Transforming growth factor beta, (TGF beta), when added alone or 6 h before bFGF, induces an increase of plasminogen activator synthesis in both cell lines and stimulates the production of the endothelial cell-type plasminogen activator inhibitor in HEC-1-A cells, but not in HEC-1-B cells. Moreover, TGF beta inhibits basal proliferation of both cell lines and suppresses the mitogenic activity of bFGF. We have previously demonstrated that HEC-1-A and HEC-1-B cells produce significant amounts of bFGF. On the basis of the well-established coordinate modulation of solid tumor growth and plasminogen activator production, our data suggest that bFGF may contribute, in an autocrine fashion, to the development of endometrial carcinomas. Moreover, endometrial tumor cells appear also to be a target for TGF beta. Our results demonstrate also that significant qualitative and quantitative differences in the response to growth factors exist in clones derived from the same tumor, and support the view that the properties of in vivo tumors cannot be extrapolated from results obtained with a single isolate of tumor cells.

Adenocarcinoma↗

Purification of basic fibroblast growth factor from rat brain: identification of a Mr 22,000 immunoreactive form.

A 18,000-dalton protein which stimulates plasminogen activator (PA) activity in endothelial GM 7373 cells has been purified from rat brain by using heparin affinity chromatography and ion-exchange chromatography. The purified molecule stimulates PA activity in a dose-dependent manner between 1 and 30 ng/ml. It also stimulates proliferation of GM 7373 cells and DNA synthesis in NIH 3T3 cells in a similar concentration range. The molecule has been identified as a bFGF-like molecule on the basis of its biological activity, its affinity for heparin-Sepharose, and its cross-reactivity with anti-human bFGF antibodies. In the final preparation of the rat brain bFGF, trace amounts (less than 5%) of a contaminant were detectable. This contaminant has a molecular weight of 22,000 and cross reacts with several anti-human placental bFGF antibodies. On the basis of its affinity for heparin-Sepharose and its immunological characteristics, this protein appears to be an high molecular weight form of bFGF.

Animals↗

High molecular weight immunoreactive basic fibroblast growth factor-like proteins in rat pituitary and brain.

Four proteins immunologically related to basic fibroblast growth factor (bFGF) have been detected by Western blot analysis in the extract from rat anterior pituitary. Their apparent molecular weights are 29, 27, 18, and 14 kDa, respectively. A similar immunoreactive pattern has been observed in the rat tumor pituitary GH3 cell line. In the extracts from rat neurohypophysis, hypothalamus, hippocampus, striatum, olfactory tubercles, cerebellum, and cortex only the 29 kDa form is detectable in a significant amount.

Animals↗

Sex hormones modulate the synthesis of basic fibroblast growth factor in human endometrial adenocarcinoma cells: implications for the neovascularization of normal and neoplastic endometrium.

Basic fibroblast growth factor (bFGF) has been demonstrated to exert an angiogenic activity in vivo. Here, the ability of bFGF to stimulate plasminogen activator (PA) production in bovine capillary endothelial cells was used as an assay for the presence of bFGF-like molecules in the extracts of the human endometrial adenocarcinoma AN3CA, HEC-1-A, and HEC-1-B cell lines. The identity of the PA-stimulating activity with bFGF was confirmed by its high affinity for heparin and by its cross-reactivity with antibodies to human placental bFGF. Western blot analysis and immunoprecipitation experiments showed that, in the extracts of the three cell lines, these antibodies recognize a protein with an apparent molecular weight of approximately 17,000 daltons. 17 beta-Estradiol stimulates the synthesis of this bFGF-like molecule in all the endometrial cell lines tested. This stimulation can be abolished by treating the cells with progesterone. These data demonstrate the capacity of sex hormones to regulate bFGF synthesis in tumor endometrial cells, and they suggest that bFGF may play a role in the vascularization of the endometrial adenocarcinoma as well as of the normal endometrium.

Adenocarcinoma↗

Multiple forms of an angiogenesis factor: basic fibroblast growth factor.

An angiogenesis factor has been isolated from human placenta and human hepatoma cells on the basis of its ability to stimulate protease production in cultured capillary endothelial cells. The purified angiogenesis factor also stimulated DNA synthesis and motility in capillary endothelial cells and induced angiogenesis in vivo. Amino acid sequence data revealed that the angiogenesis factor was human basic fibroblast growth factor (bFGF). Other angiogenesis factors isolated on the basis of their ability to stimulate endothelial cell proliferation have also been identified as bFGFs. The bFGFs that have been sequenced show variability in their N-termini. These different forms of bFGF may be naturally occurring processed forms or may be generated by proteases released during the isolation procedure. Recently a bFGF with a large N-terminal extension has been identified. This Mr 25,000 bFGF has the same biological activity and the same affinity for the bFGF receptor as the typical Mr 18,000 bFGFs. The Mr 25,000 bFGF can be converted into an Mr 18,000 form by treatment with low concentrations of trypsin, suggesting that it may be a precursor to the Mr 18,000 bFGF.

Amino Acid Sequence↗

A form of human basic fibroblast growth factor with an extended amino terminus.

The amino acid sequence of a human placental bFGF was determined by a combination of protein and cDNA sequencing. The placental bFGF consists of 157 amino acid residues with a calculated molecular weight of 17,464 and is highly homologous to bovine pituitary bFGF. The human protein contains an amino terminal extension when compared to the sequence established for bovine bFGF (Esch et al., 1985) and to the sequence of the predicted translation product based on human bFGF cDNA clones (Abraham et al., 1986).

Amino Acid Sequence↗

Critical role of gonadal hormones on the genotoxic activity of the hepatocarcinogen DL-ZAMI 1305.

The DNA damaging capacity of the sex-dependent hepatocarcinogen beta-blocker DL-1-(2-nitro-3-methyl-phenoxy)-3-tert-butylamino-propan-2-ol (DL-ZAMI 1305) was evaluated in different sex hormonal conditions. A single injection of DL-ZAMI 1305 causes DNA damage in the liver of the female but not the male Wistar rat. When the hormonal environment of the female rat is converted to 'male type' by ovariectomy and 1 week of treatment with testosterone, DNA damage by DL-ZAMI 1305 is completely abolished. On the contrary, in male rats orchiectomy coupled to 17 beta-estradiol administration increases the amount of hepatic DNA damage by DL-ZAMI 1305 to values similar to those observed in intact female rats. DL-ZAMI 1305 induces hepatic DNA damage also when administered to female Sprague-Dawley and Fisher 344 female rats. It is uneffective instead on the male rats of these strains. Moreover, in the female Fisher 344 rat phenobarbital pretreatment reduces the DNA damaging capacity of DL-ZAMI 1305. Our data indicate that the genotoxic activity of DL-ZAMI 1305 depends on the sex-hormonal status of the animal and that this is possibly due to a modulation of the microsomal mixed function oxidase system by sex hormones.

Animals↗