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P Brachet

Publications and source records attributed to P Brachet.

At least 19 recordsLinked to original sources

Expression of the nerve growth factor gene is controlled by the microtubule network.

Colchicine, nocodazol, and vinblastine, three microtubule-disrupting drugs, were shown to increase the levels of both nerve growth factor (NGF) mRNA and cell-secreted NGF protein in L929 cells, with levels of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) or amyloid precursor protein (APP) mRNAs remaining unaffected. Northern blot analysis demonstrated that colchicine also increased NGF mRNA levels in rat primary astrocytes and mouse skin fibroblasts. The specificity of the effects observed was assessed by the fact that the microtubule-stabilizing agent Taxotere, a semisynthetic compound structurally related to taxol, suppressed the effects of colchicine, whereas lumicolchicine, a colchicine derivative that has no action on the microtubule network, had no influence on NGF expression. Likewise, the disruption of the microfilament network by cytochalasin B did not increase NGF mRNA levels in L929 cells. Furthermore, the increase in NGF gene expression observed following microtubule disruption depended on a cascade of events involving at least one protein kinase, which is not down-regulated by phorbol ester, and on a pertussis toxin sensitive step. These results support the concept that tubulin and/or the microtubule cytoskeleton play an active role in the regulation of the NGF gene.

Amyloid beta-Protein Precursor

Phosphatidylcholine-phospholipase C mediates the induction of nerve growth factor in cultured glial cells.

Addition of phosphatidylcholine-hydrolyzing phospholipase C (PC-PLC) to cultured glial cells increased the levels of nerve growth factor (NGF) mRNA and the amount of cell-secreted NGF. The effect of PC-PLC was 2.5 times higher than that elicited by 4 beta-phorbol 12 beta-myristate 13 alpha-acetate. In cells in which protein kinase C (PKC) was fully inhibited or downregulated, the effect of PC-PLC was reduced-though still evident-and similar to that exerted by sphingosine. Results thus indicate that PC-PLC induces the synthesis of NGF by glial cells by a PKC-dependent and PKC-independent mechanisms.

Animals

Interactions between second messenger pathways influence NGF synthesis in mouse primary astrocytes.

Primary mouse brain astrocytes were stimulated with phorbol 12-myristate 13-acetate (PMA), serum, forskolin and ionophore A23187, in order to investigate the effect of distinct signalling pathways on the expression of the nerve growth factor (NGF) gene and of proto-oncogenes encoding transcription factors of the Fos and Jun families. PMA, and to a lesser extent serum, induced a marked accumulation of NGF transcripts, in agreement with published observations [Brain Res., 570 (1992) 316-322]. The effect of A23187 was less pronounced and that of forskolin barely detectable. No relationship was observed between the expression of NGF gene and that of c-fos, fos-B, fra-1, jun-B proto-oncogenes. In contrast, changes in the levels of NGF transcripts were associated with corresponding modifications of the levels of c-jun transcripts, a fact which suggests that the c-Jun protein exerts a regulatory role on the expression of the NGF gene. In these cells, however, the regulation of NGF synthesis appears complex, since a pretreatment with forskolin or ionophore A23187 interfered with the promoting effect elicited by PMA or serum in inducing an early decline of the levels of NGF transcripts. This phenomenon was accompanied by a corresponding decrease in the amounts of cell-secreted NGF in cells treated with forskolin and PMA. A23187 had a much more striking effect on the production of mature NGF since this compound maintained the level of cell-secreted NGF to basal values, irrespective of the presence of PMA. A similar inhibitory effect was observed with thapsigargin, another compound able to increase the cytosolic concentration of calcium.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Transport and steady-state accumulation of putrescine in brush-border membrane vesicles of rabbit small intestine.

Absorption of polyamines from the lumen is essential for cell proliferation in small intestine but also in other rapidly growing body tissues and tumors. Intestinal uptake of polyamines is thought to involve one or more transport systems, but the characteristics of these systems have not yet been clearly elucidated. Because high levels of putrescine have been identified in intestinal lumen, we explored kinetic, physiochemical, and structural features of uptake of this diamine across rabbit intestinal brush-border membrane vesicles (IBBMV) prepared by CaCl2 or MgCl2 precipitation procedure. Initial rates of putrescine influx were measured during 5-min incubations at 25 or 37 degrees C (optimal temperature) for concentrations of 0.45-145 microM. At both temperatures, kinetics of putrescine transport fitted a model with a single Michaelis-Menten uptake component plus a nonsaturable uptake component. At 37 degrees C, the kinetic parameters for the saturable component of putrescine uptake, Km,app and Vmax,app, were 16.8 +/- 4.7 microM and 19.9 +/- 2.8 pmol.mg protein-1.min-1, respectively. The value of the constant for the nonsaturable component of putrescine uptake (P = 0.45 +/- 0.06 x 10(-8) l.mg protein-1.s-1) suggested this component represented essentially nonspecific binding of putrescine to IBBMV. Cadaverine, spermidine, and spermine were competitive inhibitors of putrescine transport, with inhibition constants equal to 47, 117, and 219 microM, respectively. When effects of a variety of alkyldiamines and structural analogues of polyamines (1 mM) on influx of 5.6 microM putrescine were compared, cadaverine, methylglyoxal bis(guanylhydrazone) (MGBG), and cyclic derivatives of MGBG were found to exhibit the highest inhibitory potencies.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

1,25-dihydroxyvitamin D3 regulates NT-3, NT-4 but not BDNF mRNA in astrocytes.

The effect of 1,25-dihydroxyvitamin D3 on neurotrophin mRNA expression was studied in primary cultures of astrocytes. In addition to its known effects on NGF expression, 1,25-dihydroxyvitamin D3 was shown to upregulate NT-3 mRNA levels, while NT-4 expression was slightly but significantly downregulated. No effect was observed on BDNF mRNA expression. These data clearly show a differential regulation of the four neurotrophins by 1,25-dihydroxyvitamin D3 in primary cultures of astrocytes and suggest that 1,25-dihydroxyvitamin D3 may participate in the expression of NGF, NT-3 and NT-4 in the central nervous system.

Animals

Alterations in intestinal uptake of putrescine and tissue polyamine concentrations in tumor-bearing rats.

Intestinal absorption of putrescine and tissue metabolism of polyamines were investigated in rats grafted with the rapidly growing Mat-Lylu prostatic tumor. These animals exhibited a dramatic 21% decrease in weight and protein, but not DNA, content of their intestinal mucosa, relative to healthy rats reared under similarly controlled nutritional conditions. No significant variation in the specific activities of intestinal brush-border membrane enzymes was observed, however, suggesting a comparable differentiation state of intestinal cells exists in both groups. Putrescine uptake by brush-border membrane vesicles prepared from cancerous or healthy rat intestine was a time dependent process at 25 degrees C. Equilibrium uptake was much greater than could be explained by equilibration of the vesicle space with putrescine, indicating that the diamine was bound to membrane sites. Kinetics of putrescine uptake at 2 min revealed that the process involves two components, a saturable Michaelis-Menten carrier and passive diffusion. With respect to the kinetic parameters of putrescine transport, no significant changes were observed between the tumor-bearing and the control rats. After correction for nonspecific binding to the membranes, putrescine accumulation at equilibrium (75 min) was concentration-dependent and fit a single-site saturable model. Maximum accumulation of the diamine at equilibrium (Bmax) was increased by more than 46% in the cancerous rats relative to the controls, but the dissociation constant (Kd) was unchanged. Efflux of putrescine from the vesicles was slightly slower in the tumor-bearing group, but the differences were generally not significant. No change was observed with respect to the specific activity of ornithine decarboxylase and the concentration of polyamines in the intestinal mucosa. In Mat-Lylu grafted rats fed a standard diet supplemented with [14C]putrescine, about 19% of body radioactivity was recovered in the tumor within 24 h. This was concomitant with a decrease in the percentage of radioactivity retained in the intestinal, renal and hepatic tissues, relative to that retained in the same tissues of healthy rats. Our findings indicate that the presence of the tumor evolves an adaptive response in the small intestine of the rat, involving an increased capacity of the brush-border membrane to accumulate putrescine.

Adenocarcinoma

Synthesis of 1,25-dihydroxyvitamin D3 by rat brain macrophages in vitro.

Cultured microglial cells were examined for their ability to metabolize 25-hydroxyvitamin D3 (25-(OH) D3). Upon exposure to lipopolysaccharide, microglial cells produced a vitamin D metabolite which comigrated with synthetic 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3) in two different systems of high performance liquid chromatography. This metabolite had the same affinity as synthetic 1,25-(OH)2D3 for the chick intestinal 1,25-(OH)2D3 receptor. Lipopolysaccharide-stimulated microglial cells incubated with 3 nM of 25-(OH) D3 synthesized up to 5.76 fmol 1,25-(OH)2D3/8 x 10(5) cells/2 hr. Microglial cells stimulated for 48 hr with interferon-gamma also produced a significant amount of 1,25-(OH)2D3 (4.17 fmol/8 x 10(5) cells/2 hr). In contrast, levels of 1,25-(OH)2D3 produced by resting microglial cells were barely detectable. It is concluded that activated brain macrophages may be committed to synthesize 1,25-(OH)2D3 in vitro. This raises the possibility that activation of microglial cells in vivo may be followed by an increase in the level of 1,25-(OH)2D3 in the central nervous system (CNS). These results support the emerging concept that the brain constitutes a target tissue for vitamin D metabolites.

Animals

Expression and functionality of the trkA proto-oncogene product/NGF receptor in undifferentiated hematopoietic cells.

The expression of the low-affinity NGF receptor (p75) and the trkA proto-oncogene product was analyzed in a series of human hematopoietic cell lines at protein and RNA levels. We did not detect any form of NGF receptor in cell lines displaying a myelomonocytic phenotype (HL60 and U937). In contrast, cells displaying a more immature erythroleukemic phenotype (TF1 and K562) expressed TrkA in the absence of detectable p75. Scatchard analysis showed a single high-affinity site for NGF (kd = 10(-10) mol/L), with a copy number ranging from 300 to 3,000 sites per cell depending on the studied cell line. In addition, NGF induced autophosphorylation of TrkA and could substitute for granulocyte-monocyte colony-stimulating factor to trigger the proliferation of the TF1 cell line, with a half-maximal signal observed at 50 pmol/L, indicating that p75 is not required for DNA synthesis in this cell line. The physiologic relevance of NGF in early hematopoiesis was confirmed by showing that 12% to 15% of progenitor blood cells from mice treated with 5-fluorouracil expressed TrkA and that these cells could be induced to proliferate and differentiate in response to NGF in association with macrophage colony-stimulating factor. Our study demonstrates for the first time that trkA proto-oncogene expression and activation is not restricted to the nervous system, but is also an important element in early hematopoiesis.

Animals

1,25-dihydroxyvitamin D3 regulates the synthesis of nerve growth factor in primary cultures of glial cells.

The effect of 1,25-dihydroxyvitamin D3 (1,25-(OH)2 D3) on nerve growth factor (NGF) synthesis was investigated in primary cultures of astrocytes prepared from brain of neonatal rats. 1,25-(OH)2 D3 elicited a dose-dependent increase of NGF mRNA with a maximal effect at 10(-7) M, which persisted for at least 48 h. Northern blot analysis revealed an expression of the vitamin D3 receptor (VDR) gene in primary glial cells. Treatment of cells with 1,25-(OH)2 D3 led to an increase in the VDR mRNA levels. Similar results were obtained in C6 glioma cells. Exposure of primary glial cells to 10(-8) M 1,25-(OH)2 D3 caused only a 2-fold increase of the levels of cell-secreted NGF after 3 days of treatment. However, a 5-fold increase was observed three days after a second addition of vitamin D3. Likewise, a pretreatment with lower doses of hormone such as 10(-10) M or 10(-9) M enhanced the responsiveness of the cells to a 24 h treatment with 10(-8) M hormone. It appears, therefore, that the duration of the treatment influences the level of synthesis of NGF, possibly as a consequence of the increase of the VDR gene expression. The specificity of 1,25-(OH)2 D3 is supported by the fact that a concentration of 10(-7) M of an another vitamin D3 metabolite, 24,25-(OH)2 D3, had no effect on NGF synthesis. Several lines of evidence indicate that astrocytes constitute the major cell type responsive to 1,25-(OH)2 D3 in primary cultures of glial cells.(ABSTRACT TRUNCATED AT 250 WORDS)

24,25-Dihydroxyvitamin D 3

[Involvement of polyamines in malignant proliferative processes: antineoplastic effects of a polyamine deficiency].

The fact that tumors require polyamines for growth has been repeatedly demonstrated. In vivo polyamines are available both from endogenous (intracellular biosynthesis) and exogenous sources (food and intestinal microflora). We investigated in rats grafted with Mat-Lylu prostatic adenocarcinoma the distribution between tumor and tissues of orally administered [14C]putrescine (Pt). The amount of radioactivity retained by tumors was directly proportional to the tumor volume. In a tumor of 25 cm3 19% of the totally retained radioactivity was found. The accumulation of Pt by intestinal brush-border membrane vesicles prepared from tumor-bearing animals was significantly higher than by vesicles from healthy rats. Our results indicate that the presence of a tumor induces an adaptive response in the small intestine which stimulates the uptake of exogenous polyamines. Our therapeutic strategy was to realise a total blockade of all endogenous and exogenous sources of polyamines by feeding animals with a drug (DFMO, MDL 72527, antibiotics) containing polyamine deficient chow. We observed that polyamine deprivation largely reduced both primary tumor and metastatic development. Natural Killer cell cytotoxic activity and blood formula were restored to normal values after treatment. Furthermore polyamine deprivation enhanced antitumoral efficacy of chemotherapy.

Animals

Expression of 25(OH) vitamin D3 24-hydroxylase gene in glial cells.

The expression of the 25(OH) vitamin D3 24-hydroxylase gene was studied in C6 glioma and rat primary glial cell culture. The expression of the 25(OH)D3 24-hydroxylase gene was not detected in C6 glioma or glial cells cultured in a serum-free medium. However, the 25(OH)D3 24-hydroxylase mRNA was induced in a dose-dependent manner in cells treated with 1,25(OH)2D3. These findings provide further evidence for an involvement of vitamin D3 metabolites in brain function.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase

Activation of nerve growth factor synthesis in primary glial cells by phorbol 12-myristate 13-acetate: role of protein kinase C.

Phorbol 12-myristate 13-acetate (PMA) induces a dramatic production of nerve growth factor (NGF) in primary cultures of newborn mouse astrocytes maintained in a serum-free medium. This stimulation is dose-dependent and a maximal effect on the levels of cell-secreted factor was observed at a concentration of 10 nM. At this concentration, the promoting effect of PMA appears much more important than that elicited by 10% fetal calf serum (FCS) under the same culture conditions. PMA acts primarily on the accumulation of NGF mRNA, which was detected by northern blot analysis after 6 h of treatment. This accumulation may be totally or partially prevented when PMA-treated glial cells are concomitantly exposed to the protein kinase inhibitors H-7, H-9, and to a lesser degree, HA-1004. The known specificity of these inhibitors agrees with the possibility that protein kinase C (PKC), which constitutes so far the sole known target of PMA, represents a key element involved in the stimulation of NGF gene. The role of PKC is further supported by the observation that alpha phorbol didecanoate, which has no activity on PKC, is depleted of effect on the synthesis of NGF. Likewise, 1,2-dioctanoylglycerol (1,2-DOG) has a weak, but significant promoting action on the production of NGF, unlike the 1,3-isomer which is not active on PKC. Finally, a treatment of 15 min with 100 nM PMA is sufficient to stimulate the cells, suggesting that the activation phase of PKC, rather than its down regulation, constitutes an important trigger leading to an increased expression of the NGF gene.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Pertussis toxin provides evidence for two independent signalling pathways leading to the activation of the nerve growth factor gene.

Increased expression of the nerve growth factor (NGF) gene may be obtained by treating L929 fibroblasts with serum, phorbol 12-myristate 13-acetate (PMA), or 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3). The possible involvement of GTP-binding proteins (G proteins) in these regulatory events was monitored by exposing the cells to pertussis toxin (PT), a compound known to inactivate several types of G proteins by ADP ribosylation. Measurements of the pool of NGF mRNA by Northern blot analysis, and quantification of the factor secreted by the cells with a double-site ELISA assay, indicate that pretreatment with PT decreases by about 60% the effect of serum on the levels of NGF transcript and secreted factor. This effect is accompanied by a corresponding decrease of the expression of c-fos gene, which takes place soon after the addition of serum to the cells. In contrast, PT had no effect on the basal level of NGF mRNA found in cells maintained in serum-free medium or in cells stimulated with PMA or 1,25-(OH)2D3. These results indicate that some serum factor(s) acts via plasma membrane receptors able to interact with PT-sensitive G proteins to modulate NGF gene expression. In contrast, 1,25-(OH)2D3 appears to mediate its action through a different signalling pathway, which is likely to require its cytosolic receptor, and is independent of PT-sensitive G protein and c-fos induction.(ABSTRACT TRUNCATED AT 250 WORDS)

Blotting, Northern

Transport of putrescine in the isolated rabbit intestine.

The transepithelial fluxes of putrescine were studied in sections of the three segments of rabbit intestine mounted in an Ussing chamber. The ileum exhibited the highest mucosal-to-serosal (Jms) and serosal-to-mucosal (Jsm) unidirectional fluxes of 1 mumol/l [3H]putrescine. Putrescine net flux (Jnet = Jms - Jsm) was deduced to be positive through the duodenum (Jnet = 53.40 +/- 14.30 pmol h-1 cm-2), not significantly different from zero through the jejunum (Jnet = 8.90 +/- 19.20 pmol h-1 cm-2) and negative through the ileum (Jnet = -34.30 +/- 13.80 pmol h-1 cm-2). Increasing putrescine concentration up to 10 mmol/l led to an increase in Jms, Jsm and Jnet without affecting the transport polarity in the ileum. The tissue retention of putrescine after 100 min was higher by the serosal side than by the mucosal side of the ileum. In parallel experiments, isolated pieces of ileum accumulated putrescine to a five- to sixfold concentration gradient by a ouabain-inhibitable mechanism. In contrast with arginine and in order of decreasing potency, putrescine, cystamine (a transglutaminase inhibitor), spermidine and spermine (1 mmol/l) reduced both unidirectional fluxes of putrescine across the ileum in the Ussing chamber. The latter effectors, except spermine, and N,N-dimethylcasein (1 mg/ml) led to an important, if not complete, suppression of putrescine secretion by the ileum, while the calmodulin antagonist melittin (0.3 micrograms/ml) reversed the polarity of polyamine transport, suggesting the involvement of transglutaminase in putrescine transport. We conclude that the heterogeneous pattern of putrescine transport along the small-intestinal epithelium constitutes an important feature of the regulation of polyamine concentrations in this tissue.

Animals

Regional differences for the D-amino acid oxidase-catalysed oxidation of D-methionine in chicken small intestine.

1. Enzymic oxidation of D-[1-14C]methionine (D-met) to 2-keto-4-methylthiobutanoate (KMB) has been determined using 100,000 g supernatants prepared from chicken tissue homogenates. 2. The small intestinal mucosa contains substantial oxidative activity towards D-met, which represents about one-half and one-tenth the hepatic and renal activity, respectively. 3. KMB is poorly decarboxylated and rather transaminated to L-met. 4. The specific activity for D-met oxidation in the duodenal mucosa is 1.5- and 4.0-fold than in the jejunal and ileal mucosa, respectively. 5. The intestinal D-met-oxidizing activity is dramatically altered by the D-amino acid oxidase specific inhibitor benzoate.

Animals

Thyroid hormone promotes transient nerve growth factor synthesis in rat cerebellar neuroblasts.

Primary cultures of cerebellum from 5-day-old rats indicated that proliferating neuroblasts synthesize and release nerve growth factor (NGF). Since NGF promotes DNA synthesis in these cells, our findings demonstrate that the early developing cerebellum is a suitable physiological model for studying the autocrine mitogenic action of NGF. Thyroid deficiency led to a greater reduction in the NGF content of the cerebellum than of the olfactory bulbs or hippocampus. Cerebellar NGF mRNA was also very sensitive to hormone deprivation. Physiological amounts of thyroid hormone stimulated both the mitotic activity and NGF production of cultured cerebellar neuroblasts. A lack of thyroid hormone is known to markedly alter cell formation in the cerebellum where postnatal neurogenesis is highly significant, in contrast to the olfactory bulbs and hippocampus. Taken together, these results suggest that the hormonal control of cell formation in the cerebellum is, at least partly, mediated by the autocrine mitogenic action of NGF. The thyroid hormone could temporally regulate the transient NGF synthesis by cerebellar neuroblasts directly and/or through its ontogenetic action, and hence all the NGF-dependent trophic effects.

Animals

Putrescine uptake by rabbit intestinal brush-border membrane vesicles.

The transport of putrescine in rabbit intestinal brush-border membrane vesicles is a time-dependent, Na+ and H+ gradient-independent slow process, reaching a high equilibrium level from 1 hr onwards. An approximately 12-fold concentration gradient of 5.4 microM putrescine was generated in the vesicles after 3 h of incubation at 25 degrees C, suggesting a substantial binding of the polyamine to membrane components. Putrescine uptake did not appear to occur via a polyamine-H+ exchange pathway, but the activity of transport was strongly reduced when the medium pH was lowered from 7.5 to 6.0. Although it was inhibited in the presence of SCN-, putrescine uptake was found neither to involve a preferred anion nor to be sensitive to changes in the membrane potential. Putrescine accumulation was substantially stimulated in the presence of a 10 mM concentration of the divalent cations Ca2+, Mg2+ or Ba2+, unlike the monovalent cations K+, Na+ or Li+. Despite the presence of a Ca(2+)-dependent transglutaminase activity, vesicular accumulation does not appear to result from covalent binding of putrescine to membrane peptides. Inhibition of the uptake by polyamines, unlike choline and dibasic amino acids, shows that putrescine may bind noncovalently to other specific anionic sites.

Animals

MC903, an analogue of 1,25-dihydroxyvitamin D3, increases the synthesis of nerve growth factor.

The effect of MC903, an analogue of 1,25-dihydroxyvitamin D3, on the expression of the nerve growth factor (NGF) gene has been studied in L cells. MC903 induces an increase in both NGF mRNA and protein with a time course similar to that obtained with 1,25-dihydroxyvitamin D3. This finding points to the potential importance of 1,25-dihydroxyvitamin D3 derivatives in the treatment of NGF-sensitive disorders.

Animals