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C Faucher

Publications and source records attributed to C Faucher.

At least 91 records · Page 5Linked to original sources

The 28-kDa protein whose phosphorylation is induced by protein kinase C activators in MCF-7 cells belongs to the family of low molecular mass heat shock proteins and is the estrogen-regulated 24-kDa protein.

We have previously reported the presence of a 28-kDa protein in human mammary adenocarcinoma MCF-7 cells, whose phosphorylation by phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA) and permeant diacylglycerol 1,2-dioctanoyl-sn-glycerol was correlated to growth arrest induced by the protein kinase C (PKC) activators. We now investigate the possible identity of this protein with the estrogen-regulated "24-kDa" protein shown as related to the mammalian heat shock protein 27 (Fuqua, S. A. W., Blum-Salingaros, M., and McGuire, W. L. (1989) Cancer Res 49, 4126-4129). 32P-Labeled 28-kDa protein from TPA-treated MCF-7 cells was immunoprecipitated with a 24-kDa-specific monoclonal antibody. Immunoblots from cell extracts fractionated by two-dimensional isoelectric focusing/SDS-polyacrylamide gel electrophoresis demonstrated that TPA induced the conversion of a 28-kDa isoform "a" (pI 6.7) to a more acidic isoform "b" (pI 6.2). Two-dimensional gel analysis of [3H]leucine-labeled MCF-7 cell extracts demonstrated that conversely to TPA, which induced only phosphorylation of 28-kDa protein, heat shock induced both synthesis (increase of isoform a) and phosphorylation (conversion of isoforms a to b) of the protein. 32P labeling of MCF-7 cells allowed demonstration of the presence of an extra phosphoisoform "c" (pI 5.9) upon TPA as well as heat shock treatment. When cells were pretreated with the bisindolylmaleimide GF109203X, a selective inhibitor of PKC, the heat shock-induced phosphorylation was unchanged, while the TPA effect was almost abolished, suggesting that the heat shock-activated protein kinase was very likely different from PKC. However, peptide mapping of the 28-kDa phosphoprotein suggested identical sites of phosphorylation upon TPA and heat shock stimulation. Partial amino acid sequencing of the 28-kDa protein revealed identity with both the 24-kDa protein and the mammalian HSP27. The fact that estrogens and PKC, respectively, regulate expression and phosphorylation of this 24/28-kDa protein strongly argues for its key role in MCF-7 cell proliferation and differentiation.

Amino Acid Sequence↗

Lipoprotein(a) in patients treated by continuous ambulatory peritoneal dialysis.

Lipoprotein(a) [Lp(a)] has been identified as an independent, inherited risk factor for atherosclerotic vascular disease. An elevation of Lp(a) plasma levels has been documented in several series of uremic patients submitted to maintenance dialysis treatment methods or after renal transplantation. We have measured the plasma levels of Lp(a) using an enzyme-linked immunosorbent enzyme method in 19 patients treated with continuous ambulatory peritoneal dialysis (CAPD). Mean (+/- SD) concentration of Lp(a) was significantly higher in the patients than in the 19 healthy controls (51 +/- 48 mg/dL v 16 +/- 15 mg/dL, P < 0.005). No significant differences in Lp(a) levels were found between diabetic patients (n = 5) and nondiabetic patients (n = 14) or between patients who had (n = 6) or had not (n = 13) suffered a previous major cardiovascular complication. No correlation was evident between Lp(a) levels and the patients' ages, period of time on CAPD treatment, or any other lipid-lipoprotein investigated parameter. The mechanisms accounting for the elevation of Lp(a) levels in CAPD patients as well as the specific value of increased Lp(a) concentration as a cardiovascular risk predictor in uremic patients remain thus far speculative. Additional experimental and clinical studies are warranted before the administration of drugs to attempt to lower Lp(a) levels in CAPD patients can be recommended.

Adult↗

Elevated lipoprotein (a) levels in primary nephrotic syndrome.

Elevated plasma levels of total cholesterol and increase in the hepatic synthesis of some apo B-containing lipoproteins have been noted in the nephrotic syndrome. Apoprotein (a), the apolipoprotein distinguishing lipoprotein (a) [Lp(a)] from low-density lipoprotein, is equally of hepatic origin, and Lp(a) recently has been shown to possess both atherogenic and thrombogenic activities. However, little is known of Lp(a) levels in nephrotic patients. We measured plasma Lp(a) concentrations in 11 patients with primary nephrotic syndrome in the absence of hematuria, hypertension, and renal insufficiency. Histologic lesions were minimal-change disease in five cases, membranous glomerulopathy in four cases, and focal and segmental glomerulosclerosis in two cases. Mean levels of Lp(a) (98 +/- 92 mg/dL [mean +/- SD]) were markedly elevated in the nephrotic patients as compared with the controls (14 +/- 13 mg/dL). No correlation was noted between plasma Lp(a) and proteinuria, albuminemia, total cholesterolemia, low-density lipoprotein cholesterol, apoprotein B100, or plasminogen. Furthermore, there was no correlation between Lp(a) levels and apoprotein (a) isoform size. In four patients, the level of Lp(a) decreased approximately fourfold after remission of the nephrotic syndrome under corticosteroid treatment. Our observation that Lp(a) levels are elevated in the nephrotic syndrome is consistent with the hypothesis that these patients may be at an increased risk of cardiovascular and thrombotic complications.

Adult↗

[Definitive end-stage chronic kidney failure after cisplatin treatment].

Renal failure secondary to CDDP is due to acute tubular necrosis and is usually reversible. We report 4 cases of definitive renal failure secondary to administration of cisplatin (CDDP). Three women and one man, mean age 40 +/- 8 years (24 to 64 years), at onset of dialysis are reported. They had received 1 to 4 courses of CDDP for an endometrial carcinoma (n = 2), a breast carcinoma or a thymoma. The mean total dose of CDDP was 447 +/- 169 mg (160 to 900 mg). There was no additional nephrotoxic drug. Before treatment serum creatinine concentration was normal (77 +/- 7 mumol per liter) in all patients. In 2 cases dehydration (due to vomiting and use of mannitol) occurred during CDDP treatment. One patient was treated 30 days after a nephrectomy. At the onset of dialysis, renal ultrasound was normal. In 3 cases dialysis was necessary within 15 days following chemotherapy. In one case renal function deteriorated progressively to end stage renal failure 12 months after CDDP treatment. Dialysis was performed in 3 cases by hemodialysis and in one patient by peritoneal dialysis. All patients remained more than 6 months on dialysis. Three patients died from their cancer. One patient, being considered cured from his thymoma, is currently being evaluated for a kidney transplantation. Our observations outline the potential severity of CDDP nephrotoxicity. Systemic hydration with serial serum creatinine measurements are mandatory during and after CDDP administration these patients.

Adult↗

[Renal lymphoma in a transplanted patient treated with cyclosporine].

The effectiveness of renal transplantation has been considerably improved by the use of cyclosporine as an antirejection agent. However, because of those very same immunosuppressive properties, this substance may lead to several infectious or tumoral complications that raise complex therapeutic problems. This article reports about one case of immunoblastic lymphoma discovered in a patient who received renal transplantation and who had been treated with cyclosporine for two years.

Cyclosporine↗

Acute lysis pneumopathy after chemotherapy for acute myelomonocytic leukemia with abnormal marrow eosinophils.

Acute respiratory failure developed in two patients with hyperleukocytic acute myelomonocytic leukemia with abnormal marrow eosinophils within 1 to 3 days after the beginning of high-dose induction chemotherapy. The presence of moderate pulmonary leukostasis before chemotherapy initiation, the simultaneous occurrence of an acute tumor lysis syndrome, the lack of evidence of any other cause of respiratory distress, and the clinical evolution lead the authors to attribute pulmonary injury to lysis of resident leukemic cells. The responsibility of eosinophilic cellular constituents for the diffuse alveolar damage is discussed.

Acute Disease↗

Purification and characterization of two basic beta-1,3-glucanases induced in Colletotrichum lindemuthianum-infected bean seedlings.

Two beta-1,3-glucanases which are rapidly induced in the incompatible interaction between bean (cv. Processor) and Colletotrichum lindemuthianum race beta were purified to homogeneity. Characterization of the two enzymes, GE1 and GE2, showed that they both had a basic isolectric point and a similar molecular weight (36,500 for GE1 and 36,000 for GE2), but differed in their pH optimum, thermal stability, and specific activity. GE2 was present in higher amounts but was shown to be less active than GE1 against laminarin and fungal cell walls isolated from race beta of the fungus. Both enzymes were specific for beta-1,3 linkages and showed a strict endolytic mode of action. Further characterization of GE2 was achieved by amino acid sequence analysis of tryptic peptides; the degree of homology shared with other basic beta-1,3-glucanases depended on the plant source. A time-course study showed that GE1 and GE2 were increased during infection. They were also induced by fungal elicitors, thereby indicating that they originate from the host.

Amino Acid Sequence↗

Regulation of cyclic adenosine 3',5'-monophosphate-dependent protein kinase activity and regulatory subunit RII beta content by basic fibroblast growth factor (bFGF) during granulosa cell differentiation: possible implication of protein kinase C in bFGF action.

We have previously shown that basic fibroblast growth factor (bFGF) inhibits the FSH-induced differentiation of cultured rat granulosa cells, as manifested by prominent reduction of the LH receptor expression. We now investigate the possible sites and mechanism of action of bFGF. Whereas bFGF decreased the cAMP formation induced by FSH, it enhanced the cAMP production caused by cholera toxin and forskolin, suggesting that bFGF exerted its inhibitory action on cell differentiation at a step to cAMP production. Photoaffinity labeling with 8-azido-[32P]cAMP revealed that bFGF markedly reduced the FSH-induced increase in the level of regulatory subunit RII beta of the cAMP-dependent protein kinase (PKA) type II. In contrast to its striking effect on RII beta expression (70-80% inhibition), bFGF decreased PKA enzymatic activity by only 30%. On the other hand, transforming growth factor-beta (TGF beta) slightly amplified the stimulatory action of FSH and antagonized the bFGF inhibitory effect on both LH receptor expression and RII beta synthesis. We report that the protein kinase C (PKC) activator 12-O-tetradecanoylphorbol-13-acetate (TPA), which impaired granulosa cell differentiation, also abolished the RII beta synthesis induced by FSH. The activation of PKC by bFGF in granulosa cells was supported by the following findings: (i) bFGF markedly enhanced the production of diacylglycerol (2.3-fold stimulation at 5 min), the intracellular activator of PKC; (ii) bFGF promoted tight association of PKC to cellular membranes, a process that is believed to correlate with the enzyme activation; (iii) bFGF induced the phosphorylation of an endogenous M(r) 78,000/pI 4.7 protein that appears as a specific PKC substrate; (iv) bFGF mimicked the TPA-induced transmodulation of the epidermal growth factor (EGF) receptor, reducing by 36% the 125I-EGF binding on granulosa cells. We conclude that bFGF may exert its repressive action on RII beta synthesis, PKA activity, and granulosa cell differentiation by primarily targeting PKC activation.

Animals↗

Decreased expression of the membrane inhibitor of complement-mediated cytolysis CD59 on T-lymphocytes of HIV-infected patients.

OBJECTIVE: To study the expression of the membrane inhibitor of complement-mediated cytolysis, CD59, on peripheral blood mononuclear cells (PBMC) from HIV-infected individuals. METHODS: CD59 membrane expression was investigated by double immunofluorescent staining on purified PBMC from HIV-infected patients and seronegative controls. RESULTS: CD59 expression was decreased on peripheral blood T-lymphocytes from HIV-infected patients. Decreased expression of CD59 antigen did not correlate with clinical stage of disease. Low CD59 expression on T-lymphocytes was mediated by several mechanisms, including: (1) decrease in number of CD4+ cells which normally express high amounts of the antigen; (2) relative increase in CD8+ cells, more specifically in CD8+ CD57+ cells expressing a low density of the antigen; (3) loss of or decreased CD59 expression on a subpopulation of CD3+ belonging either to the CD4+ or to the CD8+ subset. Decreased CD59 expression was consistently observed on CD8+ lymphocytes. CD59 expression was normal on patient red blood cells, monocytes and B-lymphocytes. CONCLUSIONS: HIV infection is associated with a T-cell-specific defect in CD59 membrane expression. Decreased CD59 expression may result in increased susceptibility of T-lymphocytes from HIV-infected patients to complement-mediated lysis.

Antigens, CD↗

[Renal lymphoma in a patient after kidney transplantation and cyclosporine therapy].

The effectiveness of renal transplantation has been considerably improved by the use of cyclosporine as an antirejection agent. However, because of those very same immunosuppressive properties, this substance may lead to several infectious or tumoral complications that raise complex therapeutic problems. This article reports about one case of immunoblastic lymphoma discovered in a patient who received renal transplantation and who had been treated with cyclosporine for two years.

Cyclosporine↗

[Lipoprotein A].

Explore the source record for details and available documents.

Apolipoproteins A↗

Molecular basis of symbiotic host specificity in Rhizobium meliloti: nodH and nodPQ genes encode the sulfation of lipo-oligosaccharide signals.

The symbiosis between Rhizobium and legumes is highly specific. For example, R. meliloti elicits the formation of root nodules on alfalfa and not on vetch. We recently reported that R. meliloti nodulation (nod) genes determine the production of acylated and sulfated glucosamine oligosaccharide signals. We now show that the biochemical function of the major host-range genes, nodH and nodPQ, is to specify the 6-O-sulfation of the reducing terminal glucosamine. Purified Nod factors (sulfated or not) from nodH+ or nodH- strains exhibited the same plant specificity in a variety of bioassays (root hair deformations, nodulation, changes in root morphology) as the bacterial cells from which they were purified. These results provide strong evidence that the molecular mechanism by which the nodH and nodPQ genes mediate host specificity is by determining the sulfation of the extracellular Nod signals.

Amino Acid Sequence↗

Opposite effects of tamoxifen on in vitro protein kinase C activity and endogenous protein phosphorylation in intact MCF-7 cells.

We investigated the effects of the antiestrogen tamoxifen on MCF-7 cell protein kinase C either by using the in vitro histone kinase assay or by studying the phosphorylation of its endogenous Mr 28,000 protein substrate in intact cells. In the in vitro assay, tamoxifen inhibited the enzyme competitively with respect to phospholipid, whereas estradiol and morpholinobenzyl phenoxy ethanamine, a specific ligand for antiestrogen binding sites, were considerably less efficient. In contrast, tamoxifen did not affect phosphorylation of the Mr 28,000 protein induced by the phorbol ester 12-O-tetradecanoylphorbol 13-acetate in intact MCF-7 cells. Estradiol and morpholinobenzyl phenoxy ethanamine also had no effect. At high concentration (100 microM), tamoxifen itself stimulated specific phosphorylation of this Mr 28,000 protein. Estradiol and morpholinobenzyl phenoxy ethanamine neither mimicked nor interfered with this effect. Our data suggest that the effect of tamoxifen on protein kinase C activity depends on the phospholipid environment of the enzyme, and opposite effects may be observed in intact cells to those seen in disrupted cells. The action of tamoxifen on endogenous protein phosphorylation was thought to be due to direct interaction with the phospholipid binding domain of the enzyme rather than by interaction with the estrogen receptor or the antiestrogen binding site. Nevertheless, our results do not rule out a possible activation by tamoxifen of specific protein kinase(s) and phosphatase(s). In any case, the antiproliferative activity of tamoxifen on MCF-7 cells cannot be attributed to its effects on protein kinase C.

Breast Neoplasms↗

Symbiotic host-specificity of Rhizobium meliloti is determined by a sulphated and acylated glucosamine oligosaccharide signal.

Rhizobia are symbiotic bacteria that elicit the formation on leguminous plants of specialized organs, root nodules, in which they fix nitrogen. In various Rhizobium species, such as R. leguminosarum and R. meliloti, common and host-specific nodulation (nod) genes have been identified which determine infection and nodulation of specific hosts. Common nodABC genes as well as host-specific nodH and nodQ genes were shown recently, using bioassays, to be involved in the production of extracellular Nod signals. Using R. meliloti strains overproducing symbiotic Nod factors, we have purified the major alfalfa-specific signal, NodRm-1, by gel permeation, ion exchange and C18 reverse-phase high performance liquid chromatography. From mass spectrometry, nuclear magnetic resonance, (35)S-labelling and chemical modification studies, NodRm-1 was shown to be a sulphated beta-1,4-tetrasaccharide of D-glucosamine (Mr 1,102) in which three amino groups were acetylated and one was acylated with a C16 bis-unsaturated fatty acid. This purified Nod signal specifically elicited root hair deformation on the homologous host when added in nanomolar concentration.

Acylation↗

Rhizobium meliloti host range nodH gene determines production of an alfalfa-specific extracellular signal.

The Rhizobium meliloti nodH gene is involved in determining host range specificity. By comparison with the wild-type strain, NodH mutants exhibit a change in host specificity. That is, although NodH mutants lose the ability to elicit root hair curling (Hac-), infection threads (Inf-), and nodule meristem formation (Nod-) on the homologous host alfalfa, they gain the ability to be Hac+ Inf+ Nod+ on a nonhomologous host such as common vetch. Using root hair deformation (Had) bioassays on alfalfa and vetch, we have demonstrated that sterile supernatant solutions of R. meliloti cultures, in which the nod genes had been induced by the plant flavone luteolin, contained symbiotic extracellular signals. The wild-type strain produced at least one Had signal active on alfalfa (HadA). The NodH- mutants did not produce this signal but produced at least one factor active on vetch (HadV). Mutants altered in the common nodABC genes produced neither of the Had factors. This result suggests that the nodABC operon determines the production of a common symbiotic factor which is modified by the NodH product into an alfalfa-specific signal. An absolute correlation was observed between the specificity of the symbiotic behavior of rhizobial cells and the Had specificity of their sterile filtrates. This indicates that the R. meliloti nodH gene determines host range by helping to mediate the production of a specific extracellular signal.

Escherichia coli↗