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Biomedical subjects

M Mirshahi

Publications and source records attributed to M Mirshahi.

At least 55 records · Page 3Linked to original sources

Properties of the mineralocorticoid receptor immunopurified from bovine kidney.

The mineralocorticoid receptor (MCR) from bovine kidney was purified on an affinity column containing covalently linked polyclonal IgG raised in the rabbit against rat kidney protein purified in the presence of RU 26752 that is specific to the MCR. The immuno-affinity eluate was excluded as a single peak during gel permeation chromatography and could be resolved as a single band of approximately 98 kDa by western blot and gel electrophoresis. Immunohistochemistry revealed MCR-specific staining in both the cortical and glomerular regions of bovine kidney. Interestingly, the purified MCR could not be activated in the presence of the specific ligand RU 26752 whereas binding to DNA-cellulose increased by 100% when crude cytosol was left at room temperature for 45 min. The binding of calcium to the MCR resulted in an increase in the fluorescence signal that could be partially reversed by EDTA. By a calcium-specific fluorescence dye technique, 1.13 nM of ionized Ca2+ was bound per 0.01 nM MCR. The binding of ATP32 to the immunopurified receptor was observed following chromatography on P-10 columns. The fluorescence signal of etheno-ATP was maximally attenuated by the receptor at 1/1 stoichiometry of the ATP-MCR complex. Asparagine-linked complex chain N-glycosylation of the purified MCR was also observed. Analysis by far-UV circular dichroism spectra showed that MCR contains 33% alpha helices and 30% beta sheets, compatible with a relatively flat conformation of the native protein. These data provide experimental proof for the predicted computer simulation regarding the structural features of the steroid receptor superfamily and suggest crosstalk between several protein families.

Adenosine Triphosphate↗

Nicotiana tabacum contains a putative mineralocorticoid receptor.

Total protein from N. tabacum cell cytosol, partially purified by ammonium sulphate precipitation, contains a 52 kDa protein that tests positive for mineralocorticoid receptor (MCR)-like activity by Western blots, immuneprecipitation and photochemical cross-linking. Binding of RU 26752, a ligand specific to the MCR, suggests 100 fmol steroid bound per mg of tobacco protein; this is equivalent to about 6000 sites per cell assuming a 1/1 stoichiometry. Northern blots of total RNA from isolated tobacco cells, hybridized with a probe specific to mammalian MCR, revealed 2.8 kb and 2.2 kb transcripts, whereas the poly A mRNA was resolved as a prominent message of 1500 bp, preceded by a band of 2200 bp. This appears to be the first ever demonstration where a vascular plant is endowed with a pygmy protein similar to the much larger steroid hormone receptors in the animal world.

Blotting, Western↗

Recombinant hirudin: a specific thrombin inhibiting anticoagulant for hemodialysis.

The first experience with hirudin as an alternative anticoagulant for heparin in hemodialysis is reported. Recombinant hirudin (HBW 023) was administered in 20 patients as a bolus before dialysis with low flux polysulfone dialyzers (PS400), the dosage being adapted stepwise from patient to patient by 0.02 mg/kg to the occurrence of clotting or bleeding. Four different administration schedules were studied. The first three schedules (0.02 mg/kg, N = 1; 0.04 mg/kg, N = 1; 0.06 mg/kg, N = 4) were discontinued because of clotting. The 0.08 mg/kg schedule was maintained without clotting event in 14 patients. Bleeding was not observed. Plasma hirudin averaged 503.9 +/- 214.0 and 527.7 +/- 217.1 ng/ml after two and four hours of dialysis, and decreased during an interdialytic interval of 44 hours to 223.2 +/- 86.2 ng/ml. Modified antithrombin III (P < 0.05) and activated partial thromboplastin times were lower (P < 0.01) under hirudin compared to heparin; these coagulation parameters were closer to normal during hirudin treatment. The patients developing clotting could be distinguished from those without clotting by the registration of the activated clotting times (9.2 +/- 3.0 vs. 18.7 +/- 3.2 min after 2 hr, P < 0.01; 8.1 +/- 3.0 vs. 16.2 +/- 3.8 min after 4 hr of dialysis, P < 0.05); cut-off value below which clotting is to be expected was 12 min). It is concluded that administration of hirudin as a bolus before the start of dialysis, at a dosage of 0.08 mg/kg, is not complicated by clotting or by bleeding. Coagulation tendency can optimally be monitored by the registration of the activated clotting time.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Light-induced changes in S-antigen (arrestin) localization in retinal photoreceptors: differences between rods and cones and defective process in RCS rat retinal dystrophy.

The subcellular localization of S-antigen (arrestin), a protein regulating phototransduction in retinal rods, was studied by immunocytochemistry using monoclonal antibodies on sections of Swiss mouse, Lewis, Brown Norway (BN), Royal College of Surgeons (RCS) rdy-p+ (dystrophic) and RCS rdy(+)-p (non-dystrophic) rat retinas. In normal retinas, the topography of S-antigen immunoreactivity in photoreceptor cells varied according to the lighting environment of the animals. In dark-adapted eyes, outer segments did not display any S-antigen immunoreactivity while the inner segments, cell bodies and synaptic terminals were strongly labeled. A few minutes after light exposure, there was an inversion of the pattern of labeling: the label increased in the outer segment but was strongly reduced in the other compartments. After 1 h of light, S-antigen immunoreactivity remained only in outer segments and in a few synaptic terminals. We show that the kinetics of this change is slower in cone than in rod cells, and thus allows the transient visualization of the scarce cone photoreceptors. On the 17th day after birth, photoreceptor cells are well differentiated in all rat strains, including RCS rdy-p+ rats. At this time, the S-antigen shift phenomenon occurred in the non-dystrophic strains, but was not observed in rdy-p+ rats: after light exposure, the intracellular distribution of S-antigen remained the same as in the dark. We suggest that an abnormality in the mechanisms of intracellular protein transport could be a characteristic of this genetic disease.

Amino Acid Sequence↗

Dusart syndrome: a new concept of the relationship between fibrin clot architecture and fibrin clot degradability: hypofibrinolysis related to an abnormal clot structure.

Fibrinogen Dusart is a congenital dysfibrinogenemia (A-alpha 554 Arginine-->Cysteine) associated with severe thrombotic disorder, high incidence of thrombotic embolism, and abnormal fibrin polymerization. This thrombotic disorder was attributed to an abnormal clot thrombolysis with reduced plasminogen binding to fibrin and defective plasminogen activation by tissue plasminogen activator. The purpose of this work was to assess whether clot architecture could be involved in the thromboresistance of the fibrin Dusart and the high incidence of embolism. An important change in Dusart fibrin clot structure was identified with dramatic decrease of gel porosity (Ks), fiber diameters (d), and fiber mass-length ratios (mu) derived from permeation analysis. In addition, rigidity of the Dusart clot was found to be greatly increased compared with normal fibrin. We provide evidence that both thrombolysis resistance and abnormal rigidity of the fibrin Dusart are related to this abnormal architecture, which impairs the access of fibrinolytic enzymes to the fibrin and which is responsible for a brittle clot that breaks easily, resulting in a high incidence of embolism. Indeed, when restoring a normal clot structure by adding dextran 40 (30 mg/mL) before coagulation, clot thrombolysis and clot rigidity recovered normal values. This effect was found to be dose-dependent. We conclude that clot architecture is crucial for the propensity of blood clot to be degraded and that abnormal clot structure can be highly thrombogenic in vivo. The alpha-C domains of fibrinogen are determinant in fibrin clot structure.

Dextrans↗

Immunochemical detection of the mineralocorticoid receptor in rat brain.

The mineralocorticoid receptor (MCR) in the brain of adult male rats was analyzed with the aid of an antiserum generated by immunizing rabbits with this protein purified biochemically from rat kidney. In Western blots, the antibody recognized a single band of protein of about 98 kD from all target tissues studied to date. The granular cells in the cerebellum appeared to be the richest region of the central nervous system in the MCR analyzed by dot blots and by immunoperoxidase staining. High immunoreactivity was also observed in the dorsal and ventral hippocampus, as well as the anterior, mediobasal and posterior hypothalamus. In contrast, midbrain, septum and striatum were MCR-negative. The antibody macroaggregated and precipitated brain MCR labelled with 3H-aldosterone but did not recognize 3H-RU 26752 bound nonspecifically to non-MCR proteins in whole brain cytosol. Thus, MCR function and expression in the adult rat brain need to be reassessed.

Adrenalectomy↗

Potent activity of peripheral blood lymphocytes in inducing hepatocyte stimulating factor and urokinase in monocytes.

As fibrinogen is an independent risk factor for arterial thrombosis we were interested in analysing the mechanism controlling fibrinogen biosynthesis. In this work, we showed that incubation of monocytes with lymphocytes increased hepatocyte stimulating factor (HSF) production. Different mechanisms are involved and our results demonstrated that this effect is in part mediated by an increase in interleukin 6 (IL-6) production. However, IL-6 cannot account for the whole effect and other cytokines could be implicated. In addition, we observed a stimulation of urokinase-type plasminogen activator (u-PA) associated with monocytes when these cells were incubated with lymphocytes for 18 h at 37 degrees C. By producing fragment D (fibrinogen degradation product) and D-dimer (fibrin degradation product) this fibrinolytic activity might also contribute to fibrinogen biosynthesis by hepatocytes.

Cells, Cultured↗

Incubation of monocytes with adriamycin increases secretion of hepatocyte stimulating factor for fibrinogen biosynthesis.

This work provides evidence that the production by monocytes of hepatocyte stimulating factor(s) for fibrinogen biosynthesis was dramatically increased when monocytes were exposed to Adriamycin. This effect was related to an increased production of leukaemia inhibiting factor (LIF), a cytokine known to stimulate fibrinogen biosynthesis by hepatic cells. Adriamycin also induces an increase in membrane-associated urokinase on monocytes. These results are consistent with the clinical observation in patients with ovarian cancer that when the CA-125 tumour marker decreases during chemotherapy, an increased level of D-dimer is a marker of good prognosis.

Cells, Cultured↗

Receptor mediated mineralocorticoid action in alga cell mutants.

The multiplication of Chlamydomonas cells can be arrested by the spirolactone derivative RU 26752 and this is fully reversible by the natural hormone aldosterone. Continuous growth in the presence of RU 26752 led to the isolation of a population subsequently resistant to the action of mineralocortoid analogues, due possibly to the selection of mutant cells. Immunophotochemical evidence is provided for a 52 kDa protein that possesses functional steroid and DNA binding domains. Alga cells therefore appear to respond to steroid hormones in a manner similar to the mammalian systems, possibly via a receptor that may represent a pygmy ancestor of the latter day steroid receptor superfamily.

Animals↗

Mineralocorticoid hormone action in plant cells.

The multiplication of Chlamydomonas reinhardtii wild type cells can be arrested by the spirolactone RU 26752 and this is fully reversible by the natural mineralocorticoid aldosterone. Evidence is presented for a 52 kDa protein that possesses functional DNA and ligand binding domains and tests positive for mineralocorticoid receptor-like activity by immuneprecipitation, macroaggregation, and photoaffinity. The regulation of trans-activation by steroid hormones in the animal world would therefore appear to be just as valid for the plant kingdom, thereby providing a new model for genetic analysis.

Aldosterone↗

D-dimer and CA 125 levels in patients with ovarian cancer during antineoplastic therapy. Prognostic significance for the success of anti-cancer treatment.

In patients with ovarian cancer before they receive chemotherapy, the level of fibrin degradation products (D-dimer), is correlated with the tumor load. In this study, the evolution of D-dimer was compared in patients receiving antineoplastic therapy with the evolution of the disease. The patients could be classified into three groups. In Group 1 (nine patients), both plasma CA 125 (a tumor-associated antigen) and D-dimer remained elevated; the prognosis was always poor. In Group 2 (eight patients), CA 125 and D-dimer decreased simultaneously, complete remission was observed in two patients, and significant residual tumor was observed in the others. In Group 3 (nine patients), despite an important decrease in CA 125, D-dimer remained elevated during therapy. In this group, complete remission was observed in six patients, and three others showed a large decrease in their tumor load. The combination of a decrease in CA 125 levels with a continuous enhanced level of D-dimer during chemotherapy identified a subgroup of patients with a favorable prognosis.

Antigens, Tumor-Associated, Carbohydrate↗

Generation of polyclonal antibodies against the mineralocorticoid receptor and analysis of mineralocortin in rat myocardium by immunophotochemistry.

Fawn, Burgundy rabbits were immunized with the mineralocorticoid receptor (MCR) purified biochemically from rat kidney by a simple, two step procedure. High anti-MCR titers were observed in radioimmunoassays just 3 weeks after the initial injection and increased further with time. Western blot analysis revealed a single band of 94-98 kDa in renal and cardiac cytosol from the rat, like the antigen prepared biochemically. The two atria from beef heart exhibited far greater MCR-positivity compared to the two ventricles, suggesting physiological relevance. The receptor was also photolabelled for the first time with promegestone in this very 94-98 kDa region which could be displaced by the antagonist RU 26752 specific to MCR. The immune IgG precipitated 3H-aldosterone or 3H-RU 26752-MCR complexes from rat heart, and displaced the MCR-antagonist complex to high molecular weight regions during gel permeation chromatography on Sephacryl columns. Immunofluorescent labelling showed that MCR was widely distributed in the cytoplasm in rat myocardium with limited staining in what appeared to be the nuclear compartment. These open up the possibility of large scale purification of the endogenous mineralocorticoid binding protein, mineralocortin, for detailed physicochemical characterization. The technique of photoaffinity labelling presented here should also help delineate the nature of the steroid binding domain in the MCR.

Animals↗

Rat lung possesses the mineralocorticoid receptor.

Lung cytosol from male, adrenalectomized rats was screened for the mineralocorticoid receptor (MCR) by a polyclonal antiserum raised in the rabbit against rat renal antigen. Western blot analysis revealed a single 98 kDa band, like the MCR purified biochemically. The MCR could also be photolabelled for the first time by 3H-R 5020 in this very 98 kDa region that was displaced by RU 26752 specific to MCR. Immune IgG was able to precipitate the MCR-3H-RU 26752 complex, and to displace the same to high molecular weight regions during gel permeation chromatography on Sephacryl columns. Thus, MCR mediated actions need to be redefined. Furthermore, the technique of photochemical labelling forms a novel tool to assess MCR specificity, and to dissect its structure and function.

Animals↗

Effect of heparin and enoxaparin on platelet interaction with fibrin clots.

It has been recently shown that platelet-rich thrombi are particularly resistant to thrombolysis. Since unfractionated heparin was reported to enhance fibrinogen binding to platelets responsible for the hyperaggregating effect of this drug, the purpose of this work was to determine whether or not heparin could also modulate platelet interaction to whole blood clot. We have therefore investigated the retention to a standard clot of 111In-labelled platelets suspended in plasma in presence of saline (control), heparin or a low molecular weight heparin (Enoxaparin). We have shown that the platelet interaction to the clot was significantly increased by heparin but not by enoxaparin used at the same anti Xa activity. In conclusion, this difference may favor the use of enoxaparin over heparin in clinical situation associated with platelet retention to fibrin clot, such as thrombolysis.

Blood Platelets↗

Immunological characterization of an immunomodulatory epitope in S-antigen/arrestin with a sequence motif common to tumor necrosis factor alpha.

Some monoclonal antibodies (mAbs) to retinal S-antigen recognize a phylogenetically conserved epitope (S2) in the N-terminal part of the protein. These antibodies have been shown to inhibit the induction of experimental autoimmune uveoretinitis by S-antigen in rats. Using Pepscan method, we localized this epitope on the amino acid (aa) residues 40-50, i.e., PVDGVVLVDPE (peptide S2). MAb binding was confirmed by ELISA, competition-ELISA and dot blot. Other S-antigen peptides with homologies to epitope S2 and peptides exhibiting the pathogenic and T-cell proliferation inducing sites did not bind these mAbs. Epitope S2 displays an immunological crossreactivity with human tumor necrosis factor (TNF) alpha. Recent results indicate that both peptide S2 and a peptide from human TNF alpha (aa residues 31-53) containing the common sequence motif GVxLxD induce TNF alpha production in monocytes. We analyzed the fine structure of the common epitope by studying mAb binding in an amino acid residue exchange experiment.

Amino Acid Sequence↗

Immunodetection and localization of protein(s) related to retinal S-antigen (arrestin) in kidney.

S-antigen (arrestin) is a cytosolic protein which regulates phototransduction in retinal rods. A protein immunologically related to S-antigen was identified in fractions from soluble extract of bovine kidney enriched by gel filtration or by immunoaffinity chromatography using a polyclonal antibody to retinal S-antigen. On immunoblots, this protein was recognized by a panel of monoclonal antibodies (mAbs S2D2, S1A3 and S9E2) directed against different S-antigen epitopes and displayed the same apparent molecular mass (48 kDa) as retinal S-antigen. All three mAbs revealed a specific immunoreactivity by indirect immunocytochemical technique on rat kidney sections. The three mAbs recognized some but not all glomerular cells, identified as epithelial cells by immunoelectron microscopy using the mAb S9E2. Both mAbs S2D2 and S1A3 gave a diffuse cytoplasmic staining in all tubule cells. Proximal tubule cells exhibited a weak immunoreactivity, whereas distal and collecting tubule cells were strongly labeled. In contrast, the mAb S9E2 immunoreaction was restricted to a cell subpopulation from distal and collecting tubules corresponding to intercalated cells identified by immunoelectron microscopy. With the mAb S9E2, the labeling of proximal tubule cells was localized in the apical region of the cytoplasm. These results suggest that two or more 48-kDa proteins immunologically cross-reactive with retinal S-antigen are present in kidney. The observed pattern of distribution is in keeping with the hypothesis that such proteins could play a role in the regulation of G-protein-related receptors present in renal glomerulus and tubule epithelial cells.

Amino Acid Sequence↗

Immunophotochemical analysis of mineralocortin by polyclonal antibodies against the native receptor from rat kidney.

We have obtained a polyclonal antiserum by immunizing fawn Burgundy rabbits with the mineralocorticoid receptor (MCR) purified biochemically from rat kidneys. High titers of anti-MCR activity were obtained in radioimmunoassays within 3 weeks and increased with a booster shot. In Western blot analysis, the antibody revealed a major band of 94-98 kDa in renal cytosol from rat and beef kidneys. We also developed a fluorographic procedure where the MCR linked covalently to tritiated R-5020, following ultraviolet irradiation, gave imprints superimposable on the Western blot profile. The fluorographic pattern was specific since it was largely abolished in the presence of cold RU 26752 that is specific to MCR, or mineralocortin. The immune IgG precipitated rat renal MCR(-)[3H]RU 26752 complexes in a dose-dependent manner and also recognized MCR bound to the natural hormone aldosterone. During gel permeation chromatography on Sephacryl, the elution profile of [3H]RU 26752 shifted to high-molecular-weight regions in the presence of immune IgG. The receptor protein could be immunolocalized primarily to the principal cells of the collecting duct in rat kidney but the intercalated cells and glomeruli were not labeled, contrary to beef kidney where a uniform pattern of immunostaining was evident. These should permit large-scale purification of the MCR for detailed physicochemical studies and for screening of the MCR-positive tissues during various pathophysiological syndromes.

Adrenalectomy↗