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Biomedical subjects

M Castagna

Publications and source records attributed to M Castagna.

At least 19 recordsLinked to original sources

Cloning and characterization of a potassium-coupled amino acid transporter.

Active solute uptake in bacteria, fungi, plants, and animals is known to be mediated by cotransporters that are driven by Na+ or H+ gradients. The present work extends the Na+ and H+ dogma by including the H+ and K+ paradigm. Lepidopteran insect larvae have a high K+ and a low Na+ content, and their midgut cells lack Na+/K+ ATPase. Instead, an H+ translocating, vacuolar-type ATPase generates a voltage of approximately -240 mV across the apical plasma membrane of so-called goblet cells, which drives H+ back into the cells in exchange for K+, resulting in net K+ secretion into the lumen. The resulting inwardly directed K+ electrochemical gradient serves as a driving force for active amino acid uptake into adjacent columnar cells. By using expression cloning with Xenopus laevis oocytes, we have isolated a cDNA that encodes a K+-coupled amino acid transporter (KAAT1). We have cloned this protein from a larval lepidopteran midgut (Manduca sexta) cDNA library. KAAT1 is expressed in absorptive columnar cells of the midgut and in labial glands. When expressed in Xenopus oocytes, KAAT1 induced electrogenic transport of neutral amino acids but excludes alpha-(methylamino)isobutyric acid and charged amino acids resembling the mammalian system B. K+, Na+, and to a lesser extent Li+ were accepted as cotransported ions, but K+ is the principal cation, by far, in living caterpillars. Moreover, uptake was Cl(-)-dependent, and the K+/Na+ selectivity increased with hyperpolarization of oocytes, reflecting the increased K+/Na+ selectivity with hyperpolarization observed in midgut tissue. KAAT1 has 634 amino acid residues with 12 putative membrane spanning domains and shows a low level of identity with members of the Na+ and Cl(-)-coupled neurotransmitter transporter family.

Amino Acid Sequence

Distribution of the 5-HT5A serotonin receptor mRNA in the human brain.

The 5-HT5A receptor is a member of a new subfamily of serotonin [5-hydroxytryptamine (5-HT)] receptors recently cloned from the human and rodent brain. The role of this receptor in normal brain functions as well as its possible involvement in pathological states is still to be determined. We therefore studied the regional distribution and cellular localization of 5-HT5A receptor mRNA in human brain sections from autopsy samples by in situ hybridization histochemistry, in order to obtain anatomical information which might be useful in formulating hypotheses on possible functions subserved by this receptor in the central nervous system (CNS). Our results showed that the main sites of 5-HT5A mRNA expression were the cerebral cortex, hippocampus and cerebellum. In the neocortical regions, the 5-HT5A receptor mRNA was mainly distributed in the layers II-III and V-VI. In the hippocampus, the dentate gyrus and the pyramidal cell layer of the CA1 and CA3 fields expressed 5-HT5A mRNA at high levels. The broad distribution in the neocortex and hippocampus supports the view that the 5-HT5A receptor in these areas might be implicated in high cortical and limbic functions. The 5-HT5A mRNA was widely distributed in the cerebellum where it was highly expressed in the Purkinje cells, in the dentate nucleus and, at a lower level, in the granule cells. Since the cerebellum receives diffuse serotonergic afferents, this finding suggests that the 5-HT5A receptor may have an important role in mediating the effects of 5-HT on cerebellar functions.

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Leucine transport in Xenopus laevis oocytes: functional and morphological analysis of different defolliculation procedures.

L-leucine uptake in stage V Xenopus laevis oocytes was affected by the specific methods used to remove the follicle cells. In the presence of 100 mM NaCl, L-leucine uptake was reduced by 67.5% +/- 5.7 when defolliculation was performed enzymatically by collagenase treatment, whereas the reduction was 30.5% +/- 6.4 after mechanical defolliculation. The Na(+)-dependent uptake of 0.1 mM L-leucine was 18.6 +/- 4.6 pmol oocyte-1 40 min-1 in folliculated oocytes and 5.6 +/- 1.9 in collagenase defolliculated oocytes (means +/- SE). L-leucine uptake was not affected by the removal of the follicular layer if defolliculation occurred after the transport period; radiolabeled L-leucine is therefore not taken up into a compartment that is removed by the defolliculation process. The different L-leucine uptake rates observed in folliculated and defolliculated oocytes were not due to non-specific L-leucine binding to membranes. L-leucine kinetics showed that the L-leucine Vmax and Km values were lower in oocytes deprived of the follicular layer than in control oocytes enveloped in intact follicular layers. The Vmax and Km values of Na(+)-dependent L-leucine transport, calculated from data obtained the day after defolliculation by collagenase treatment, were: 16 +/- 1.5 pmol oocyte-1 40 min-1 and 57 +/- 21 mumol (mean +/- SD). The Na(+)-activation curve of 0.1 mM L-leucine was hyperbolic in folliculated oocytes and sigmoidal in defolliculated oocytes. The morphological analysis performed in parallel with the transport experiments showed that after defolliculation, the fibers forming the vitelline membrane tended to be arranged in a more regular orthogonal array, and the number of oocyte microvilli was reduced after collagenase treatment. Mechanical defolliculation did not appreciably affect the oocyte microvilli, however this procedure did not completely remove all follicle cells. The damage to collagenase treated oocytes was reversible, and the functional and structural features of most oocytes improved upon subsequent in vitro incubation. The recovery process seemed to involve protein synthesis in view of the increased value of L-leucine Vmax, and microscopic observation showing recovery of the microvillar apparatus.

Animals

T-cell interferon gamma binding in patients with dementia of the Alzheimer type.

OBJECTIVE: To study T-cell-dependent immune function in patients with dementia of the Alzheimer type (DAT). DESIGN: Assay interferon gamma binding on T lymphocytes in patients with DAT, as compared with healthy controls. SETTING: The study was performed on ambulatory patients in a tertiary care center, where patients were diagnosed as having DAT according to the National Institute of Neurological Disorders and Stroke criteria. PATIENTS: Thirty-five nondepressed patients with DAT (15 women and 20 men; mean [+/-SD] age, 68.6 +/- 15.8 years) were selected consecutively. They were drug free for at least 3 weeks and did not smoke. Illness severity was evaluated according to the Clinical Dementia Rating Scale. The control group comprised 35 age- and sex-matched, healthy nonsmoking subjects, with no family history of neuropsychiatric disorders. RESULTS: A significant reduction (P < .001) of T-lymphocyte interferon gamma binding was observed in patients with DAT as compared with healthy controls (611 +/- 19 [SE] vs 702 +/- 11 [SE] receptors per cell, respectively), whereas the dissociation constant (ligand-receptor affinity) values were similar in the 2 groups (1.1 +/- 0.06 [SE] and 1.2 +/- 0.06 [SE] nmol/L). CONCLUSION: These data demonstrate a derangement of the immune response in patients with DAT, since cell surface interferon gamma receptors seem to be related with T-lymphocyte immune function.

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Platelet and lymphocyte benzodiazepine binding in patients with Alzheimer's disease.

Peripheral blood cells, such as platelets or lymphocytes, have been studied in the investigation of systemic derangements and central nervous system biochemical changes occurring in several neuropsychiatric disorders. In the present work, assaying platelet and lymphocyte peripheral-type benzodiazepine binding in patients with Alzheimer's disease (AD) and healthy controls, we found a significantly reduced number of cell receptors in patients' platelets and lymphocytes. These results are discussed with reference to central nervous system biochemical abnormalities in AD. Moreover, the lymphocyte binding data may represent an impairment of the immune response in AD, since lymphocyte surface peripheral-type benzodiazepine receptors seem to be related to immune function.

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T-lymphocyte immuno-interferon binding in parkinsonian patients.

Human peripheral blood cells, especially lymphocytes and thrombocytes, are extensively studied in neuropsychiatric research both as tools for investigating systemic derangements in neuropsychiatric disorders, and as peripheral models for getting information on central nervous system biochemistry. Specific interferon (IFN)-gamma receptors have been found on both human lymphocytes and neural cells. The aim of the present study has been to evaluate IFN-gamma binding on peripheral blood T lymphocytes from parkinsonian patients, as compared with that on blood T cells from healthy subjects. We have found that T lymphocytes from parkinsonian patients bear a significantly smaller amount of IFN-gamma receptors than those from controls. Such IFN-gamma binding sites are of the same type in patients and healthy subjects (Kd (mean +/- SEM): 1.4 +/- 0.07 vs. 1.2 +/- 0.06, respectively). These findings, which are not specific for Parkinson's disease, are discussed in terms of its immunopathogenesis, since it has been reported that activated T lymphocytes have decreased amounts of IFN-gamma receptors.

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T-cell tumour necrosis factor-alpha receptor binding in demented patients.

Dementia of Alzheimer type (DAT) is a neurodegenerative disease of the central nervous system (CNS), in which an unbalanced cytokine network may lead to an altered immunoregulation. Tumour necrosis factor (TNF)-alpha is a cytokine with manifold effects on the neuroimmune system. Specific TNF-alpha receptors have been found on human peripheral blood lymphocytes. The aim of the present study has been to assay TNF-alpha binding on T cells from DAT patients and healthy sex- and age-matched controls. We found that T lymphocytes from demented patients bear significantly more p60 and p80 TNF-alpha receptors than those from controls (Bmax: 705, 29 vs 131, 6 (mean, SEM) receptors/cell). Such TNF-alpha binding sites, of the same type in DAT patients and healthy subjects (Kd: 67.6, 5.0 vs 70.7, 5.6 (mean, SEM) pM), are functional, since they are able to mediate in vitro NF-kappa B activation. These results are discussed in terms of DAT pathogenesis. Since it has been reported that activated T cells have more TNF-alpha receptors than resting cells, an increased number of lymphocyte TNF-alpha receptors might indicate a systemic immune activation in DAT patients as compared with healthy controls.

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T-lymphocyte tumor necrosis factor-alpha receptor binding in patients with Parkinson's disease.

Parkinson's disease (PD) is a neurodegenerative disease of the central nervous system (CNS), in which the cytokine network may be deranged, leading to an altered immunoregulation. Tumor necrosis factor(TNF)-alpha, a cytokine with pleiotropic neuroimmune effects, has specific receptors on human lymphocytes, as well as on other cell types, even in the CNS. The aim of the present study was to assay TNF-alpha binding on peripheral blood T cells from PD patients, as compared with healthy subjects. We found on T lymphocytes from parkinsonian patients significantly more TNF-alpha receptors than on those from controls (B (max): 637+/-23 vs. 131+/-6 (mean+/-S.E.M.) receptors/cell). Such TNF-alpha binding sites are of the same type in patients and healthy subjects (K(d): 66.8+/-5.1 vs. 70.7+/-5.6 (mean+/-S.E.M.) pM). These results are discussed in terms of PD immunopathogenesis, since it has been reported that activated T lymphocytes have increased amounts of TNF-alpha receptors.

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T lymphocyte benzodiazepine binding is reduced in demented patients.

Blood cells, especially platelets and lymphocytes, are used in neuropsychiatric research as tools for investigating systemic derangements in neuropsychiatric disorders, and as peripheral models for studying central nervous system biochemistry. In the present work, we determined T lymphocyte peripheral-type benzodiazepine binding: a significant reduction of Bmax values was observed in demented patients as compared with healthy controls, whereas Kd values were similar in the two subjects' groups. A significant negative correlation was found between Bmax values and illness severity. These data, which seem to be related to an impairment of immune response and cell energy metabolism in demented patients, may represent a state-dependent marker in monitoring disease course and treatment efficacy.

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Molecular characteristics of mammalian and insect amino acid transporters: implications for amino acid homeostasis.

In mammalian cells, the uptake of amino acids is mediated by specialized, energy-dependent and passive transporters with overlapping substrate specificities. Most energy-dependent transporters are coupled either to the cotransport of Na+ or Cl- or to the countertransport of K+. Passive transporters are either facilitated transporters or channels. As a prelude to the molecular characterization of the different classes of transporters, we have isolated transporter cDNAs by expression-cloning with Xenopus laevis oocytes and we have characterized the cloned transporters functionally by uptake studies into oocytes using radiolabelled substrates and by electrophysiology to determine substrate-evoked currents. Mammalian transporters investigated include the dibasic and neutral amino acid transport protein D2/NBAT (system b0+) and the Na(+)- and K(+)-dependent neuronal and epithelial high-affinity glutamate transporter EAAC1 (system XAG-). A detailed characterization of these proteins has provided new information on transport characteristics and mechanisms for coupling to different inorganic ions. This work has furthermore advanced our understanding of the roles these transporters play in amino acid homeostasis and in various pathologies. For example, in the central nervous system, glutamate transporters are critically important in maintaining the extracellular glutamate concentration below neurotoxic levels, and defects of the human D2 gene have been shown to account for the formation of kidney stones in patients with cystinuria. Using similar approaches, we are investigating the molecular characteristics of K(+)-coupled amino acid transporters in the larval lepidopteran insect midgut. In the larval midgut, K+ is actively secreted into the lumen through the concerted action of an apical H+ V-ATPase and an apical K+/2H+ antiporter, thereby providing the driving force for absorption of amino acids. In vivo, the uptake occurs at extremely high pH (pH 10) and is driven by a large potential difference (approximately -200 mV). Studies with brush-border membrane vesicles have shown that there are several transport systems in the larval intestine with distinct amino acid and cation specificities. In addition to K+, Na+ can also be coupled to amino acid uptake at lower pH, but the Na+/K+ ratio of the hemolymph is so low that K+ is probably the major coupling ion in vivo. The neutral amino acid transport system of larval midgut has been studied most extensively. Apart from its cation selectivity, it appears to be related to the amino acid transport system B previously characterized in vertebrate epithelial cells. Both systems have a broad substrate range which excludes 2-(methylamino)-isobutyric acid, an amino acid analog accepted by the mammalian Na(+)-coupled system A. In order to gain insights into the K(+)-coupling mechanism and into amino acid and K+ homeostasis in insects, current studies are designed to delineate the molecular characteristics of these insect transporters. Recent data showed that injection of mRNA prepared from the midgut of Manduca sexta into Xenopus laevis oocytes induced a 1.5- to 2.5-fold stimulation of the Na(+)-dependent uptake of both leucine and phenylalanine (0.2 mmoll-1, pH 8). The molecular cloning of these transporters is now in progress. Knowledge of their unique molecular properties could be exploited in the future to control disease vectors and insect pests.

Amino Acid Transport Systems

A new immunohistochemical methodology for the specific detection of MDR1-P-glycoprotein in human tissues based on phage-displayed peptides mimicking the MM4.17 epitope.

It is not rare that controversial indications about the presence or the expression level of multidrug-resistant (MDR) proteins come out from different laboratories upon examination of identical tumor specimens. Distinct aspects, including the use of weakly discriminating monoclonal antibodies (MAbs) and/or unsuitable techniques and procedures, contribute in generating differences in the MDR phenotype evaluation of cancer cells. In this regard we describe here an innovative immunohistochemical approach for the determination of P-glycoprotein expression in cells and tissues. The method is based on the ability of phage-displayed peptides to mimic antibody epitopes. For this purpose we utilized the phage clone #55, which was affinity-purified from a phage-displayed random-peptide library using the MAb MM4.17 (specific for MDR1-P-glycoprotein) as previously described. This clone has been chosen since it clearly and undoubtedly reacts with its cognate MAb, as was determined by ELISA and dot blot tests. Inhibition of the MAb MM4.17 binding to MDR1-P-glycoprotein-expressing cells could be performed by adding a calibrated concentration of phage clone #55 particles, which mimic MDR1-P-glycoprotein antigen. This methodology can eliminate misleading interpretations concerning the presence and expression level of MDR1-P-glycoprotein and might well contribute in routine clinical determinations of MDR in tumor specimens, thus contributing to our understanding of the basis of the mechanisms of tumor cell resistance to drugs.

ATP Binding Cassette Transporter, Subfamily B, Mem

Monoamine oxidase molecular activity in platelets of parkinsonian and demented patients.

Platelet monoamine oxidase activity levels have been evaluated in several neuropsychiatric disorders, to identify biochemical markers for pathological brain functioning. In the present work, we assayed both total and molecular monoamine oxidase activity in platelets of parkinsonian and demented patients: both showed significantly higher enzyme activity values than healthy controls. Thus, high platelet monoamine oxidase activity levels seem to be related to an increased intrinsic activity of single enzyme molecules. A significant positive correlation was found between platelet monoamine oxidase activity and severity of illness in both disorders: monoamine oxidase activity, therefore, may be considered as a state-dependent marker for neuro-degeneration. Such findings are discussed with reference to central nervous system biochemical abnormalities in parkinsonian and demented subjects; it might be that in both Parkinson's Disease and in dementia of Alzheimer type some central biochemical changes are reflected in certain peripheral tissues (thrombocytes, for instance), or that a systemic derangement accompanies the cerebral involvement.

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Platelet phenolsulphotransferase activity, monoamine oxidase activity and peripheral-type benzodiazepine binding in demented patients.

Blood platelet phenolsulphotransferase and monoamine oxidase activities, as well as platelet peripheral-type benzodiazepine binding have been studied in several neuropsychiatric disorders, in order to identify biochemical markers for altered brain functioning. In the present work, we determined platelet phenolsulphotransferase and monoamine oxidase activities in demented patients: they showed significantly higher phenolsulphotransferase and monoamine oxidase activities than controls. A significant positive correlation was found between enzyme activities and severity of illness. In the same subjects, we evaluated platelet peripheral-type benzodiazepine binding: a significant reduction of Bmax values was observed in demented patients, whereas Kd values did not substantially differ between the two subject groups. These findings are discussed with reference to central nervous system biochemical abnormalities of demented subjects: it may be that in Dementia of Alzheimer type either some central biochemical changes are reflected in certain peripheral tissues (such as platelets), or a systemic derangement occurs together with a cerebral involvement.

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P-glycoprotein epitope mapping. II. The murine monoclonal antibody MM6.15 to human multidrug-resistant cells binds with three distinct loops in the MDR1-P-glycoprotein extracellular domain.

A new murine monoclonal antibody (MAb), MM6.15, to human MDR1 P-glycoprotein was found to be reactive in ELISA with synthetic peptides selected from the predicted sequences of the first, fourth and sixth extracellular loop of MDR1-P-glycoprotein. In order to precisely define the MM6.15-binding site, a peptide library of overlapping 5- to 9-mer residues covering the entire sixth extracellular loop of both human and rodent class-1 P-glycoproteins was synthesized on polyethylene pins and tested for MAb binding. The results of this ELISA demonstrated that the MAb MM6.15 reacts only with human synthetic peptides and that the critical component of the MAb recognition is made up of the amino-acid sequence LVAHKL (residues 963-968 of the MDR1-P-glycoprotein) with histidine (H), lysine (K) and possibly leucine (L), key residues of this immunogenic domain.

ATP Binding Cassette Transporter, Subfamily B, Mem

Presence of endothelin-1 in the normal and pathological human thyroid.

An immunohistochemical study with two rabbit polyclonal antibodies I-AR76 and CA-08-351 against Endothelin-1 (ET-1) was performed in 133 human thyroid specimens: 5 normal thyroids, 30 multinodular goiters (15 toxic and 15 nontoxic), 20 Graves' diseases, 5 Hashimoto's thyroiditis, 26 adenomas (6 Hürthle cell, 16 toxic and 4 nontoxic), 30 classic papillary carcinomas, 3 minimally invasive follicular carcinomas, 1 widely invasive follicular carcinoma, 3 undifferentiated carcinomas and 10 medullary carcinoma. All normal thyroids, non toxic multinodular goiters and non toxic adenomas, 4 (66%) Hürthle cell adenomas, 3 (15%) Graves' diseases, 1 (33%) case of minimally invasive follicular carcinoma showed rare follicular cells with weak cytoplasmic immunoreactivity. Many immunoreactive follicular cells, with or without oxyphilic changes, were observed in all specimens of Hashimoto's disease, while the lymphocytic infiltrate was always negative. Twenty-seven (90%) classic papillary carcinomas were positive. Immunoreactivity was intracytoplasmic, weak in 14 cases and intense in 13. The cells of toxic adenoma and toxic multinodular goiter were negative, whereas the acellular stroma was intensely positive in both cases. Medullary and undifferentiated carcinomas were negative. These results show ET-1 immunoreactivity in normal and pathological human thyroids. In particular, the high content of this peptide in the thyroid papillary carcinoma suggests that ET-1, whose mitogenic role has recently been emphasized, could be involved in the growth of this tumor.

Adenoma

Synergy between phorbol esters and retinoic acid in inducing protein kinase C activation.

All-trans retinoic acid (RA) activates brain protein kinase C (PKC) in a unique fashion. Co-factors such as Ca2+ or PtdSer are not required for histone phosphorylation. Binding experiments have provided evidence that RA does not act as a phorbol-ester-like activator. However, phorbol esters synergistically enhance this activation in a dose-dependent manner and increase the reaction rate up to five-fold when combined with 10 microM RA. Phospholipid-interacting drugs such as phenothiazines and 1-N-(6 aminohexyl) 5-chloro-1-naphthalene-sulfonamide (W7), which compete with PtdSer and inhibit phorbol ester/PtdSer-mediated activation, have potentiating effects on the RA-mediated reaction. RA elicits Ca(2+)-dependent PKC autophosphorylation. The activation resulting from the combined treatment with PtdSer and RA is more than additive in the presence of Ca2+, indicating that PtdSer- and RA-binding sites are distinct. RA shares several characteristics of activation with sodium deoxycholate and arachidonic acid. These present results suggest that the direct activation of PKC may have physiological and/or pharmacological relevance in the signaling triggered by retinoids.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Biodistribution and pharmacokinetic screening in humans of monoclonal antibody AR-3 as a possible immunoscintigraphy agent in patients with pancreatic cancer.

This pharmacokinetic study was performed in order to assess the potential usefulness of the murine monoclonal antibody (MoAb) AR-3-IgG1 as an immunoscintigraphy agent for pancreatic cancer. This MoAb, which defines a mucin-like antigen (CAR-3) expressed by a large fraction of pancreatic cancers, shows in fact favourable in vivo localizing properties in the experimental animal model of human tumor xenograft. 131I-AR-3-IgG1 was injected i.v. into 5 patients with suspected pancreatic cancer. Whole-body maps and spot views of the abdominal area were recorded with a computerized gamma-camera, and specific regions of interest drawn over the liver and spleen helped to define the kinetics of activity in these organs. Blood samples taken from 0.1-144 hours post-injection and daily urine collections over the same interval served to define the kinetics of plama distribution and removal of activity from the body. Different multicompartmental models were tested to fit the experimental data, assuming as the starting hypothesis that there was to be significant nonspecific tracer accumulation in the liver, spleen and bone marrow, as already observed for the majority of radioiodinated murine MoAbs injected into humans. Surgery confirmed pancreatic cancer in 3 out of the 5 patients (chronic pancreatitis and periampullary cancer in one each); in all these 3 patients immunostaining with the MoAb AR-3 demonstrated the presence of the CAR-3 antigen (with a cytoplasmic and endoluminal/secretory pattern of distribution). Nonspecific radioactivity accumulation in the liver, spleen and bone marrow was extremely low, linked essentially to the blood pool effect of circulating activity in these organs.(ABSTRACT TRUNCATED AT 250 WORDS)

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