Search PubMed⌕ Search

Biomedical subjects

L Franco

Publications and source records attributed to L Franco.

At least 55 records · Page 3Linked to original sources

Experimental pulmonary fibrosis induced by Paracoccidioides brasiliensis conidia: measurement of local host responses.

Pulmonary fibrosis was induced following inoculation of Paracoccidioides brasiliensis conidia intranasally in BALB/c mice. Fibrosis was associated with formation of granulomas, increase in lung hydroxyproline, and sustained increases in tissue tumor necrosis factor-alpha and transforming growth factor-beta. This study suggests a role for these cytokines in generation of pulmonary fibrosis associated with chronic granulomatous infectious diseases.

Animals↗

Use of the transglutaminase reaction to study the dissociation of histone N-terminal tails from DNA in nucleosome core particles.

We have recently shown that core histones are glutaminyl substrates for transglutaminase (TGase) and that when native nucleosome cores are incubated with monodansylcadaverine (DNC) as donor amine, this fluorescent probe is incorporated into Gln5 and Gln19 of H3 and in Gln22 of H2B [Ballestar et al. (1996) J. Biol. Chem. 271, 18817-18825]. In the present paper, we report that the cause by which Gln22 of H2B is modified in nucleosomes but not in the free histone is the interaction of the region containing that glutamine with DNA. We have used the specificity of the TGase reaction to study the changes induced by increasing ionic strength in the interaction between the histone N-terminal tails and nucleosome DNA by two different approaches. First, the reactivity of the histone tail glutamines was employed to monitor changes in the interactions between the regions containing these residues and DNA. Second, by using reconstituted nucleosome core particles containing either H2B modified with DNC by the TGase reaction at Gln22 or H3 modified with the same procedure at Gln5 and Gln19, the dissociation of the histone tails was followed by the decrease of the fluorescence anisotropy of the probe. These methods allowed us to describe two ionic strength dependent structural transitions of the histone tails not reported to date. In the case of H2B, the first one occurs at very low ionic strength, and it can be assigned to an increase in the mobility of Gln22. The second one results in the cooperative release of a region of the tail that includes lysine residues next to Gln22, and it is followed by the overall release of the entire tail, described by other workers.

Cadaverine↗

CD38 and ADP-ribosyl cyclase catalyze the synthesis of a dimeric ADP-ribose that potentiates the calcium-mobilizing activity of cyclic ADP-ribose.

CD38, a lymphocyte differentiation antigen, is also a bifunctional enzyme catalyzing the synthesis of cyclic ADP-ribose (cADPR) from NAD+ and its hydrolysis to ADP-ribose (ADPR). An additional enzymatic activity of CD38 shared by monofunctional ADP-ribosyl cyclase from Aplysia californica is the exchange of the base group of NAD+ (nicotinamide) with various nucleophiles. Both human CD38 (either recombinant or purified from erythrocyte membranes) and Aplysia cyclase were found to catalyze the exchange of ADPR with the nicotinamide group of NAD+ leading to the formation of a dimeric ADPR ((ADPR)2). The dimeric structure of the enzymatic product, which was generated by recombinant CD38 and by CD38(+) Namalwa cells from as low as 10 microM NAD+, was demonstrated using specific enzyme treatments (dinucleotide pyrophosphatase and 5'-nucleotidase) and mass spectrometry analyses of the resulting products. The linkage between the two ADPR units of (ADPR)2 was identified as that between the N1 of the adenine nucleus of one ADPR unit and the anomeric carbon of the terminal ribose of the second ADPR molecule by enzymatic analyses and by comparison with patterns of cADPR cleavage with Me2SO:tert-butoxide. Although (ADPR)2 itself did not release Ca2+ from sea urchin egg microsomal vesicles, it specifically potentiated the Ca2+-releasing activity of subthreshold concentrations of cADPR. Therefore, (ADPR)2 is a new product of CD38 that amplifies the Ca2+-mobilizing activity of cADPR.

ADP-ribosyl Cyclase↗

Prostaglandins and nitric oxide in copper-complex mediated protection against ethanol-induced gastric damage.

This study was designed to determine the effects of oral administration of the copper(II) complex of amino acids, on gastric lesions induced by ethanol in rats and the possible mechanism(s) of protection. The copper(II) complex of L-tryptophan and L-phenylalanine is reported as the most effective in reducing ulcer numbers as well as ulcer severity of the many amino acid complexes studied. We investigated the role of PGE2 and nitric oxide (NO) in the protection afforded by Cu(II)(L-Trp)(L-Phe) against ethanol-induced damage. The involvement of endogenous eicosanoids and NO was evaluated with the respective inhibitors of prostaglandin and NO synthesis, indomethacin and NG-nitro-L-arginine (L-NNA). Ex vivo PGE2 accumulation in the rat gastric mucosa has also been determined. Pretreatment with indomethacin only partially counteracted the protective activity of Cu(II)(L-Trp)(L-Phe). L-NNA did not attenuate the protection by Cu(II)(L-Trp)(L-Phe), which was reduced but not prevented by indomethacin, suggesting that prostanoids contribute to the Cu(II)(L-Trp)(L-Phe) protective effect, together with some mechanism(s) other than NO synthesis.

Animals↗

The CD38/cyclic ADP-ribose system: a topological paradox.

CD38 was first identified as a lymphocyte differentiation antigen that showed typical properties of an orphan receptor involved in many programs of cell proliferation and activation. However, CD38 proved also to be a bifunctional ectoenzyme that catalyzes the transient formation of cyclic ADP-ribose (cADPR) in a variety of cell types. This property raises many intriguing and so far unanswered questions, since cADPR is a new second messenger molecule directly involved in the control of calcium homeostasis by means of receptor-mediated release of calcium from ryanodine-sensitive intracellular stores. The relationship between receptor-like and enzymatic properties of CD38 is still unknown. The apparent topological paradox of ectocellular synthesis and intracellular activity of cADPR might be explained by: (a) influx of cADPR across the plasma membrane to reach its target stores, as suggested by experiments on cerebellar granule cells; and (b) NAD(+)-induced internalization, following membrane oligomerization, of CD38 with consequent partial import of cADPR metabolism to an intracellular compartment, as recently observed in lymphoid B cells. These two distinct mechanisms and other potential ones (e.g. binding of ectocellularly formed cADPR to cell surface receptors and initiation of signal-transducing pathways across the plasmamembrane) seem to be paradigmatic of processes affecting different types of cells. Although in some biological systems, such as Aplysia and sea urchin egg, cADPR metabolism is restricted to the intracellular environment, in mammalian cells the CD38/cADPR system provides new challenges in terms of subcellular compartmentation and qualifies as an unusual example of "ectobiochemistry" with potential, still unrecognized, properties of cellular regulation.

ADP-ribosyl Cyclase↗

[The value of immunological assays in the diagnosis of meningeal histoplasmosis].

INTRODUCTION: Between 1985 and 1995, 3,860 cerebrospinal fluid (CSF) samples from patients with mycotic meningitis were analyzed. METHODS: Direct examination, cultures, complement fixation (CF) and immunodiffusion (ID) with Histoplasma capsulatum were carried out. RESULTS: Seventy four samples from 31 patients (three of them with AIDS) were reactive at the immunological assays. Cultures were positive in five patients. In 26 patients the clinical diagnosis together with positive CSF assays gave indirect evidence of meningeal histoplasmosis. ID and CF reactivity were 93.5% and 100% respectively. For 23 patients who had simultaneous examination of blood and CSF the double positivity was 78.2%. CONCLUSIONS: Because of the direct isolation of Histoplasma capsulatum is a difficult one, the diagnosis of subacute or chronic meningeal histoplasmosis may be confirmed by indirect immunological assays.

Adolescent↗

Ectocellular in vitro and in vivo metabolism of cADP-ribose in cerebellum.

CD38, a type II transmembrane glycoprotein predominantly expressed in blood cells, is a bifunctional ectoenzyme directly involved in the metabolism of cADP-ribose (cADPR). This is a potent Ca2+ mobilizer in several types of cells. The relationship between the ectocellular site of cADPR production and its intracellular calcium-related functions is poorly understood. Cultured rat cerebellar granule cells showed both enzymic activities of CD38, ADP-ribosyl cyclase and cADPR hydrolase, at a ratio of 16 to 1 respectively, and were immunostained by the anti-(human CD38) monoclonal antibody IB4. In these cells externally added cADPR and beta-NAD+ (the precursor of cADPR), but not alpha-NAD+ or ADP-ribose, enhanced the peak of the depolarization-induced rise in intracellular Ca2+ concentration. This effect was inhibited by 1 microM ryanodine, suggesting a potentiation of calcium-induced calcium release by cADPR. CD38 ectoenzyme activities, ADP-ribosyl cyclase and cADPR hydrolase, were also demonstrated in vivo by microdialysis of adult rat cerebellum, where IB4 bound to granule neurons selectively. Trace amounts (11.5 +/- 3.8 nM) of NAD+ were detected by microdialysis sampling and sensitive assays in the basal interstitial fluid of the cerebellum. These results provide a link between ectocellular cADPR turnover and intracellular calcium mobilization in cerebellum.

ADP-ribosyl Cyclase↗

NAD+-dependent internalization of the transmembrane glycoprotein CD38 in human Namalwa B cells.

CD38 is a transmembrane glycoprotein involved as an orphan receptor in many physiological processes of lymphocytes. It is also a bifunctional enzyme that catalyzes at its ectocellular domain the synthesis from NAD+ (cyclase) and the hydrolysis (hydrolase) of the calcium-mobilizing metabolite cyclic ADP-ribose (cADPR). A still unexplained paradox concerns the relationship between ectocellular localization of CD38 and intracellular calcium-releasing activity of its intermediate product cADPR. Incubation of CD38+ human Namalwa B cells with external NAD+ elicited extensive membrane down-regulation of CD38 and its internalization in non-clathrin-coated vesicles. Since the internalized CD38 was demonstrated to be enzymatically active, this NAD+-dependent process is a hitherto unrecognized means for shifting cADPR metabolism from the cell surface to the intracellular environment.

ADP-ribosyl Cyclase↗

Core histones are glutaminyl substrates for tissue transglutaminase.

Chicken erythrocyte core histones are glutaminyl substrates in the transglutaminase (TGase) reaction with monodansylcadaverine (DNC) as donor amine. The modification is very fast when compared with that of many native substrates of TGase. Out of the 18 glutamines of the four histones, nine (namely glutamine 95 of H2B; glutamines 5, 19, and 125 of H3; glutamines 27 and 93 of H4; and glutamines 24, 104, and 112 of H2A) are the amine acceptors in free histones. The use of Gln112 of H2A requires a temperature-dependent partial unfolding of the histone, showing that structural determinants are decisive for the glutamine specificity. The structures of H2A and H2B do not appreciably change upon modification with DNC as determined by circular dichroism, and core particles reconstituted from these DNC-modified histones are indistinguishable from native nucleosome cores. When the reaction is carried out with native nucleosomes, only glutamines 5 and 19 of H3, which are located in the N-terminal tail, and glutamine 22 of H2B, which is not labeled in free histone, are modified. Methylamine and putrescine also are incorporated into nucleosomes by the TGase reaction. Our results reveal several possibilities for the application of the TGase reaction in the chromatin field, and taking into account that histones are easily cross-linked or modified by polyamines in vitro, the possibility that they may be TGase substrates in vivo is discussed.

Amino Acid Sequence↗

Amino acid substitutions enhancing thermostability of Bacillus polymyxa beta-glucosidase A.

Mutations enhancing the thermostability of beta-glucosidase A of Bacillus polymyxa, a family 1 glycosyl hydrolase, have been obtained after hydroxylamine mutagenesis of a plasmid containing the bglA gene, transformation of Escherichia coli with the mutagenized plasmid, and identification of transformant colonies that showed beta-glucosidase activity after a thermal treatment that inactivated the wild-type enzyme. Two additive mutations have been characterized that cause replacement of glutamate at position 96 by lysine and of methionine at position 416 by isoleucine respectively. The thermoresistant mutant enzymes showed increased resistance to other denaturing agents, such as pH and urea, while their kinetic parameters did not change. CD spectra indicated that the E96K replacement caused an increase in alpha-helix content. The observed effect of the M416I mutation is consistent with the lower content of cysteine and methionine found in family 1 enzymes of thermophilic species compared with similar ones from mesophilic organisms.

Amino Acid Sequence↗

A copper-complex reduced gastric damage caused by acetylsalicylic acid and ethanol.

We investigated the effect of oral administration of CuNSN, a bis(2-benzimidazolyl) thioether (see structure 1) on gastric lesions induced in rats by acetylsalicylic acid (ASA) or ethanol. The involvement of endogenous eicosanoids and nitric oxide in protection by CuNSN was evaluated with indomethacin and NG-nitro-L-arginine (L-NNA), inhibitors of prostaglandin and NO synthesis respectively. L-arginine and its enantiomer D-arginine were also used. Pretreatment with graded doses of CuNSN inhibited ASA- and ethanol-induced mucosal injury. CuNSN increased PGE2 output in rat ex vivo gastric mucosal pieces after administration of 100 mg/kg of ASA. Pretreatment with indomethacin only partially counteracted the protective activity of CuNSN against ethanol-induced damage. L-NNA did not attenuate the protection by CuNSN, which was reduced but not prevented by indomethacin, suggesting that prostanoids contribute to the CuNSN protective effect, together with some mechanism(s) other than NO synthesis.

Administration, Oral↗

Identification and characterization of an active soluble form of human CD38 in normal and pathological fluids.

Human CD38 is a transmembrane glycoprotein involved in lymphocyte activation and adhesion to endothelium. The ectocellular domain of the molecule possesses properties of a bifunctional enzyme catalyzing both the synthesis from NAD+ and the hydrolysis of the calcium-releasing metabolite cyclic ADP-ribose (cADPR). Surface expression of CD38 (mCD38) is rapidly and almost completely down-modulated upon ligation by specific mAb in cells from different lineages. The data presented here also show that, in addition to the existence of a mCD38, a soluble form of CD38 (sCD38) is detectable in the cell culture supernatant of allo-activated T lymphocytes and of several tumor cell lines. sCD38 is also present in vivo and is assayable in normal (fetal serum and amniotic fluid) and pathological (serum and ascites from patients with multiple myeloma, and serum from patients with AIDS) biological fluids. Immunoaffinity chromatography, SDS-PAGE and Western blot analyses with mAb and polyclonal antibodies, along with metabolic labeling, yield a body of data concerning the structure of sCD38, which displays a M(r) of 39 kDa. Native sCD38 maintains the ability to inhibit the binding activity of different anti-CD38 mAb and still catalyzes the synthesis and the hydrolysis of cADPR at the same ratio observed with mCD38. Furthermore, cross-linking experiments indicate that the purified soluble molecule binds a 120 kDa molecule expressed by monocytoid cells and identified as a candidate ligand for human mCD38.

ADP-ribosyl Cyclase↗

Disseminated histoplasmosis in children: the role of itraconazole therapy.

OBJECTIVES: To describe the clinical characteristics and laboratory diagnosis of seven children with disseminated histoplasmosis and evaluate the effectiveness of itraconazole therapy in this severe form of the mycosis as well as to determine the long term results of such treatment. METHODS: The diagnosis of histoplasmosis was based on the direct observation of Histoplasma capsulatum var. capsulatum and/or on the isolation of the fungus from pathologic materials; the results of the serologic tests were taken into consideration. Chest roentgenograms also contributed to the diagnosis. PATIENTS: The patients were seven rural children, five girls and two boys, ages 1 to 14 years (mean, 4.6), with a confirmed diagnosis of disseminated histoplasmosis and who had no underlying disease other than malnourishment. RESULTS: The seven children experienced a subacute febrile syndrome for 4 months accompanied by anorexia, weight loss and signs of reticuloendothelial involvement such as lymph node hypertrophy, hepatomegaly and/or splenomegaly. The lung revealed roentgenographic alterations consisting mainly of nodular infiltrates. All patients received itraconazole orally in a mean dosage of 7.2 mg/kg/day, for variable periods (3 to 12 months), depending on the individual response and the toxic effects of the medication. One of the patients who was improving after 1 month of treatment was taken from the hospital by his guardian against medical advice and died shortly afterward. The remaining six patients responded to the treatment with marked clinical improvement and showed negative cultures and decreases in anti-H. capsulatum antibody titers after 3 months of treatment. Only one patient, the youngest and most severely affected child, exhibited hepatotoxicity, which subsided when itraconazole was discontinued. Extended follow-up studies revealed no relapses. CONCLUSION: The results of this study indicate that itraconazole is effective for treatment of disseminated childhood histoplasmosis. More studies should be performed to determine the most appropriate dosage and the optimal duration of itraconazole treatment in children.

Adolescent↗

Sexually transmitted diseases: a survey of case management in Malawi.

A national survey of sexually transmitted disease (STD) case management was carried out at 39 health care facilities in Malawi in 1994. Fifty-four health care providers were observed managing 150 patients presenting with selected STD syndromes and 103 providers were interviewed. STD case management was assessed by calculation of WHO/GPA prevention indicators (PIs) from observation data. The overall rate for PI-6, which measures correct assessment and treatment of STD patients was 11% (81% for history taking, 46% in physical examination, and 13% correct antibiotic treatment according to national guidelines). The score for PI-7, which measures overall patient counselling was 29% (65% for partner notification and 40% for condom advice). Although Haemophilus ducreyi is at least as common as Treponema pallidum as the causative agent for genital ulcers, only 16% of patients with genital ulcers were treated effectively for chancroid vs 56% for syphilis. Female patients received less comprehensive care than male STD patients. Only 20% of STD patients were offered condoms. Overall, the survey results support the policy decision to adopt syndromic management of STDs, and provide baseline information for planning and evaluation of a national control programme.

Africa↗

Structural role of disulfide bridges in the cyclic ADP-ribose related bifunctional ectoenzyme CD38.

Human CD38, a type II cell surface glycoprotein, is a bifunctional ectoenzyme catalyzing both ADP-ribosyl cyclase and cyclic ADP-ribose (cADPR) hydrolase reactions. It shares a high degree of sequence homology with the cyclase from Aplysia species and studies of site-directed mutagenesis have recently demonstrated the importance, but not elucidated the role, of several cysteine residues highly conserved between these proteins. N-Ethylmaleimide, iodoacetamide and thiol-oxidizing reagents failed to affect either the cyclase or the weaker hydrolase activity of the Aplysia californica protein. Likewise, these reagents did not impair the two activities of CD38 purified from human erythrocytes. beta-mercaptoethanol had no effect on the Aplysia enzyme activities, while it inactivated both the cyclase and the cADPR hydrolase of CD38 by inducing its extensive oligomerization. In intact erythrocytes the beta-mercaptoethanol-dependent enzyme inactivation was completely prevented by prior cross-linking of the membrane proteins with glutaraldehyde. These data demonstrate that none of the cysteine residues plays any direct catalytic role in CD38 and Aplysia proteins, and that disulfide bridges are essential for maintaining the monomeric, catalytically active structure of CD38.

ADP-ribosyl Cyclase↗

Self-aggregation of purified and membrane-bound erythrocyte CD38 induces extensive decrease of its ADP-ribosyl cyclase activity.

The transmembrane glycoprotein CD38 is a bifunctional enzyme that catalyzes at its ectocellular domain both the synthesis and the hydrolysis of cyclic ADP-ribose (cADPR). The complete reaction, converting NAD+ to nicotinamide and ADP-ribose, reproduces an NAD+glycohydrolase (NADase) reaction. CD38 purified from human erythrocyte membranes has been recently shown to undergo stable oligomerization induced by either NAD+ or beta-mercaptoethanol. We demonstrate that oligomerization is also triggered by reduced glutathione (GSH) and that the GSH-induced self-aggregation of purified CD38 is accompanied by extensive and comparable decrease of its ADP-ribosyl cyclase and NADase activities. GSH-induced oligomerization of CD38 and strong enzyme inactivation take place also in situ on erythrocyte membranes.

ADP-ribosyl Cyclase↗