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Biomedical subjects

G Ricci

Publications and source records attributed to G Ricci.

At least 19 recordsLinked to original sources

Mite allergen (Der p 1) levels in houses of children with atopic dermatitis: the relationship with allergometric tests.

Several studies, in particular in adult groups, have evaluated the involvement of mites in the pathogenesis of atopic dermatitis (AD). This still remains controversial. The objective of this study was to determine the level of house dust mites (HDMs) in the beds of a group of children with AD and correlate these levels with their allergometric assessment. Forty-one children with AD underwent allergometric tests (prick test, patch test and radioallergosorbent test, RAST) and the concentration levels of HDMs in their homes were evaluated. Our data show that about half of the children (51%) with AD presented Dermatophagoides pteronyssinus positivity (prick test and/or RAST and/or patch test). Dust was collected in the period October-November from the children's beds, by the same two operators, using a dust-collection device. The dust mite level was tested by an enzyme-linked immunosorbent assay with antibody against Der p 1 allergen. Ten children (24%) presented a Der p 1 concentration > 2 microgram/g of dust (the value assumed to be a risk level for sensitization), 20 (49%) between 0.1 and 2 microgram/g and 11 (27%) < 0.1 microgram/g of dust. In the group with the highest Der p 1 concentration (> 2 microgram/g dust) nine children (90%) presented an allergometric D. pteronyssinus sensitivity, the difference with the other two groups being statistically significant at P < 0.018. The results of the present study show that the highest HDM concentrations were observed in the group with an allergometric D. pteronyssinus positivity (prick test and/or RAST and/or patch test). It is hypothesized that a higher HDM concentration may elicit D. pteronyssinus IgE sensitization and delayed hypersensitivity in children with AD.

Animals

Characterization of a new form of inherited hypercholesterolemia: familial recessive hypercholesterolemia.

We previously described a Sardinian family in which the probands had a severe form of hypercholesterolemia, suggestive of familial hypercholesterolemia (FH). However, low density lipoprotein (LDL) receptor activity in fibroblasts from these subjects and LDL binding ability were normal. The characteristics of the pedigree were consistent with an autosomal recessive trait. Sitosterolemia and pseudohomozygous hyperlipidemia were ruled out. A second Sardinian kindred with similar characteristics was identified. Probands showed severe hypercholesterolemia, whereas their parents and grandparents were normolipidemic. FH, familial defective apoprotein (apo) B, sitosterolemia, and cholesteryl ester storage disease were excluded by in vitro studies. We addressed the metabolic basis of this inherited disorder by studying the in vivo metabolism of LDL in 3 probands from these 2 families. 125I-LDL turnover studies disclosed a marked reduction in the fractional catabolic rate (0.19+/-0.01 versus 0.36+/-0.03 pools per day, respectively; P<0.001) and a significant increase in the production rate [20.7+/-4.4 versus 14. 0+/-2.4 mg. kg-1. d-1, respectively; P<0.01] of LDL apoB in the probands compared with normolipidemic controls. We then studied the in vivo biodistribution and tissue uptake of 99mtechnetium-labeled LDL in the probands and compared them with those in normal controls and 1 FH homozygote. The probands showed a significant reduction in hepatic LDL uptake, similar to that observed in the FH homozygote. A reduced uptake of LDL by the kidney and spleen was also observed in all patients. Our findings suggest that this recessive form of hypercholesterolemia is due to a marked reduction of in vivo LDL catabolism. This appears to be caused by a selective reduction in hepatic LDL uptake. We propose that in this new lipid disorder, a recessive defect causes a selective impairment of LDL receptor function in the liver.

Adult

Mutations of Gly to Ala in human glutathione transferase P1-1 affect helix 2 (G-site) and induce positive cooperativity in the binding of glutathione.

Previous kinetic studies on human glutathione transferase P1-1 have indicated that the motions of an irregular alpha-helix (helix 2) lining the glutathione (GSH) binding site are viscosity dependent and may modulate the affinity of GSH binding. The effect of single amino acid residue substitutions (Gly to Ala) in this region is investigated here by site-directed mutagenesis. Three mutants (Gly41Ala, Gly50Ala and Gly41Ala/Gly50Ala) were overexpressed in Escherichia coli, purified, and characterized by kinetic, structural, and spectroscopic studies. All these mutant enzymes show kcat values similar to that of the wild-type enzyme, while the [S]0.5 for GSH increases about eight-fold in the Gly41Ala mutant and more than 100-fold in the Gly41Ala/Gly50Ala double mutant. This change in affinity towards GSH is accompanied by an induced positive cooperativity as reflected by Hill coefficients of 1.4 (Gly41Ala) and 1.7 (Gly41Ala/Gly50Ala) upon substrate binding. Taken together, these data suggest that the region around helix 2 is markedly altered leading to the observed intersubunit communication. Molecular modeling of the Gly41Ala/Gly50Ala mutant and of the inactive oxidized form of the native enzyme provides a structural explanation of our results.

Alanine

Shifting substrate specificity of human glutathione transferase (from class Pi to class alpha) by a single point mutation.

Substrate selectivity, among glutathione transferase (GST) isoenzymes, appears to be determined by a few residues. As part of study to determine which residues are class-specific determinants, Tyr 108 (an important residue of the class Pi) has been changed to a valine, the structural equivalent of a class Alpha enzyme. Using a panel of selected substrates, "diagnostic" for either class Pi or Alpha, it is shown here that this single mutation significantly alters the catalytic properties of the class Pi enzyme and shifts the substrate specificity of the enzyme toward that of the class Alpha enzyme.

Amino Acid Sequence

Flexibility of helix 2 in the human glutathione transferase P1-1. time-resolved fluorescence spectroscopy.

Time-resolved fluorescence spectroscopy and site-directed mutagenesis have been used to probe the flexibility of alpha-helix 2 (residues 35-46) in the apo structure of the human glutathione transferase P1-1 (EC 2.5.1.18) as well as in the binary complex with the natural substrate glutathione. Trp-38, which resides on helix 2, has been exploited as an intrinsic fluorescent probe of the dynamics of this region. A Trp-28 mutant enzyme was studied in which the second tryptophan of glutathione transferase P1-1 is replaced by histidine. Time-resolved fluorescence data indicate that, in the absence of glutathione, the apoenzyme exists in at least two different families of conformational states. The first one (38% of the total population) corresponds to a number of slightly different conformations of helix 2, in which Trp-38 resides in a polar environment showing an average emission wavelength of 350 nm. The second one (62% of the total population) displays an emission centered at 320 nm, thus suggesting a quite apolar environment near Trp-38. The interconversion between these two conformations is much slower than 1 ns. In the presence of saturating glutathione concentrations, the equilibrium is shifted toward the apolar component, which is now 83% of the total population. The polar conformers, on the other hand, do not change their average decay lifetime, but the distribution becomes wider, indicating a slightly increased rigidity. These data suggest a central role of conformational transitions in the binding mechanism, and are consistent with NMR data (Nicotra, M., Paci, M., Sette, M., Oakley, A. J., Parker, M. W., Lo Bello, M., Caccuri, A. M., Federici, G., and Ricci, G. (1998) Biochemistry 37, 3020-3027) and pre-steady state kinetic experiments (Caccuri, A. M., Lo Bello, M., Nuccetelli, M., Nicotra, M., Rossi, P., Antonini, G., Federici, G., and Ricci, G. (1998) Biochemistry 37, 3028-3034) indicating the existence of a pre-complex in which GSH is not firmly bound to the active site.

Binding Sites

Evidence for an induced-fit mechanism operating in pi class glutathione transferases.

Three-dimensional structures of the apo form of human pi class glutathione transferase have been determined by X-ray crystallography. The structures suggest the enzyme recognizes its substrate, glutathione, by an induced-fit mechanism. Compared to complexed forms of the enzyme, the environment around the catalytic residue, Tyr 7, remains unchanged in the apoenzyme. This observation supports the view that Tyr 7 does not act as a general base in the reaction mechanism. The observed cooperativity of the dimeric enzyme may be due to the movements of a helix that forms one wall of the active site and, in particular, to movements of a tyrosine residue that is located in the subunit interface.

Apoenzymes

Neosporosis in a dog in Italy.

Clinical neosporosis was diagnosed in a 2-month-old Pit Bull Terrier from Italy. Neospora caninum tachyzoites were found in semitendinosus muscle with myositis. The diagnosis was confirmed by immunohistochemical staining with anti-N. caninum specific antibodies. This is the first report of systemic neosporosis in dogs from Italy.

Animals

Solution structure of glutathione bound to human glutathione transferase P1-1: comparison of NMR measurements with the crystal structure.

The conformation of the bound glutathione (GSH) in the active site of the human glutathione transferase P1-1 (EC 2.5.1.18) has been studied by transferred NOE measurements and compared with those obtained by X-ray diffraction data. Two-dimensional TRNOESY and TRROESY experiments have been performed under fast-exchange conditions. The family of GSH conformers, compatible with TRNOE distance constraints, shows a backbone structure very similar to the crystal model. Interesting differences have been found in the side chain regions. After restrained energy minimization of a representative NMR conformer in the active site, the sulfur atom is not found in hydrogen-bonding distance of the hydroxyl group of Tyr 7. This situation is similar to the one observed in an "atypical" crystal complex grown at low pH and low temperature. The NMR conformers display also a poorly defined structure of the glutamyl moiety, and the presence of an unexpected intermolecular NOE could indicate a different interaction of this substrate portion with the G-site. The NMR data seem to provide a snapshot of GSH in a precomplex where the GSH glutamyl end is bound in a different fashion. The existence of this precomplex is supported by pre-steady-state kinetic experiments [Caccuri, A. M., Lo Bello, M., Nuccetelli, M., Nicotra, M., Rossi, P., Antonini, G., Federici, G., and Ricci, G. (1998) Biochemistry 37, 3028-3034] and preliminary time-resolved fluorescence data.

Crystallography, X-Ray

Proton release upon glutathione binding to glutathione transferase P1-1: kinetic analysis of a multistep glutathione binding process.

The fate of the thiol proton coming from the ionization of the sulfhydryl group of GSH in the active site of glutathione transferase P1-1 has been studied. pH changes caused by the binding of GSH to the enzyme in the absence of any inorganic buffer indicate that the thiol proton leaves the active site when the binary complex is formed. The amount of protons released is stoichiometric to the amount of GSH thiolate formed in the G-site. The apparent pKa value for the bound GSH, calculated with this potentiometric approach, is 6.18 +/- 0.09; very similar values are found by spectrophotometric (6.20 +/- 0.12) and by kinetic (6.00 +/- 0.08) experiments. Binding of S-hexylglutathione does not cause any proton release. Stopped-flow data obtained by means of an acid-base indicator show that the proton extrusion process (apparent t1/2 = 1.1 +/- 0.1 ms at 15 degrees C) is not rate limiting in turnover (apparent t1/2 = 34 +/- 4 ms at 15 degrees C). By comparing the kinetic behavior of three distinct events occurring during the binding of GSH to the enzyme, i. e., proton release, ionization of bound GSH and quenching of intrinsic fluorescence, it appears that the binding process follows a multistep mechanism possibly involving the conformational transition of a weak precomplex into the final Michaelis complex. This step is modulated by helix 2 motions and may be rate limiting at physiological GSH concentrations. These findings, coming from kinetic studies, are consistent with NMR data [Nicotra, M., Paci, M., Sette, M., Oakley, A. J., Parker, M. W., Lo Bello, M., Caccuri, A. M., Federici, G., and Ricci, G. (1998) Biochemistry 37, 3020-3027] and time-resolved fluorescence experiments [Stella, L., Caccuri, A. M., Rosato, N., Nicotra, M., Lo Bello, M., De Matteis, F., Mazzetti, A. P., Federici, G., and Ricci, G., manuscript in preparation].

Glutathione

Apoptosis in asymptomatic HIV-1 seropositives immunized with HIV-1 env glycoprotein (gp160): effects of administration of Zidovudine in vivo and interleukin-2 in vitro.

In this paper we report the effects of VaxSyn (Protein Sciences Corp.) immunization on spontaneous apoptosis occurring in vitro after culture of PBMC in medium alone in 30 HIV-seropositive patients enrolled in a double-blind clinical trial that included three groups: treatment with VaxSyn, AZT and VaxSyn, and AZT. Our data show no significant modifications in the levels of apoptosis observed in the three groups over the long-term follow-up (up to 720 days). This was not associated with any significant modifications in other clinical or immunological features. However, analysis of apoptosis performed shortly after the first immunization (at days 3 and 7) showed a significant reduction in the rate of apoptosis in patients receiving AZT and AZT and VaxSyn, as compared with patients receiving VaxSyn alone (30.42 +/- 2.52 SE at day 0 and 23.74 +/- 1.84 at day 3; p = 0.039). Our data also indicate that addition of IL-2 in vitro had a significant inhibitory effect on mortality in all the randomization groups, especially in those receiving AZT (alone or in combination with VaxSyn).

Adult

Relation between the osmolality trend and ornithynedecarboxylase activity in red blood cells of uremic patients during hemodialytic treatment.

In uremic patients during chronic hemodialysis an increase in the volume of red blood cells is observed. Contemporaneously there is an increase in intraerythrocytic ornithynedecarboxylase activity beyond the normal content (P < 0.01), a high level of seric and plasmatic polyamines (P < 0.01) and a decrease in seric osmolality (P < 0.01) with pH improvement. The trends of osmolality, ornithynedecarboxylase, mean cell volume and pH are significantly related. Our data support the hypothesis that, during hemodialysis, red blood cell volume changes and increased ornithynedecarboxylase activity are dependent on the general improvement of plasma tonicity. Moreover, the absence of inhibition of ornithynedecarboxylase activity by high levels of putrescine is noted.

Adult

Purification and characterization of a novel alpha-class glutathione transferase from human liver.

The importance of glutathione transferases (GST) as a major group of detoxification enzymes is well known. The human liver possesses these enzymes in high concentration and in a multiplicity of forms. We describe here a novel glutathione transferase isoenzyme isolated from liver using glutathione affinity chromatography, DEAE-sepharose and Mono-Q ion-exchange chromatography. The isoenzyme is a dimer of approximately 25 kDa with a blocked N-termini. Its kinetic and immunological properties indicate that it belongs to the alpha-class of GSTs. Its isoelectric point (8.0) is closely related to GST alpha (pI 7.8) and GST beta (pI 8.2) reported previously. More than 70% of the amino-acid sequence of this isoenzyme has been determined by automated Edman degradation procedure. The results suggest that this isoenzyme (which we term GST 8.0) may be a heterodimer of two, closely related, novel alpha-class GST subunits. Comparisons between the amino acid sequences of these two novel alpha-class subunits with those of the other alpha-class GST subunits already known indicate changes in a number of different residues localized in the electrophilic binding site. Further studies are needed to establish whether such differences are due to allelic polymorphism of the enzyme or to the existence of additional genes for alpha-class GSTs in human liver. These results are consistent with previous data which suggest that a multitude of different GSTs, especially of alpha class, are present in the human liver providing this tissue with an efficient mechanism of protection against xenobiotic and endogenous compounds.

Adult

Angiotensin-converting enzyme gene polymorphism is not associated with coronary atherosclerosis and myocardial infarction in a sample of Italian patients.

BACKGROUND: The deletion (D) allele of the angiotensin-converting enzyme (ACE) gene has been proposed as a genetic marker of the risk of ischaemic heart disease. However, the relationships between ACE genotypes, the development of coronary atherosclerosis and the occurrence of major coronary events are still controversial. METHODS: To investigate whether the ACE I/D (insertion/deletion) polymorphism predicts the risk of coronary stenosis and myocardial infarction (MI), ACE genotypes were determined in 394 consecutive patients who underwent coronary angiography. The presence determined in 394 consecutive patients who underwent coronary angiography. The presence of coronary artery disease (CAD) (defined by > 50% stenosis) was detected in 236 patients (CAD+); 85 of these individuals had a history of MI. Patients with coronary stenosis < 10% (n = 158) served as controls (CAD-). ACE genotypes were determined by agarose gel sizing after polymerase chain reaction (PCR) amplification. RESULTS: The distribution of ACE genotypes in CAD+ patients was not significantly different from that in CAD-patients (chi 2 = 2.63, P < 0.27). After controlling for other coronary risk factors, no significant increase in risk of CAD or MI was found to be associated with the D allele, regardless of whether the D allele was assumed to have a dominant, a codominant or a recessive effect. Similar results were observed in CAD+ patients at lower risk because of low body mass index and apolipoprotein B concentrations. Smoking, apolipoprotein B and history of hypertension were found to be independent predictors of CAD and MI. CONCLUSION: Our study did not provide evidence of a significant association between ACE genotypes and the development of coronary atherosclerosis. It also failed to support a role of ACE I/D polymorphism in favouring the conversion of coronary stenosis to MI.

Aged

Characterization of different cell populations isolated from rat testis peritubular cells.

Peritubular cells, a mixed population of myoid and non-myoid cells obtained by enzymatic treatments of rat seminiferous tubules, are currently utilized as a myoid cell population. We have morphologically and biochemically compared peritubular cells and purified myoid cells isolated from prepubertal rats. The two cell populations appear morphologically similar when cultured in the presence of serum: both appear to be composed of elongated cells when observed by phase-contrast microscopy. However, the two populations differ in the percentage of alkaline phosphatase positive cell since only a minority of the cells present in the peritubular cell population are positive for alkaline phosphatase expression. Secretory activity of myoid cells is higher when compared to the peritubular cell secretion. To the contrary, fibronectin is highly synthesized and secreted by the peritubular cells, suggesting that the non-myoid cells synthesize fibronectin at a high level. Myoid cells have also been cultured in a chemically defined medium without any serum addition. In this experimental condition the cells show a polygonal shape, which remains constant during culture time. Secretory activity and fibronectin synthesis and secretion of the cells cultured without serum are lower when compared to the values obtained in the presence of serum at the beginning of the culture. Moreover, the distribution of the cell-associated fibronectin is modified by the culture conditions: spotted on cells cultured in the absence of serum and fibrillar on cells cultured with serum. We therefore conclude that peritubular cells and myoid cells are significantly different cell populations and that serum addition to the culture medium dramatically influences the morphology and the metabolic activities of the myoid cells.

Animals

Junctional contacts between Sertoli cells in normal and aspermatogenic rat seminiferous epithelium contain alpha6beta1 integrins, and their formation is controlled by follicle-stimulating hormone.

The distribution of alpha6beta1 integrins at the level of cell-to-cell contacts within the rat seminiferous epithelium was investigated. Double fluorescence experiments using phalloidin staining of actin filaments and anti-integrin subunit antibodies showed that the receptor belongs to the Sertoli cell lateral domains engaged in the characteristic junctional structures known as ectoplasmic specializations (ES), at the level both of inter-Sertoli junctions and of the contacts between Sertoli cells and elongating spermatids. In the seminiferous epithelium of aspermatogenic testes, obtained through X-irradiation in utero (Sertoli-cell-only testes), at the level of inter-Sertoli junctions both ES and alpha6beta1 integrins are present. In order to study the dependence of alpha6beta1 receptors and ES formation upon FSH stimulation during development, 9-day-old testes were grown in organ culture in basal as well as FSH-supplemented conditions. FSH stimulation, which is necessary for the progression of spermatogenesis to early meiotic stages, appears to be required for the development of inter-Sertoli junctional structures containing ES and alpha6beta1 integrins. These observations indicate that the receptor belongs to the inter-Sertoli junctional machinery and that its expression at that level is not dependent on active spermatogenesis but requires FSH stimulation.

Animals