PubMed Health⌕ Search

Biomedical subjects

R Giugliani

Publications and source records attributed to R Giugliani.

At least 37 records · Page 2Linked to original sources

Molecular analysis of the Pi*Z allele in patients with liver disease.

Alpha1-antitrypsin (AAT) is the main protease inhibitor in human plasma. There are more than 75 variants of this protein that differ from each other by their isoelectric point. Most of these alleles cause a reduction in AAT levels; the most common allele is Pi*Z. The main complications related to the Pi*Z allele are obstructive pulmonary disease and liver disease. Some Pi*Z allele carriers present cholestatic jaundice and cirrhosis. The Z type is associated with a secretion defect, which leads to deficiency of AAT and to the formation of intrahepatocytic inclusions in affected subjects. The diagnosis of AAT deficiency can be made by different techniques, including molecular analysis, although the final diagnosis should be done in conjunction with demonstration of the periodic acid-Schiff-positive globules on liver biopsy. In this study, specimens of 29 patients with cryptogenic cirrhosis between age 1 month and 18 years, and of 100 controls were submitted to polymerase chain reaction followed by digestion with TaqI enzyme. Five of the 29 patients had undergone liver transplantation. Three patients were heterozygous for the Pi*Z allele, and two were homozygous (allele frequency = 12.07%; 7/58). Among the controls, who represented the population of Porto Alegre, 1 in 100 individuals was heterozygous for the Pi*Z allele, resulting in an allele frequency of 0.5% (1/200). The high frequency of Pi*Z alleles among the patients indicates the usefulness of AAT molecular testing in children with cholestatic jaundice and cirrhosis.

Adolescent↗

Neurologic findings in Machado-Joseph disease: relation with disease duration, subtypes, and (CAG)n.

CONTEXT: Machado-Joseph disease (MJD), an autosomal dominant spinocerebellar degeneration caused by an expanded CAG repeat on chromosome 14q32.1, is a heterogeneous disorder for clinical manifestations. The reasons for the wide range of neurologic findings in this disease are poorly understood. OBJECTIVE: To explain part of this heterogeneity through the association of the neurologic findings with sex, disease duration, age of onset, clinical type, and size of CAG repeat expansion. DESIGN: A case-control study. SETTING: Ambulatory care. PATIENTS: A consecutive sample of 62 patients with MJD. MAIN OUTCOME MEASURE: Neurologic signs. RESULTS: A direct relationship was found between the disease duration and severity of gait and limb ataxia, dysarthria, dysphagia, fasciculations, pyramidal syndrome, and ophthalmoplegia (P<.02). The most severe forms of nuclear ophthalmoplegia were associated with type 1 MJD, whereas those of supranuclear ophthalmoplegia were associated with type 3 MJD (P<.001). It was also found that higher mean (CAG)(n) lengths were associated with worse degrees of the pyramidal syndrome and dystonia (P<.001). The presence and severity of nystagmus, eyelid retraction, rigidity and/or bradykinesia, and optic atrophy were not clearly associated with any of the predictive variables under study. CONCLUSIONS: Disease duration can explain part of the heterogeneity of ataxia, dysarthria, dysphagia, fasciculations, pyramidal syndrome, and ophthalmoplegia, in MJD. Type 1 MJD was positively associated with nuclear ophthalmoplegia; type 3 MJD was positively associated with supranuclear ophthalmoplegia. Higher mean CAG lengths were found to correlate with the pyramidal syndrome and dystonia. Nystagmus, eyelid retraction, rigidity and/or bradykinesia, and optic atrophy were hardly attributable to any known reason or variable.

Adult↗

A survey of spinocerebellar ataxia in South Brazil - 66 new cases with Machado-Joseph disease, SCA7, SCA8, or unidentified disease-causing mutations.

BACKGROUND: The autosomal dominant spinocerebellar ataxias (SCAs) are a clinical and genetically heterogeneous group of debilitating, neurodegenerative diseases, related to fourteen different loci - SCAs 1, 2, 4, 5, 6, 7, 8, 10, 11,12,13 and 14, Machado-Joseph disease (MJD/SCA 3), and DRPLA. OBJECTIVES: (1) To verify the frequency of SCA1, SCA2, MJD, DRPLA, SCA6, SCA7 and SCA8 in a series of new SCA patients from South Brazil and (2) to compare their molecular and clinical characteristics with other patients previously described. METHODS: Sixty-six cases were included in the present study: 52 were familial and 14 sporadic. Molecular analysis of the trinucleotide repeat loci were performed according to methods in the literature. RESULTS: 92% of families with autosomal dominant inheritance segregated the MJD1 mutation,2% of families segregated the SCA7 mutation and 6% remained undiagnosed. Among 14 isolated cases, one showed the SCA8 mutation. Clinical and molecular findings were similar to those already described in the literature, but revealed (1) one SCA7 patient with eyelid retraction, a sign usually related to MJD; and (2) one sporadic case of SCA8. CONCLUSIONS: The proportion of MJD cases was very high, probably reflecting an Azorean founder effect. The estimated frequency of affected individuals with MJD, in our region, was 1.8 / 100,000, and of SCAs other than MJD, 0.2/100,000.

Adult↗

Glycogen storage disease type Ia: molecular study in Brazilian patients.

Mutations in the glucose-6-phosphatase (G6Pase) gene are responsible for glycogen storage disease type Ia (GSDIa). This disease is characterized by growth retardation, hepatomegaly, hypoglycemia, hyperlipidemia, and lactic acidosis. In this study, we report mutations in the G6Pase gene in 8 of 25 Brazilian patients with clinical symptoms of GSDIa. Five previously described mutations (R83C, Q347X, V338F, D38V, and G68R) were detected. The two most common mutations identified were R83C and Q347X, accounting for 8 of 14 (57.14%) mutant alleles. A 1,176 single-nucleotide polymorphism and two intronic mutations (IVS3-58T>A and IVS4+10G>A) were also analyzed. We used the minigene strategy in order to verify the effect of these intronic mutations on the splicing mechanism. This study emphasizes that molecular genetic analysis is a reliable and convenient alternative to the assay of enzyme activity in a fresh liver biopsy specimen for diagnosing GSDIa.

Alleles↗

Detection of mucopolysaccharidosis type I heterozygotes on the basis of the biochemical properties of plasma alpha-L-iduronidase.

BACKGROUND: Mucopolysaccharidosis type I (MPS I) is a disease caused by deficiency of the enzyme alpha-L-iduronidase (IDUA). Since no treatment is currently available for this disorder, the detection of heterozygotes is very important for genetic counseling and prenatal diagnosis. The objective of the present study was to characterize plasma IDUA from MPS I heterozygotes in an attempt to distinguish it from that of normal individuals. METHODS: We determined the optimum pH, Km, Vmax and Calpha (Vmax/Km) of the reaction and the thermal stability of IDUA at 50 degrees C. RESULTS: MPS I heterozygotes can be separated from normal individuals on the basis of Km, Calpha and thermal stability of the enzyme. CONCLUSIONS: Taking into consideration the clinical status of the homozygous offspring, we were able to subdivide the MPS I heterozygotes into various subgroups (Hurler, Scheie or Hurler/Scheie compound), and verified that the Hurler subgroup had a lower optimum pH for IDUA activity than controls and other MPS I subgroups, and that all MPS I subgroups had higher Km and lower Calpha when compared to controls.

Enzyme Stability↗

Machado-Joseph disease in South Brazil: clinical and molecular characterization of kindreds.

OBJECTIVE: To examine the clinical, genetic, and molecular characteristics of a group of MJD patients recently identified in the southernmost state of Brazil, and compare these data with studies from the literature. METHODS: Some 62 individuals from 35 families, mostly of Azorean ancestry, had their clinical data and their MJD1 expanded regions examined. RESULTS: The present patients had an earlier age of onset, on average, than Portuguese-Azorean cases. Their survival, proportion of types, average anticipation, proportion of affected versus non-affected siblings, neurological signs and molecular findings are similar to those observed in patients previously described. Type 1 patients with male transmission showed worse anticipations than type 1 patients with female transmission. Patients with type 1 had also larger CAG expansions than other patients. CONCLUSIONS: The Brazilian origin seemed to affect the age of onset. We also noted that there were no differences other than the neurological between types 2 or 3, since both are similar in age of onset, disease duration and length of CAG repeats. We addressed the question of maintaining or not subtypes 2 and 3 separated, among patients with genetic and geographical backgrounds like the presented patients here.

Adolescent↗

Glycosidase active site mutations in human alpha-L-iduronidase.

Mucopolysaccharidosis type I (MPS I; McKusick 25280) results from a deficiency in alpha-L-iduronidase activity. Using a bioinformatics approach, we have previously predicted the putative acid/base catalyst and nucleophile residues in the active site of this human lysosomal glycosidase to be Glu182 and Glu299, respectively. To obtain experimental evidence supporting these predictions, wild-type alpha-L-iduronidase and site-directed mutants E182A and E299A were individually expressed in Chinese hamster ovary-K1 cell lines. We have compared the synthesis, processing, and catalytic properties of the two mutant proteins with wild-type human alpha-L-iduronidase. Both E182A and E299A transfected cells produced catalytically inactive human alpha-L-iduronidase protein at levels comparable to the wild-type control. The E182A protein was synthesized, processed, targeted to the lysosome, and secreted in a similar fashion to wild-type alpha-L-iduronidase. The E299A mutant protein was also synthesized and secreted similarly to the wild-type enzyme, but there were alterations in its rate of traffic and proteolytic processing. These data indicate that the enzymatic inactivity of the E182A and E299A mutants is not due to problems of synthesis/folding, but to the removal of key catalytic residues. In addition, we have identified a MPS I patient with an E182K mutant allele. The E182K mutant protein was expressed in CHO-K1 cells and also found to be enzymatically inactive. Together, these results support the predicted role of E182 and E299 in the catalytic mechanism of alpha-L-iduronidase and we propose that the mutation of either of these residues would contribute to a very severe clinical phenotype in a MPS I patient.

Amino Acid Sequence↗

Unique frequency of known mutations in Brazilian MPS I patients.

The frequency of 10 known mutations in the IDUA gene-Q70X, A75T, H82P, R89Q, 678-7 g-->a, L218P, A327P, R383H, W402X, and P533R-was estimated in a group of 24 index cases with mucopolysaccharidosis type I. Three affected relatives were also analysed. Six of the 10 mutations screened were present in our patients (Q70X, R89Q, A327P, R383H, W402X, and P533R). These mutations account for 54% of the alleles; 37% of the genotypes were defined. Frequencies of these mutations are markedly different from those in the literature. A novel combination Q70X/A327P is described. This was the first time Brazilian MPS I patients were analysed with molecular techniques. The low frequency of common mutations indicates that a more comprehensive analysis of the IDUA gene should be done to delineate the mutation profile of MPS I better in our population.

Brazil↗

Primary renal hypoplasia in humans and mice with PAX2 mutations: evidence of increased apoptosis in fetal kidneys of Pax2(1Neu) +/- mutant mice.

PAX2 mutations cause renal-coloboma syndrome (RCS), a rare multi-system developmental abnormality involving optic nerve colobomas and renal abnormalities. End-stage renal failure is common in RCS, but the mechanism by which PAX2 mutations lead to renal failure is unknown. PAX2 is a member of a family of developmental genes containing a highly conserved 'paired box' DNA-binding domain, and encodes a transcription factor expressed primarily during fetal development in the central nervous system, eye, ear and urogenital tract. Presently, the role of PAX2 during kidney development is poorly understood. To gain insight into the cause of renal abnormalities in patients with PAX2 mutations, kidney anomalies were analyzed in patients with RCS, including a large Brazilian kindred in whom a new PAX2 mutation was identified. In a total of 29 patients, renal hypoplasia was the most common congenital renal abnormality. To determine the direct effects of PAX2 mutations on kidney development fetal kidneys of mice carrying a Pax2 (1Neu)mutation were examined. At E15, heterozygous mutant kidneys were approximately 60% of the size of wild-type littermates, and the number of nephrons was strikingly reduced. Heterozygous 1Neu mice showed increased apoptotic cell death during fetal kidney development, but the increased apoptosis was not associated with random stochastic inactivation of Pax2 expression in mutant kidneys; Pax2 was shown to be biallelically expressed during kidney development. These findings support the notion that heterozygous mutations of PAX2 are associated with increased apoptosis and reduced branching of the ureteric bud, due to reduced PAX2 dosage during a critical window in kidney development.

Adolescent↗

Hyperphenylalaninemia and 7-pterin excretion associated with mutations in 4a-hydroxy-tetrahydrobiopterin dehydratase/DCoH: analysis of enzyme activity in intestinal biopsies.

Hyperphenylalaninemia, which can cause neurological disorders and mental retardation, results from a mutation in phenylalanine hydroxylase or an enzyme required for biosynthesis or regeneration of its cofactor, tetrahydrobiopterin. The hyperphenylalaninemia variant primapterinuria is characterized by the excretion of 7-biopterin (primapterin). This disorder is thought to be due to a deficiency of 4a-hydroxy-tetrahydrobiopterin dehydratase (pterin-4a-carbinolamine dehydratase), but a lack of tissue activity has not been directly demonstrated. The five mutations so far recognized in patients with primapterinuria are associated with either a single amino acid change or a premature stop codon. Only C81R has been successfully expressed in soluble form, and was found to have 40% of normal activity. Tissues which could be obtained by minimally invasive procedures were analyzed for dehydratase activity. None was detected in normal human white cells or fibroblasts. However, activity was found in intestine of rat, dog, pig, and particularly humans where it was only eight times lower than in liver. Distribution along the length and across the wall of small intestine was relatively uniform. Moreover, the dehydratases from human liver and intestinal mucosa have identical kinetic properties. A biopsy of duodenal mucosa from a patient with homozygous E96K dehydratase had activity of 55 nmol. min(-1)g(-1) mucosa compared to 329 +/- 32 nmol. min(-1)g(-1) tissue in controls (n = 12). The sixfold lower tissue activity of the E96K mutant alone may not be sufficient to account for the biochemical symptoms of primapterinuria in this patient. However, accumulation of a 4a-hydroxy-tetrahydrobiopterin degradation product (a side-chain cyclic adduct), which has been observed in vitro and appears to be a dehydratase inhibitor, may further exacerbate the problem.

Adolescent↗

Characterization of beta-galactosidase in leukocytes and fibroblasts of GM1 gangliosidosis heterozygotes compared to normal subjects.

OBJECTIVES: Characterization of beta-galactosidase in leukocytes and fibroblasts of heterozygotes for GM1 type I. DESIGN AND METHODS: Leukocyte and fibroblast beta-galactosidase activity was determined fluorimetrically using 4-methylumbelliferyl-beta-D-galactoside as an artificial substrate. Optimum pH, Km, Vmax and thermostability of the enzyme at 42 degrees C were determined. RESULTS: The leukocyte and fibroblast enzyme of heterozygotes have an optimum pH of 4.0 and 4.2, respectively. In normal subjects, the optimum pH was 4.2 in both cells, according to previous studies. The Km of the enzyme of heterozygotes was determined to be 0.65 mM in leukocytes and 0.59 mM in fibroblasts. The Vmax was determined in 167.21 nmol/h/mg of protein in heterozygotes leukocytes and 541.2 nmol/h/mg of protein in heterozygotes fibroblasts compared to 291.7 and 1768.1 nmol/h/mg of protein in controls leukocytes and fibroblasts, respectively. When leukocyte and fibroblast heterozygote beta-galactosidase was preincubated at 42 degrees C, after 80 min the residual activity was determined to be 25 to 30% of the initial activity. These results are similar to the control group. CONCLUSIONS: We have found significant differences between the two groups in some investigated parameters. Both fibroblasts and leukocytes showed a virtually similar level of reliability as source of enzyme for the detection of heterozygotes.

Cells, Cultured↗

Effect of collection, transport, processing and storage of blood specimens on the activity of lysosomal enzymes in plasma and leukocytes.

This study was designed to evaluate the effect of different conditions of collection, transport and storage on the quality of blood samples from normal individuals in terms of the activity of the enzymes ss-glucuronidase, total hexosaminidase, hexosaminidase A, arylsulfatase A and ss-galactosidase. The enzyme activities were not affected by the different materials used for collection (plastic syringes or vacuum glass tubes). In the evaluation of different heparin concentrations (10% heparin, 5% heparin, and heparinized syringe) in the syringes, it was observed that higher doses resulted in an increase of at least 1-fold in the activities of ss-galactosidase, total hexosaminidase and hexosaminidase A in leukocytes, and ss-glucuronidase in plasma. When the effects of time and means of transportation were studied, samples that had been kept at room temperature showed higher deterioration with time (72 and 96 h) before processing, and in this case it was impossible to isolate leukocytes from most samples. Comparison of heparin and acid citrate-dextrose (ACD) as anticoagulants revealed that ss-glucuronidase and hexosaminidase activities in plasma reached levels near the lower normal limits when ACD was used. In conclusion, we observed that heparin should be used as the preferable anticoagulant when measuring these lysosomal enzyme activities, and we recommend that, when transport time is more than 24 h, samples should be shipped by air in a styrofoam box containing wet ice.

Adolescent↗

Fabry disease: comparison of enzymatic, linkage, and mutation analysis for carrier detection in a family with a novel mutation (30delG).

Fabry disease (FD) is an X-linked recessive disorder caused by the deficient activity of the lysosomal enzyme alpha-galactosidase A (alpha-Gal A). Affected males are reliably diagnosed by demonstration of deficient alpha-Gal A activity in plasma or leukocytes. However, identification of female carriers is problematic due to Lyonization, requiring mutation identification and/or linkage studies for accurate carrier detection. Here, we describe a large Brazilian kindred with Fabry disease that permitted comparison of biochemical and molecular diagnostic techniques. Initially, the plasma alpha-Gal A activities were determined in at-risk affected males and potential female carriers; affected males were readily diagnosed, while the females had variable results. To detect carrier females, haplotype analysis using 10 polymorphic markers adjacent to the gene was performed. Subsequently, solid-phase direct sequencing of the alpha-Gal A gene demonstrated a novel single base deletion in exon 1 (30delG). Discrepancies were observed between the enzymatic and molecular diagnoses in two at-risk females. These findings emphasize the need for precise heterozygote diagnosis by mutation and/or haplotype analyses in all families with Fabry disease.

Base Sequence↗

Protracted course of Krabbe disease in an adult patient bearing a novel mutation.

BACKGROUND: Krabbe disease, or globoid cell leukodystrophy, is an autosomal recessive disorder caused by the deficiency of galactocerebrosidase (GALC) activity. Although most cases are diagnosed in infancy and show a fatal outcome in childhood, adult patients have been identified, showing progressive spastic hemiparesis to tetraparesis, followed by optic atrophy, dementia, and neuropathy. The disease can be diagnosed by detecting the deficiency of GALC activity (less than 5% of normal) in any available tissue sample. The cloning of the human GALC gene allowed the molecular characterization of newly diagnosed patients. More than 75 disease-causing mutations and polymorphisms in this gene have been identified. OBJECTIVE: To describe a 28-year-old woman with Krabbe disease, correlating clinical and biochemical abnormalities to a novel mutation on the GALC gene. METHODS: Clinical investigation was enriched by neurophysiological and neuroimaging data. The activity of GALC was assayed in white blood cells using radiolabeled natural substrate. Genomic DNA was isolated from peripheral blood, and the GALC gene was sequenced. The mutated gene was expressed and GALC activity was measured in transfected COS-1 cells. RESULTS: The patient had progressive and bilateral amaurosis starting at 8 years of age. Although she was experiencing weakness in all her extremities, her intellect remained intact. She was found to be homozygous for a previously unreported missense mutation (T1886G), which leads to low, but not totally deficient, GALC activity. CONCLUSIONS: Expression of this mutation in COS-1 cells using the pcDNA3 expression vector (Invitrogen, Carlsbad, Calif) resulted in low, although not null, GALC activity, which can explain the protracted clinical course in this patient. Patients carrying the mutation described herein might be potential candidates for therapeutic trials, such as bone marrow transplantation or gene therapy.

Adult↗