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V Poggi

Publications and source records attributed to V Poggi.

33 records · Page 2Linked to original sources

Identification of a single base change in a new human mutant glucose-6-phosphate dehydrogenase gene by polymerase-chain-reaction amplification of the entire coding region from genomic DNA.

We report the characterization at the molecular level of a mutant glucose-6-phosphate dehydrogenase (G6PD) gene in a Greek boy who presented with a chronic non-spherocytic haemolytic anaemia. In order to identify the mutation from a small amount of patient material, we adopted an approach which by-passes the need to construct a library by using the polymerase chain reaction. The entire coding region was amplified in eight sections, with genomic DNA as template. The DNA fragments were then cloned in an M13 vector and sequenced. The only difference from the sequence of normal G6PD was a T----G substitution at nucleotide position 648 in exon 7, which predicts a substitution of leucine for phenylalanine at amino acid position 216. This mutation creates a new recognition site for the restriction nuclease BalI. We confirmed the presence of the mutation in the DNA of the patient's mother, who was found to be heterozygous for the new BalI site. This is the first transversion among the point mutations thus far reported in the human G6PD gene.

Amino Acid Sequence↗

Studies on thiamine metabolism in thiamine-responsive megaloblastic anaemia.

We have investigated thiamine metabolism and transport in the erythrocytes of two patients from unrelated families with thiamine responsive megaloblastic anaemia associated with diabetes mellitus and sensorineural deafness. Both patients had low concentrations of thiamine compounds in plasma and red blood cells. When erythrocytes were incubated with thiazole-[2-14C]-thiamine or [35S]-thiamine in vitro, the concentration of label within the cells was markedly reduced compared with controls. In addition, thiamine pyrophosphokinase activity was deficient in haemolysates prepared from the patients. Some relatives of the patients showed abnormal parameters of thiamine status and transport. In both patients treatment with a lipophilic compound corrected the haematological abnormalities and diabetes and in one patient has so far prevented the progression of deafness. We propose that the disorder is caused by an inherited defect of thiamine transport, possibly related to deficient pyrophosphokinase activity, leading to intracellular depletion of active thiamine metabolite derivatives.

Anemia, Macrocytic↗

Control of lactase in human adult-type hypolactasia and in weaning rabbits and rats.

Lactase is an enterocyte brush-border membrane beta-glycosidase that splits lactose, the sugar of milk. In mammals, including many human populations, intestinal lactase activity is very high in the suckling and declines to low levels after weaning. There are two human adult lactase phenotypes, one in which high lactase activity persists and another in which it declines. Two alleles have been postulated to explain these different phenotypes. In the present study lactase mRNA levels have been investigated in the small intestine (a) of rabbits and rats, at different ages, considered as models for mammals, and (b) of human adults with the two lactase phenotypes. In rabbits and rats, high levels of lactase mRNA are present up to the weaning period, a time at which a consistent decrease of this mRNA is found, a decrease that parallels that of lactase activity. It is surprising that after this period adult animals of both species express again high levels of lactase mRNA, whereas lactase activity remains at very low levels. Our results suggest that in the adult rabbits and rats the main control of lactase gene expression is likely to be at a posttranscriptional level. Similarly, in man no clear difference was found at the RNA level between adults with hypolactasia and adults with persistent high lactase activity, a result that also indicates a posttranscriptional control of lactase expression.

Adult↗

Diverse point mutations in the human glucose-6-phosphate dehydrogenase gene cause enzyme deficiency and mild or severe hemolytic anemia.

Glucose-6-phosphate dehydrogenase (G6PD; EC 1.1.1.49) deficiency is a common genetic abnormality affecting an estimated 400 million people worldwide. Clinical and biochemical analyses have identified many variants exhibiting a range of phenotypes, which have been well characterized from the hematological point of view. However, until now, their precise molecular basis has remained unknown. We have cloned and sequenced seven mutant G6PD alleles. In the nondeficient polymorphic African variant G6PD A we have found a single point mutation. The other six mutants investigated were all associated with enzyme deficiency. In one of the commonest, G6PD Mediterranean, which is associated with favism among other clinical manifestations, a single amino acid replacement was found (serine----phenylalanine): it must be responsible for the decreased stability and the reduced catalytic efficiency of this enzyme. Single point mutations were also found in G6PD Metaponto (Southern Italy) and in G6PD Ilesha (Nigeria), which are asymptomatic, and in G6PD Chatham, which was observed in an Indian boy with neonatal jaundice. In G6PD "Matera," which is now known to be the same as G6PD A-, two separate point mutations were found, one of which is the same as in G6PD A. In G6PD Santiago, a de novo mutation (glycine----arginine) is associated with severe chronic hemolytic anemia. The mutations observed show a striking predominance of C----T transitions, with CG doublets involved in four of seven cases. Thus, diverse point mutations may account largely for the phenotypic heterogeneity of G6PD deficiency.

Amino Acid Sequence↗

Iron malabsorption in giardiasis.

Among 10 children with giardiasis, eight had iron deficiency; iron deficiency anemia was the main complaint in three. Evaluation of iron absorption by the oral iron load test demonstrated a subnormal response (i.e., increase in serum iron levels of less than 100 micrograms/dl) in all eight patients with iron deficiency. In contrast, in two iron-sufficient patients with giardiasis the response to an oral iron load was normal. Xylose absorption was abnormal in five of the 10 patients. After metronidazole dosing, iron absorption became normal in seven patients but remained abnormal in one patient, who also had IgA deficiency. Xylose absorption became normal in all five patients who underwent a second test, but remained abnormal in the patient with IgA deficiency. Concomitant morphologic-studies of jejunal biopsy material from these patients revealed moderate changes in the intestinal mucosa of two patients. We conclude that malabsorption of iron is a complication of giardiasis.

Anemia, Hypochromic↗

Sigmoidoscopy, colonoscopy, and radiology in the evaluation of children with rectal bleeding.

The authors evaluated the diagnostic role of sigmoidoscopy, colonoscopy, and double contrast radiology in 103 children with rectal bleeding, with or without other gastrointestinal symptoms. The children's mean age was 44 months, with a range from 1 month to 12 years. In 74.5% of the subjects investigated, visual inspection of the anus and sigmoidoscopy with rectal biopsy disclosed a positive diagnosis. Of the remaining patients, a conclusive diagnosis was reached by either colonoscopy or double contrast radiology in all but six patients. These six, with mild painless hematochezia, remained without a diagnosis. The diagnostic procedure in pediatric patients with rectal bleeding should include an initial visual inspection of the anus, and sigmoidoscopy; air contrast enema and colonoscopy should be performed only in children whose sigmoidoscopy is negative, in diagnostic assessment of inflammatory bowel disease, and in cases of recurrent bleeding after removal of rectal polyps. Colonoscopy is important also in the follow-up examination of children with inflammatory bowel disease and allows the removal of polyps located in the proximal colon.

Barium Sulfate↗

Discriminant analysis for the diagnosis of childhood celiac disease.

A new statistical approach to the analysis of laboratory data has been introduced to optimize the use of absorption tests and gliadin antibody measurement for the diagnosis of childhood celiac disease. Serum antigliadin antibodies, as well as blood xylose, iron, and tryglycerides after oral load, were evaluated in 40 celiac children and 43 age-matched patients affected by other gastrointestinal diseases. Each test evaluated individually gave a considerable rate of false-positive and false-negative results. Discriminant coefficients produced for each test were used to compute a score that allowed correct classification of 99% of patients; 2.3% of false-positive and no false-negative results were recorded. This approach improves significantly the overall sensitivity and specificity for celiac disease of these laboratory tests and we propose its use for screening patients to be submitted to jejunal biopsy.

Adolescent↗

Hb-M "Hyde Park": a de novo mutation, identified by mass spectrometry and DNA analysis.

BACKGROUND: Structural hemoglobinopathies usually are inherited as autosomic dominant traits; de novo mutations are uncommon. Analytical and preparative procedures for the characterization of an abnormal hemoglobin are complex and time-consuming. Mass spectrometer analysis allows a rapid identification of the amino acid substitution. METHODS AND RESULTS: A cyanotic 7-year-old girl was found to have 16% methemoglobin. Laboratory data showed the presence of an abnormal hemoglobin, which was isolated by collecting the abnormal peak from DEAE and globin chains from CM52. The amino acid substitution was rapidly identified by FAB mass spectroscopic analysis, leading to the recognition of HbM Hyde Park. These data were confirmed by molecular analysis (Southern blot and DNA sequencing). Neither the parents nor a sister showed any abnormality; non-paternity was excluded by blood group serology and HLA typing. CONCLUSIONS: This is a case of HbM Hyde-Park arising as a de novo mutation. FAB mass spectroscopic analysis is a rapid and useful analytical method for identifying aminoacid substitution.

Blotting, Southern↗