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Biomedical subjects

A Guerrasio

Publications and source records attributed to A Guerrasio.

At least 73 records · Page 4Linked to original sources

Sardinian delta beta zero-thalassemia: a further example of a C to T substitution at position -196 of the A gamma globin gene promoter.

Selective overexpression (50- to 100-fold) in adult erythroid cells of either G gamma or A gamma fetal globin gene is observed in hereditary conditions known as delta beta zero-thalassemia and hereditary persistence of fetal hemoglobin (HPFH). Recently, a C----T change at position -196 of an overexpressed A gamma globin gene from an Italian HPFH was hypothesized, on the basis of indirect evidence, to represent the cause of the functional defect. We now show that the same mutation is present in a different overexpressed A gamma-globin gene from a Sardinian patient with a different syndrome (delta beta zero-thalassemia). The Sardinian A gamma globin gene differs from both the HPFH and the normal A gamma globin gene at nucleotide 1,560 in the noncoding portion of the third exon, where an A is deleted. In addition, the mutant -196 A gamma-globin gene is linked to a normal beta globin gene in HPFH, and to a beta-thalassemic gene (beta 39CAG----TAG) in delta beta zero-thalassemia. These data strengthen the suggestion that -196 mutation is causally linked to the abnormal phenotype and raise the question of whether the same or multiple mutational events are responsible for the appearance of the -196 mutation in different syndromes.

Base Sequence↗

Italian type of deletional hereditary persistence of fetal hemoglobin.

We report a new type of deletion of the beta globin gene cluster in the Italian population that confers a phenotype of hereditary persistence of fetal hemoglobin (HPFH) to the carriers. This deletion begins approximately 5 kilobases (kb) 5' to the delta globin gene and ends approximately 30 kb 3' to the beta globin gene, in close proximity to the 3' end of an Indian HPFH. In all four previously described HPFH, a repetitive Alu I region 5' to the delta globin gene is largely or completely deleted; the 5' end of the new HPFH is consistent with this common feature. In addition, the finding that Italian and Indian HPFHs, as reported for other groups of deletions, have very close 3' ends, strengthens the idea that common mechanisms may operate in generating these deletions. Finally, we show that, in spite of similar 5' breakpoints, the deletion of Spanish delta beta(0)-thalassemia is at least 8 kb longer than that of Negro HPFH type I, thus ruling out the hypothesis that the overall extent of the deletion might influence the level of gamma globin chain synthesis.

Chromosome Deletion↗

3' c-myc rearrangement in a human leukemic T-cell line.

The human leukemic T-cell line Hut 78, derived from a patient suffering from Sézary syndrome and expressing a mature postthymic membrane phenotype, shows a c-myc rearrangement beginning within 500 base pairs immediately 3' to the c-myc exon 3. Chromosome analysis of the Hut 78 reveals the presence of a hyperdiploid karyotype with a large number of markers and rearrangements, though trisomy is the only cytogenetic anomaly involving chromosome 8. Moreover, as the abnormal c-myc appears to be duplicated, a duplication of the chromosome 8 carrying the abnormal c-myc probably occurred. Unlike four other human leukemic T-cell lines tested, the Hut 78 cells express a high amount of c-myc transcript, suggesting that the 3' c-myc anomaly may cause a deregulation of the expression of this gene.

Base Sequence↗

The three polymorphic chains of human Hb-F studied in normal Italian newborns.

Both the known polymorphisms of human Hb-F have been investigated here. Two similar groups of full-term newborns have been considered: pure F-globin has been studied by suitable fingerprinting techniques in the first group, while isoelectrofocusing techniques have been employed in the second. The results clearly indicate that G/A gamma polymorphism can be correctly determined with both the procedures, while the T/I gamma polymorphism cannot, because IEF is not sensitive enough towards low quantities of A gamma T chains. Moreover, in the first group of newborns, the A gamma T gene frequency (P) is 0.23, while the total G/A gamma ratio of both groups is about 7/3, the two data being in full agreement with those of the literature. Furthermore, additional reports show that the main functional parameters of the whole neonatal blood are not significantly different either in the presence or in the absence of A gamma T chains.

Alleles↗

Hb switching in neonatal cultures. Increase of Hb A synthesis in presence of an erythroid potentiating activity (EPA).

The role of EPA (erythroid potentiating activity) on the growth and on the pattern of hemoglobin synthesis in erythroid colonies from human neonates was investigated. Conditioned medium from the Mo cell line was used as a source of EPA. The results have shown that the addition of Mo medium to cultures determined a significant enhancement of the number and size of BFU-E and an increase of beta chain synthesis. The acceleration of hemoglobin switching is not related to an amelioration of the maturation of the erythroid colonies when grown in the presence of Mo medium. The enhancement of Hb A synthesis induced by Mo medium can directly be related to its EPA, which may operate by two different mechanisms: (1) the recruitment of early erythroid progenitors already preprogrammed to synthesize prevalently beta chains, or (2) the modulation of beta and gamma gene activity in cord blood BFU-E. Some evidence suggests that the first mechanism does operate.

Cell Differentiation↗

G gamma and a gamma globin chain synthesis in bone marrow and peripheral blood of beta-thalassaemia homozygotes.

G gamma, A gamma and beta globin chain synthesis has been investigated in the peripheral blood and bone marrow from eight beta-thalassaemia homozygotes. In five out of eight cases total gamma chain synthesis was higher in the peripheral blood than in the bone marrow; in seven out of eight cases A gamma chain synthesis was markedly higher in the marrow than in the peripheral blood. These data suggest that ineffective erythropoiesis selects F-cells synthesizing the largest amounts of G gamma chains, while A gamma producing cells are preferentially destroyed in the marrow.

Adolescent↗

Hemoglobin expression in clones of K562 cell line.

The K562 cell line was cloned by dilution and the pattern of hemoglobin (Hb) production was analyzed in the clones thus obtained. The pattern of hemoglobin synthesis was different from one clone to another. According to the Hb phenotype the clones were classified in three main groups; group I no detectable Hb; group II Hb Portland; group III Hb Portland + Hb Gower I. The addition of hemin induced a better hemoglobinization and a shift in the pattern of Hb production: clones of group I were induced to produce Hb Portland and clones of group II to synthesize Hb Gower I. A constant order in the sequential expression of the different hemoglobins was observed: no Hb leads to Hb Portland + Hb Gower I. The proportion of the different globin chains varied from one clone to another, but an inverse correlation between the synthesis of G gamma and epsilon chains was observed. The alpha/non-alpha chain ratio was unbalanced in all the clones and the addition of hemin induced only a moderate increase of the synthesis of alpha chains. Recloning of three primary clones increased the homogeneity of the hemoglobin pattern, in particular after hemin induction.

Clone Cells↗

Lasting Hb F reactivation and Hb A2 reduction induced by the treatment of Hodgkin's disease in a woman heterozygous for beta-thalassemia and the Swiss type of the heterocellular hereditary persistence of Hb F.

A remarkable augmentation of Hb F and a reduction of Hb A2 were observed in a Sicilian woman during and after a course of treatment for Hodgkin's disease. An inverse correlation between the proportion of Hb F and Hb A2 was found over an 8-year period, as well as in populations of red blood cells fractionated by density gradient. She exhibited two genetic defects, the Swiss type of heterocellular hereditary persistence of fetal hemoglobin and a beta-thalassemia trait, which were confirmed by the study of the hemoglobin synthesis and by a family study. The lasting reactivation of Hb F synthesis is attributable to the interaction of several acquired and inherited factors.

Adult↗

Genetic regulation of gamma gene expression: study of the interaction of beta-thalassemia with heterocellular HPFH.

A family has been observed which a gene for heterocellular hereditary persistence of fetal hemoglobin (HPFH), probably identical to that previously described as Swiss type HPFH, has been inherited together with beta-thalassemia. The interaction of these two genes resulted in beta-thalassemia heterozygotes with unusually high levels of fetal hemoglobin (3.6-6.15), heterogeneously distributed. Globin synthesis studies showed a similar degree of chain imbalance in the heterocellular HPFH-beta thalassemia compound heterozygotes and in the heterozygous beta-thalassemia member of the family. On the basis of the pattern of genetic transmission of these two characters it can be concluded that the HPFH determinant does not behave as an allele of the gamma beta delta complex.

Adolescent↗

Embryonic and fetal hemoglobin synthesis in K562 cell line.

K562 cell line was grown in liquid suspension and in plasma clot cultures. Morphological studies revealed the presence of a minority of cells, which were identified as erythroblasts. However, the majority of the cells remained unidentified. Biochemical studies confirmed the synthesis of hemoglobin by K562 cells. The pattern of hemoglobin (Hb) production was of the embryonic type, with the presence of small amount of fetal Hb. The addition of several inducers, like Epo and butyrate, was unable to modify the pattern of Hb production of K562. In contrast, the addition of hemin increased the synthesis of Hb and stimulated the synthesis of fetal Hb and probably adult Hb.

Butyrates↗

gamma chain composition in five Italian newborns heterozygous for Hb F Malta G gamma-117 His leads to Arg.

The percentage of Hb F Malta G gamma-177 His replaced by Arg and the gamma chain composition have been evaluated at birth and at different times after birth in five Italian newborns heterozygous for this variant. The percentage of Hb F Malta ranged at birth from 24% to 31% of the total Hb F, while the average G gamma/A gamma chain ratio was about 7/3, overlapping the values observed in normal newborns. T gamma chains were detected in three out of five newborns, with a percentage of about 10% of the total Hb F. After birth the Hb F Malta declined faster than the total Hb F; thus, the Hb F decrease during the first 45 d of life is mainly due to the switch-off of the G gamma locus containing the Hb F Malta gene.

Aging↗

Analysis of the gamma chains in a homozygote for HPFH Negro type and in three related heterozygotes.

The gamma-chain structure of a homozygote for HPFH Negro type, previously described by Acquaye and co-workers, and of 3 heterozygotes of the same family has been evaluated. G gamma and A gamma chains were present in a ratio of fetal type (7/3) in the homozygote and in ratios of 2/3 and 1/1 in the heterozygotes, in agreement with data of the literature. T gamma chains were absent in all the cases. Our results, compared with those previously reported for Negro and Greek HPFH, suggest that the T gamma gene is never linked with the HPFH determinant.

Amino Acids↗

A gamma and G gamma globin chain synthesis in BFU-E colonies from adult, newborn, and fetal subjects and from thalassemic patients.

The G gamma and A gamma content of Hb F produced in cultures of BFU-Es from the blood of normal fetuses, neonates, and adults was determined. The results show that erythroid progenitors produce A gamma and G gamma chains in a ratio characteristic of their ontogenic stage. The analysis of the G gamma/A gamma ratio in culture of BRU-Es from thalassemic patients showed a marked heterogeneity, resembling that observed in freshly drawn cells. These results afford evidence that the type of gamma chain produced is programmed at the level of early erythroid progenitors.

Adult↗

Electrophoretic separation of A gamma and G gamma human globin chains in Nonidet P-40.

Electrophoresis in cellulose acetate in the presence of 3% Nonidet P-40 can resolve two neutral genetic variants, A gamma and G gamma human fetal globin chains. The ratio of these two chains, determined by densitometry of the electrophoretic strips, is in excellent agreement with the Gly-Ala ratio obtained by chemical analysis of the cyanogen bromide fragment gamma CB3. It is suggested that the detergent binds preferentially to the hydrophobic amino acid segment 133-141 in the A gamma chain, thus masking either a Lys or an Arg residue at the two extremes.

Electrophoresis, Cellulose Acetate↗