Hemoglobin expression in clones of K-562 cell line.
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Biomedical subjects
Publications and source records attributed to Y Beuzard.
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The incidence and nature of haemoglobinopathies were investigated at birth in Martinique, where 4635 samples of umbilical cord blood were examined. Conventional blood values were determined, and a new, extremely simple and highly selective test was performed: isoelectric focalization. Abnormalities were found in 14.3% of blood samples, viz: A/S 7.25%, A/C 3.17%, S/S 0.17%, S/C 0.24%, C/C 0.04%, other mutations 0.63% alpha-thalassaemia minor (alpha 1-thal) 1.72% and isolated microcytosis 1.01%. Unusual abnormalities included 7 different mutations of the 4a-chain, 3 of the beta-chain and 3 of the gamma-chain. The clinical and epidemiological importance of such investigations is emphasized.
A familial erythrocytosis is described. The propositus is a 52-year-old man who was found, on routine testing, to have an erythrocytosis with a Hb level of 19.8 g/dl. Physical examination and laboratory findings revealed an associated hemolysis. The P50 of the stripped hemolysis was normal. The 2,3-DPG level was reduced to 15% of normal but that of ATP was increased more than twofold. Red cell diphosphoglycerate mutase activity was normal as were the levels of all red cell glycolytic and hexose monophosphate shunt enzymes with the exception of pyruvate kinase (PK). The level of the latter was elevated to 24.5 U/g (normal: 6.2 +/- 1.1). The electrophoretic pattern of hemolysate PK was abnormal, showing three additional bands, one of these migrated as the M2 isozyme. The findings were similar in the propositus's daughter and her daughter and in one of the two brothers of the propositus. The second brother and the son of the first brother was exhibited erythrocytosis but their red cell 2,3-DPG levels were normal. In addition, the level of their RBC PK was reduced to between 50% and 60% of normal and the abnormal electrophoretic bands were absent. The erythrocytosis appears to be inherited as an autosomal-dominant trait. The relationship between the PK abnormalities appears complex.
Cord blood samples, collected at Sousse and Monastir, from Tunisian newborns were focused on a thin layer of agarose in order to detect the carriers of the A gamma 75Thr chain (A gamma chain bearing a replacement Ile-->Thr at position 75). Nineteen individuals (10%) were positive for this variant. The frequency of the A gamma 75Thr gene in the Tunisian population (0.050) is compared with that of various ethnic populations.
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.
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Red blood cells from normal subjects and subjects with heterocellular hereditary persistence of fatal haemoglobin and beta-thalassaemia were fractionated according to density by centrifugation on a discontinuous gradient of Stractan II. F-cells were studied by immunofluorescence and their proportion was evaluated in each separated population. This approach has permitted to show that F-cells were preferentially distributed among high density erythrocytes. This phenomenon reflects a peculiar characteristic of F-cells.
Isoelectric focusing on thin layer of acrylamide gel has been used for the characterization of 79 different variants of hemoglobin A. This method has replaced the cellulose acetate electrophoresis in clinical laboratories in Martinique, Guadeloupe and Creteil for the detection of abnormal hemoglobins in populations at risk. Up to now 15,000 samples from adults have been evaluated. In addition this method has been used for the screening of 7,000 cord blood samples and for the prenatal diagnosis of severe hemoglobinopathies.
Two new techniques have been devised for the prenatal diagnosis of hemoglobinopathies performed on fetal blood samples. Isoelectric focusing (IEF) of hemoglobins was compared to the classical chromatography of labelled globin chains for 51 fetal blood samples, 40 being obtained for prenatal diagnosis of hemoglobinopathies, in Paris. In all cases the two methods provided identical results. Adult hemoglobin was quantitatively evaluated. In addition blood samples obtained in other centers after abortion of 22 fetuses homozygous for beta thalassemia did not exhibited measureable amounts of Hb A by IEF. The fetal blood must be free of maternal contamination. If present maternal red blood cells can be completely eliminated by selective lysis using the 0RSKOV reaction. A chromatography of hemoglobins on Biorex 70 has been devised very recently to overcome the two limitations of IEF: First the contamination of fetal blood samples by maternal cells, and second the impossibility to evaluate Hb A when present in proportion below 1%. The chromatography of hemoglobins on Biorex 70 is performed in 75 minutes with 0.1 mg of hemoglobin present in membrane free hemolysate. The optical density recording allows to evaluate .5% of Hb A and to detect .1% of Hb A. In addition, the radioactivity profile of the chromatography can be determined. It has to be used in case of maternal contamination.
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.
During incubation of reticulocytes from patients with beta-thalassemia, after labeling of the hemoglobin with radioactive amino acids, the excess alpha chains are gradually lost from the cells. The aim of this study was to investigate the mechanism of this phenomenon. A system was developed in which reticulocytes from beta-thalassemia patients are labeled with [3H]leucine, washed several times in nonradioactive medium, and then incubated in the same medium containing puromycin added in order to stop further protein synthesis. The results have clearly shown that excess alpha chains are gradually degraded by proteolysis. N-ethylmaleimide or epsilon-aminocaproic acid inhibited the proteolysis of free alpha chains. The addition of either ATP or hemin did not change the rate of alpha chain degradation. The time required to degrade 50% of the pool of free alpha chains was directly dependent on the initial value of this pool. This finding suggests the absence of a significant individual variation in the ability to proteolyse free alpha chains.
Hemoglobin synthesis was studied in culture of early erythroid precursors (BFU-E) from the blood of nine patients exhibiting sickle cell anemia and of 14 with various types of beta-thalassemia. The results concerning gamma gene expression and plating efficiency in heterozygotes for sickle cell anemia were similar to those of normal adults (gamma/alpha = 0.05; 65 BFU-E colonies/10(6) plated cells) while, in contrast, homozygotes for sickle cell disease exhibited average values higher than the controls (gamma/alpha = 0.18; 80 BFU-E colonies/10(6) plated cells). However, the results were very heterogeneous from one subject to another. In heterozygotes for beta-thalassemia, gamma gene expression and plating efficiency were both slightly higher than those for normal individuals (gamma/alpha = 0.095; 129 BFU-E colonies/10(6) plated cells). In patients homozygous for beta-thalassemia, a marked increase in plating efficiency and gamma-chain synthesis was constantly observed (gamma/alpha = 0.41; 221 BFU-E colonies/10(6) plated cells). The high proportion of gamma chain synthesis was not related to a positive selection of F cells, since the gamma/alpha ratio remained constant during the in vitro erythroid maturation. Furthermore, a major increase in free alpha chain proteolysis can be ruled out, since the beta/alpha ratio was of the same order of magnitude in culture and in freshly drawn cells. Thus, the increased Hb F synthesis in vitro was the consequence of a true stimulation of gamma gene expression, which permitted partial correction of the globin chain imbalance. Ultrastructural studies in two homozygotes for beta-thalassemia showed a marked decrease in the abnormalities of the erythroblasts derived from erythroid precursors in vitro in comparison to those from fresh bone marrow samples. In particular, Heinz bodies were much less numerous and a high frequency of mature erythroblasts and reticulocytes was observed in culture. These results support the view that, in sickle cell anemia and beta-thalassemia, a high potential for gamma gene expression exists and can be expressed in culture.
An affinity chromatography system, using haptoglobin bound covalently to Sepharose 4B, has been developed to purify human hemoglobin from soluble non-heme proteins. Agarose-haptoglobin specifically binds hemoglobin. Globin chains were eluted from the agarose-haptoglobin after removal of the heme. This method has allowed accurate measurements of globin chain synthesis in blood and bone marrow samples from adults and in culture of early erythroid precursors present in adult blood or bone marrow.
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BFU-E from the blood of 14 normal adults have been grown by the plasma clot technique. The hemoglobins synthesized in burst colonies were purified from other proteins by affinity chromatography on Sepharose-haptoglobin. The radioactivity incorporated in the globin chains was estimated by CM-cellulose chromatography in urea. The number of bursts scored at the 14th day of culture fluctuated between 50-130 (average 86, s: 29) for 10(6) mononuclear plated cells. A constant reactivation of fetal hemoglobin was found (from 1.4% to 11%, mean value 5.8%, s:3.07), but was lower than previously described, mainly because of the highly selective purification of Hb. This reactivation of fetal hemoglobin was not dependent upon the concentration of erythropoietin (from 1 U/ml to 6 U/ml) nor on the purity of the erythropoietin preparations (from 6 U/mg of protein to 70 000U/mg of protein). In addition, the same subject exhibited a constant proportion of Hb F synthesized in culture over a period of time up to 6 months. A positive correlation exists between the proportion of Hb F in culture and that of F cells present in the blood, with the exception of two subjects. Such findings suggest that Hb F in culture is a characteristic of each individual and that this reactivation often represents an amplification of the Hb F synthesis in vivo.
In the present work we have developed an affinity chromatography system, using haptoglobin bound covalently to Sepharose 4B, to purify hemoglobin from soluble non-heme proteins. Sepharose-haptoglobin specifically binds hemoglobin. It exhibits the same characteristics in its interactions with hemoglobin and alpha or beta hemoglobin chains as does haptoglobin in solution. Globin chains can be eluted from the Sepharose-haptoglobin after removal of the heme. This method has allowed accurate measurements of globin-chain synthesis in blood and bone marrow samples and in culture of early erythroid precursors.
The red cells of a patient heterozygous for beta-thalassaemia contained 19% fetal Hb. Study of his family suggested that the proband had inherited the Swiss type of hereditary persistence of fetal Hb (HPFH) from his mother who is not thalassaemic and possessed 1.37% of Hb and 11% F-cells. Studies of globin synthesis showed a similar imbalance in the heterocellular HPFH-beta-thalassaemia compound heterozygotes and in the heterozygous beta-thalassaemic members of the family. Age stratification of the red cells showed a slight enrichment in Hb F and a decreased Hb A2 level in the older cell populations. Hb F production in the BFU-E colonies of the proband was higher than that found in vivo and in other beta-thalassaemic heterozygotes in culture. Study of single erythroid burst colonies showed a marked heterogeneity in Hb F synthesis from one colony to another, while the pool of free alpha-chains remained of similar magnitude. It is suggested that in the proband, the HPFH gene, which is in trans with respect to the beta-thal-gene, increases the size of the F-cell population and its activity is carried on at the expense of the normal beta A gene.
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