Search PubMed⌕ Search

Biomedical subjects

Y Beuzard

Publications and source records attributed to Y Beuzard.

At least 91 records · Page 5Linked to original sources

Modification of human hemoglobin by glutathione. III. Perturbations of hemoglobin conformation analyzed by computer modeling.

The perturbations of the conformation of human deoxyhemoglobin induced by the covalent attachment of glutathione at cysteine beta 93 have been investigated by computer simulation in conjunction with molecular graphics. In the first phase of the analysis, a systematic search was carried out of the conformational space of glutathione attached to deoxyhemoglobin. In this search, the conformation of the hemoglobin molecule was held constant, while the relative energies of a series of 186,624 glutathione conformations involving systematic variation of six dihedral angels were calculated. From this search, the most favorable conformation was selected as the starting conformation for energy minimization of the glutathionyl hemoglobin molecule as a function of all Cartesian coordinates. In order to provide a reference state, an independent minimization by the same procedures was carried out for deoxyhemoglobin in the absence of glutathione. Comparison of the minimized structures with and without glutathione attached revealed a number of significant differences. The most conspicuous difference in the protein moiety concerned the salt bridge between aspartate beta 94 and histidine beta 146 which is destabilized upon minimization of the glutathionyl-hemoglobin complex due to interactions of the aspartate residue with the glycyl NH group of glutathione. Other observed differences in the minimized structures are located at the alpha 1-beta 2 interface and include displacement of the carboxyl group of aspartate beta 99. In the minimized complex, the glutathione portion assumes a quasi-cyclic conformation stabilized through interactions between the free (gamma-glutamyl) amino and (glycyl) carboxyl ends of the tripeptide and between this carboxyl end and the epsilon amino group of lysine alpha 40. In a parallel conformational study of glutathione alone, a similar structure was found as the lowest energy form. These quasi-cyclic conformations contrast with the extended structures reported by Wright (Wright, W.B. (1955) Acta Crystallogr. 11, 632-642) for crystals of glutathione where interactions between molecules play a major role. The conclusions of our analysis are in agreement with the experimental investigations reported in the two preceding papers and permit, moreover, a coherent interpretation of the observed functional and structural changes in deoxyhemoglobin induced by glutathione.

Binding Sites↗

Hematological values of 163 normal fetuses between 18 and 30 weeks of gestation.

Utilizing an easy and safe procedure for fetal blood sampling in utero we have studied 409 fetuses for prenatal diagnosis of rubella, toxoplasmosis, hemophilia, and hemoglobinopathies. Retrospectively we selected 163 fetuses confirmed as normal at birth and tested between 18 and 30 wk of gestation to establish normal hematological parameters and to follow the evolution of erythropoiesis, differential counts, hemoglobin synthesis, and hemostasis. Total white blood cell and platelet counts did not change during this period. The lymphocytes represented the main population and we observed a decrease of normoblasts during gestation. The results show a progressive increase of red blood cells and hemoglobin. This evolution is demonstrated by the ratio hemoglobin A to acetylated hemoglobin F. No significant modification of hemostasis was observed over a 12-wk intrauterine gestation. These results provide useful reference values for future investigations.

Blood Coagulation Factors↗

Genetic control of the proportion of gamma chains of human fetal haemoglobin.

The relative proportions of gamma chains of human fetal haemoglobin G gamma, A gamma 75 Ileu (A gamma I) and A gamma 75 Thr (A gamma T) were investigated in homogeneous populations of patients in Algeria exhibiting sickle cell disease and in patients in Algeria and Sardinia with beta-thalassaemia. The restriction site haplotypes within the beta gene cluster were known. The results suggest a tight genetic regulation of the G gamma/A gamma + G gamma ratio (G gamma ratio) which is associated with the G gamma Hind III site of polymorphism (p less than 0.0001). From the present results and those in the literature the high G gamma ratio is associated with the presence of 3 polymorphic restriction sites: Xmn1 5' to the G gamma gene, Hind III in the G gamma IVS II and Hinc II in the psi beta gene. Familial studies showed that the expression of the A gamma alleles is genetically determined. The wide variation of the A gamma T/A gamma T + A gamma I ratio (A gamma ratio) between families is most probably related to the various haplotypes bearing the A gamma I alleles.

Algeria↗

Phenotype of early erythroblastic leukemias.

Nine cases of early erythroblastic leukemia, unidentified by usual criteria, have been diagnosed using a panel of antibodies. Three cases arose in patients with Down's syndrome, one in a patient with therapy-related leukemia, and four patients were in blast crisis of chronic myeloid leukemia; only one case arose de novo. Blast cells could be assigned to two main stages of erythroid differentiation: presence of all erythroid-specific proteins in two patients, a phenotype corresponding to an immature erythroblast; absence of the erythroid markers such as glycophorin A and spectrin in the presence of carbonic anhydrase isoenzyme I, ABH group antigens, and the antigen defined by FA6 152 monoclonal antibody in six patients, a phenotype related to a late erythroid progenitor (CFU-E). One patient had an intermediate phenotype. All patients except one demonstrated a megakaryocytic component. In three patients, chromosomal abnormalities were present, detected both in blasts and in erythroid colonies. In conclusion, these findings indicate that most "cryptic erythroleukemias" are blocked at a "CFU-E-like" stage of differentiation, it may be a frequent event in Down's syndrome and chronic myeloid leukemia, and these erythroleukemias are phenotypically heterogeneous.

Acetylcholinesterase↗

A high resolution NMR study of localized dynamic and structural perturbations in human hemoglobin modified with thiol reagents.

The hydrogen exchange kinetics of the N delta H proton in His F8 of iodoacetamide- and N-ethylmaleimide-treated human deoxyhemoglobins were studied using a NMR method. Comparison with unmodified hemoglobin shows that the reagents, covalently bound to Cys beta 93, significantly increase (about one order of magnitude) the exchange kinetics in beta chains only. This effect was partially reversed by the strong allosteric effector inositol hexaphosphate. Study of the high resolution 400-MHz NMR spectra of modified oxy- and deoxy-hemoglobins permitted localization of the extent of chemically induced structural perturbations. The resonances corresponding to hydrogen bonds specific to the deoxy conformation are not changed, in accord with the preserved cooperativity. Under the experimental conditions (0.1 M bis-Tris, 10 mM Cl-, pH 7.2), the salt bridge at the C terminus of the beta chain in the deoxy state (His beta 146-Asp beta 94) is perturbed by both modifications. The His beta 146 appears to be rendered more immobilized by the reagents in the oxy conformation. From the resonances corresponding to heme pocket protons of oxyhemoglobin it is deduced that the perturbations do not extend over the distal side of the heme pocket but are limited to the FG, F, and HC segments of the beta chain.

Adult↗

Kinetics of polymerization of hemoglobin S modified by thiol reagents and by oxidation.

The effects of four thiol reagents on the kinetics of polymerization of hemoglobin S have been studied in high phosphate buffer (1.8 M), in the presence (3 mM) or absence of sodium dithionite, depending on the reduction of mixed disulfides of Hb in the presence of this reducing agent. The effect of oxidized forms (methemoglobin) of HbS on the kinetics of aggregation of deoxyHbS was also studied because of the presence of 33% metHbS when HbS was modified by 4-aminophenyl disulfide. In the presence of sodium dithionite, the delay times prior to polymerization of deoxyHbS modified by N-ethylmaleimide, iodoacetamide and 4-aminophenyl disulfide were, respectively, 1.5-, 1.35- and 1.15-times longer than that of native deoxyHbS. The results indicate that the radicals bound to the cysteine beta 93 residue inhibit the contacts in the polymer formation to various extents but do not modify the size of the nuclei.

Aniline Compounds↗

Determination of the dissociation constant of oligomeric proteins by size-exclusion high-performance liquid chromatography: application to human haemoglobin.

The measurement of protein retention volumes on a size-exclusion chromatographic column offers the possibility of determining dissociation constants for oligomeric proteins, as changes in the retention volume, depending on the concentration of the protein, are due to a dissociation equilibrium. The retention volume may be calibrated in terms of dissociation constant by using either extreme concentration conditions or chemical modifications that shift the equilibrium towards a single species. When zonal chromatography is used, the dilution during elution modifies the equilibrium state. In contrast, the saturation method permits the concentrations of the different species to be kept constant. These two methods were compared and the elution factor that must be used in zonal chromatography on high-performance size-exclusion columns (LiChrospher Diol) was obtained. The tetramer-dimer dissociation constants of normal and modified haemoglobins were measured by this method, and the results are in accordance with flash photolysis measurements.

Carboxyhemoglobin↗

Clinical manifestations and erythrocyte adhesion to endothelium in sickle cell syndrome.

Painful vasocclusive episodes are one of the most prominent pathological features of sickle cell disease. In addition to abnormal shape and poor deformability, increased adhesion of red cells to endothelium has been reported. On several occasions, we have studied the adhesion of erythrocytes from 30 patients with mixed sickle cell syndromes to evaluate the influence of clinical conditions. The percentage of erythrocytes adhering was significantly higher when erythrocytes from sickle patients were compared with controls (p less than 0.01). Furthermore, adhesion was significantly higher when the patients were in crises (p less than 0.01), and the highest values of all were observed in patients with inflammatory conditions. To investigate the possibility that a limited population of red cells could be responsible for the increase in red cell adhesion, we have measured the HbS concentration in the different washes and found that the HbS concentration was higher in the last washes compared to the first washes. Sickle red cells capable of protein synthesis (young red cells) were labelled with [3H] leucine. The adhesion to endothelial cells of [3H] leucine-labelled red cells was higher than that of the 51Cr-labelled red cells from the same patient. On the other hand, the most dense sickle red cells separated by density gradient adhered to a greater extent than the light red cells. This apparent discrepancy could be partly explained by the presence of [3H] leucine-labelled red cells in the dense fractions of sickle red cells separated by stractan gradient.

Adolescent↗

Compartmentalization of Ca2+ in sickle cells.

Control (AA) and sickle cell anemia (SS) erythrocytes were loaded with Ca-chelator (Quin2 or Benz2) to increase the cellular exchangeable Ca2+ pool and to measure the Ca2+ exchange fluxes and the cytosolic ionized Ca2+ ([Ca]i) (Lew et al., 1982, Nature, 298, 478). The chelator incorporation induced a decrease in the ATP content which was smaller in SS than in AA cells and partially reversible upon reincubation in a chelator-free medium. The amount of trapped chelator was determined by two methods: 45Ca binding to the chelator in Ca-ionophore treated cells in Ca-EGTA buffers and [3H]Quin2 incorporation. A slight over-estimation of the chelator content was found with the second method but incorporation was the same in both types of cells. The kinetics of 45Ca equilibration and 45Ca release were used to measure Ca2+ fluxes and [Ca]i in oxygenated chelator-loaded cells. SS cells, as compared to AA cells, exhibited a moderate increase in Ca2+ fluxes (30-75%) but [Ca]i remained in the same range (about 20 nM). Thus the excess of Ca2+ found in SS cells is not available for the Ca2+ pump or the K+ channel a conclusion in agreement with that of Bookchin et al. (1984, Cell Calcium, 5, 277). Analysis of the 45Ca kinetics showed that in AA cells, exchangeable Ca2+ behaved as one compartment. In SS cells, the existence of a second slowly-exchangeable Ca2+ compartment was demonstrated. This latter (3-5 mumol/l cells) was independent of the concentration of the chelator and thus could represent exchangeable Ca2+ enclosed within the intracellular inside-out vesicles recently observed in SS cells (Williamson et al., 1984, J. Cell. Biol., 99, 430a). Alternatively, these two kinetic pools could reflect heterogeneity of the SS cell population.

Adenosine Triphosphatases↗

Linkage between fetal A gamma globin chain polymorphism and DNA polymorphism of the human beta gene cluster in beta thalassaemia.

The association between the polymorphism of the A gamma chain of human fetal haemoglobin and the DNA polymorphism at the beta gene cluster has been investigated. The A gamma 75 threonine mutation was found in association with haplotypes II and VI described by Orkin et al. (1982), which share the HindIII cleavage site in the A gamma IVS 2 sequence. The distance between the two polymorphic sites is 868 base-pairs. In contrast, haplotypes I, III, V and IX which do not possess this HindIII cleavage site were associated with the normal A gamma 75 isoleucine allele. The simple detection of the gamma gene polymorphism at the protein level can be useful for identifying DNA haplotypes, and therefore beta thalassaemic mutations.

Chromosome Mapping↗

Inhibition of erythrocyte sickling by thiol reagents.

The antisickling effects of eight thiol reagents that cross the red cell membrane and then react with the cysteine beta 93, the only accessible thiol group of hemoglobin, have been investigated at various pO2 values. In spite of completely reacted hemoglobins, the potent antisickling effect varied from one compound to the other and was partially related to the extent of the increased oxygen affinity of intact sickle cells induced by these compounds. The formation of methemoglobin upon the incubation of red blood cells with some disulfides had only a small effect on the sickling process.

Anemia, Sickle Cell↗

[Use of a new rheometer for the study of the filtrability of a suspension of sickled red cells as a function of PO2].

The filtration time of a small volume (0.1 ml) of red cell suspension from normal (AA), heterozygous (AS) and homozygous (SS) subjects for sickle cell disease was investigated as a function of PO2 The curve of filtration time of AS and SS red cell suspensions was biphasic. At high values of PO2, the progressive reduction of filtrability of sickle cell suspensions with decreasing PO2 occurred without new change in morphology of most of the cells. In contrast, at lower PO2 the apparent filtrability was improved and the cells were sickled." However the red blood cells were retained by the filter and the "solvent" filtrability was improved because rigid and highly deformed sickled cells did not clogged completely the pores of the filter. This study allowed to distinguish a new concept of apparent filtrability for red blood cells in sickle cell disease.

Anemia, Sickle Cell↗

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↗

Antenatal diagnosis of haemoglobinopathies by Biorex chromatography of haemoglobin.

Biorex chromatograhpy of haemoglobin has been compared to the standard chromatographic separation of radioactive globin chains in 60 fetal blood samples obtained for the antenatal diagnosis of haemoglobinopathies. Biorex chromatography of haemoglobin permitted two measurements, the optical density at 418 nm and the radioactivity incorporated into fetal and adult haemoglobin. The two measurements were highly correlated (r2=0.96) and enabled a distinction between homozygous from heterozygous states of the diseases to be made, particularly in beta thalassaemia. A single column was used for 50 analyses. This fast and very sensitive method is proposed for the antenatal diagnosis of haemoglobinopathies using fetal blood.

Anemia, Sickle Cell↗

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↗

Binding of 21 thiol reagents to human hemoglobin in solution and in intact cells.

The reactivity of the cysteine-beta 93 residue of human hemoglobin was investigated in order to define the optimal structure of potential antisickling agents. The properties of 21 thiol reagents were compared with regard to (a) their binding rate to hemoglobin in solution and within intact cells; (b) the modification of the oxygen dissociation curve of intact cells and (c) the effect on methemoglobin formation in solution or within intact cells. The results show the very different behaviors of these reagents.

Adult↗

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↗