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J Rosa

Publications and source records attributed to J Rosa.

At least 73 records · Page 4Linked to original sources

One- and two-dimensional NMR investigations of the heme pocket in free alpha(CO) chains from human hemoglobin.

Two-dimensional nuclear magnetic resonance techniques were used to assign resonances corresponding to heme pocket residues of the isolated alpha(CO) subunits of the human adult hemoglobin (HbA). The assignment procedure was based on the partial identification of the amino acid spin system from the J-correlated (COSY) spectrum and on the nuclear Overhauser effect connectivities (from NOSEY spectra) with the heme substituents. We present here partial assignments corresponding to five amino acid residues: Leu86, Leu-91, Val-93, Leu-101 and Leu-136. Starting from the known crystallographic structure of the alpha subunit in the hemoglobin tetramer, we applied a dipolar model to compute the ring-current shift of the protons from fifteen amino acid residues in the heme pocket. Comparison of the predicted and observed chemical shifts suggests that there is a very close similarity between the heme pocket tertiary structure of the alpha(CO) subunits in crystals of HbA(CO) and of the free alpha(CO) chains. The one-dimensional NMR spectra were used to monitor the pH-induced structural changes, the effects of chemical modification and of ligand substitution. Upon increasing the pH from 5.6 to 9.0 the structure of the heme environment appears to be invariant with the exception of some residues in the CD corner. The structure is also largely conserved when p-chloromercuribenzoate is bound to Cys-104. In contrast, the substitution of CO by O2 as ligand induces many large changes in the heme cavity which can be partially characterized by NMR spectroscopy.

Amino Acids↗

Proton NMR studies of human hemoglobin variants modified in the proximal side of beta heme pocket. Implications for the affinity control and cooperative mechanism.

Using high resolution proton NMR spectroscopy, we have investigated 10 human hemoglobin variants modified in the proximal side of the heme pocket in beta subunits. Comparative observation of several resonances in the spectra of liganded and unliganded hemoglobins allowed us to characterize the localization and nature of the structural perturbations induced by amino acid substitutions or chemical modification. The present data indicate that the structural perturbations are localized in the beta subunits, mainly in the tertiary domain surrounding the modification site. Analysis of the aromatic region of the liganded hemoglobin spectra gives substantial information for the assignment of the His-beta 97 C-2H resonance. Correlation of the spectroscopic observations with the functional characteristics of the studied hemoglobins demonstrates that structural factors localized in the proximal side of the heme pocket can control the ligand-iron interaction taking place on the other heme side. The structural perturbations induced by the modifications in the F or FG segments of the beta subunits do not extend to the distal side but rather to the alpha 1 beta 2 interface. This argues the existence of a gradient of tertiary structural stability, indicating a possible structural pattern of heme-heme interaction in the cooperativity control.

Amino Acids↗

Mouse alpha chains inhibit polymerization of hemoglobin induced by human beta S or beta S Antilles chains.

A murine model of sickle cell disease was tested by studying the polymerization of hybrid hemoglobin tetramers between alpha mouse and human beta S or beta S Antilles chains were prepared from Hb S Antilles, which was a new sickling hemoglobin inducing a sickle cell syndrome more severe than Hb S. The hybrid molecules did not polymerize in solution, indicating that the mouse alpha chains inhibited fiber formation. Consequently, a mouse model for sickle cell disease requires the transfer and expression of both alpha and beta S or beta S Antilles genes.

Amino Acid Sequence↗

Identification of some abnormal haemoglobins by fast atom bombardment mass spectrometry and fast atom bombardment tandem mass spectrometry.

The characterization of two abnormal human haemoglobins by fast atom bombardment (FAB) mapping is presented. The first variant, called 'R', exhibits a tryptic FAB map identical to that of normal haemoglobin. However, using Staphylococcus protease V8, a peptide containing the carboxyl end of the beta-chain exhibits a mass shift down to 300 mass units. This clearly indicates the deletion of the two last amino acids of the beta-chain. The second variant, called 'Grenoble', is due to two different modifications of the beta-chain. The location of the Pro----Ser exchange on peptide T5 is achieved by the collisionally activated dissociation mass analyzed ion kinetic energy spectra of the corresponding [MH]+ ion. The m/z value of that peptide indicated a supplementary acid----amide modification, which was located by amino acid sequencing using chemical methods. This work concludes with the necessity of using complementary methods for achieving rapid determinations of abnormal proteins with minute amounts.

Amino Acid Sequence↗

The peculiar spectrum of beta-thalassemia genes in Tunisia.

We have determined the spectrum of mutations producing beta-thalassemia (beta-thal) in Tunisia by direct DNA analysis using hybridization with allele-specific oligonucleotide probes and restriction endonuclease assay. In all, 34 unrelated beta-thal patients originating from different parts of the country were available for study. The beta-globin gene cluster of each was subjected to haplotype analysis, and on the basis of this analysis, we tested each patient's DNA for one or more mutations previously shown to be linked to that haplotype. We identified four previously unreported haplotypes and found that this population differs from others in Mediterranean areas in the frequency of the beta-thal haplotypes, the unexpected observation being the high frequency of haplotype IX. Six different point mutations were found, accounting for 62% of beta-thal genes in this Tunisian population. The molecular defects known to be the most frequent in Mediterraneans (nonsense codon 39, IVS1 nt 110, IVS1 nt 6) only make up 37% of the mutant genes. One as yet undescribed mutation (IVS1 nt 2 T----G) was identified by molecular cloning and sequencing. Our results should help the implementation of a prenatal diagnosis program for beta-thal in Tunisia.

Genetic Markers↗

Alternative transcription and splicing of the human porphobilinogen deaminase gene result either in tissue-specific or in housekeeping expression.

Porphobilinogen deaminase [PBGD; porphobilinogen ammonia-lyase (polymerizing), EC 4.3.1.8] is a cytosolic enzyme involved in the heme biosynthetic pathway. Two isoforms of PBGD, encoded by two mRNAs differing solely in their 5' end, are known: one is found in all cells and the other is present only in erythroid cells. We have previously shown that the human PBGD is encoded by a single gene and have now cloned and characterized this gene, which is split into 15 exons spread over 10 kilobases of DNA. We demonstrate that the two mRNAs arise from two overlapping transcription units. The first one (upstream) is active in all tissues and its promoter has some of the structural features of a housekeeping promoter; the second, located 3 kilobases downstream, is active only in erythroid cells and its promoter displays structural homologies with the beta-globin gene promoters.

Ammonia-Lyases↗

Permissive action of triiodothyronine on the long-term increase of glycolysis by insulin in cultured rat hepatocytes.

The long-term influence of triiodothyronine (T3) and insulin on glycolysis, some glycolytic/gluconeogenic enzymes and insulin responsiveness and sensitivity was investigated in rat hepatocytes cultured for 48 h without T3, with 10 microM T3, with 10nM insulin and with insulin plus T3. From 48 h-51 h basal glycolysis ([14C]lactate formation from [14C]glucose) was measured in the absence and short-term insulin-stimulated glycolysis in the presence of 100 nM insulin. 1) T3 addition for 48 h had no significant influence on basal or on insulin-stimulated glycolysis. 2) Insulin addition for 48 h increased basal glycolysis to 300%, and insulin-stimulated glycolysis to 160%. 3) T3 plus insulin addition for 48 h elevated basal glycolysis to 560% and insulin-stimulated glycolysis to 230%. 4) The 48-h treatment with T3 did not change glucokinase (GK) and pyruvate kinase (PK) activity, yet it increased phosphoenol-pyruvate carboxykinase (PEPCK) activity to 150%. 5) The 48-h treatment with insulin as well as T3 plus insulin enhanced GK to 200% and PK to 140% and decreased PEPCK to 65%. 6) The long-term effect of T3 on glycolysis was maximal at initial concentrations of 100 nM. 7) The long-term treatment with T3 did not alter the short-term responsiveness or sensitivity of glycolysis for insulin, neither in cells from euthyroid nor from hypothyroid rats. The present results allow the conclusion that T3 had a permissive effect on the long-term increase of glycolysis by insulin, and that T3 exerted this function by altering neither the cellular content of key enzymes nor the short-term insulin responsiveness and sensitivity.

Animals↗

Hb Tunis [alpha 2 beta 2 124 (H2)Pro----Ser], a new beta chain variant identified by HPLC.

During a routine hematological investigation of a child from Tunis, a silent hemoglobin variant was discovered by isoelectric-focusing. This variant was not detectable by conventional electrophoretic methods, had normal stability, expression, and oxygen affinity, and did not produce any clinical symptoms. This new variant beta 124(H2)Pro----Ser was named Hb Tunis.

Amino Acids↗

Hemoglobin Saverne: a new variant with elongated beta chains: structural and functional properties.

A 26-year-old French woman born in Saverne (France) was found to have Heinz body hemolytic anemia. Isoelectrofocusing showed the presence of an abnormal band amounting to 35% of the total hemoglobin concentration, suggesting a beta variant. Structural analysis of the abnormal beta chain showed an elongated C-terminal segment. Histidine 143 is replaced by a proline and the C-terminal sequence is identical to the corresponding segment of Hb Cranston. This new variant, named Hb Saverne, has beta chains composed of 156 amino acid residues. Studies of its functional properties showed that Hb Saverne is an unstable, high affinity variant with low cooperativity.

Adult↗

The enzymes of the glycolytic pathway in erythrocytes infected with Plasmodium falciparum malaria parasites.

Enzymes of the glycolytic pathway as well as some ancillary enzymes were studied in normal red cells parasitized with Plasmodium falciparum in culture at varying parasitemias as well as in isolated parasites. The levels of all enzymes except diphosphoglycerate mutase, glucose-6-phosphate dehydrogenase, and adenylate kinase were elevated. Extreme elevations of hexokinase, aldolase, enolase, pyruvate kinase, and adenosine deaminase concentrations were noted. In most cases, electrophoretically distinct bands of enzyme activity were also seen. These findings partly explain the previously noted 50- to 100-fold increase in glucose consumption of infected red cells and suggest that further knowledge of these parasite enzymes and their genetic basis may aid both in designing new chemotherapy and in understanding the evolution of these parasites.

Animals↗

Characterization of indium-111 labeled recombinant tissue plasminogen activator for the imaging of thrombi.

The in vitro functional properties of recombinant tissue plasminogen activator (rt-PA), its biodistribution in mice, and its pharmacokinetics and clot localization properties in dogs have been investigated after labeling rt-PA with 111In. The rt-PA was coupled with the bicyclic anhydride of DTPA using standard methodology. Amidolytic and fibrinolytic assays showed retention of protein activity when rt-PA was conjugated with an average of one DTPA group or less per molecule. Size exclusion HPLC showed each preparation to be radiochemically pure with 111In bound exclusively to the attached DTPA groups. Biodistribution in mice showed major accumulation of activity in the liver and kidneys. After administration of 0.5-1.0 mg of the labeled protein to dogs, blood activity decreased with a half time of approximately 5 min in agreement with previous reports of rapid blood clearance. Largely because of decreased blood levels, clot: blood ratios of labeled protein increased rapidly, in one study reaching 6.3 after 31 min, and satisfactory images of fibrin thrombi were obtained. The rt-PA may be labeled with 111In without destroying the ability of the protein to localize in clot and images of forming clot can be obtained with this agent within 1 h after administration.

Animals↗

A new case of Hb Little Rock [beta 143(H21)His----Gln], a high affinity variant. Study during pregnancy.

A new case of Hb Little Rock [beta 143(H21)His----Gln] is described. This high affinity variant (P50 = 15 mm Hg in whole cells) has a nearly normal cooperativity. The abnormal beta chain is readily detectable using urea-Triton X-100 electrophoresis. The altered beta T-14 peptide was separated by high performance liquid chromatography. The proposita was followed during a pregnancy. Oxygen unloading was reduced, but normal oxygen loading was maintained in the fetus. There were neither placental abnormalities, nor intrauterine growth retardation.

Adult↗

Further characterization of Hb Henri Mondor or alpha 2 beta 2(26)(B8)Glu----Val.

A second case of Hb Henri Mondor is reported. The subject, homozygous for Hb Henri Mondor, is of Algerian origin. The electrophoretical behavior and structural characterization are given and discussed. Hb Henri Mondor, which is characterized by the replacement of the lysine residue in position beta 26, as is the case for Hb E, has normal functional properties and is normally expressed.

Amino Acids↗

Molecular cloning of the human 2,3-bisphosphoglycerate mutase cDNA and revised amino acid sequence.

The human erythrocyte 2,3-bisphosphoglycerate mutase (BPGM) is a multifunctional enzyme which controls the metabolism of 2,3-diphosphoglycerate (DPG), the main allosteric effector of haemoglobin. Several cDNA banks were constructed from reticulocyte mRNA either by conventional cloning methods in plasmid pBR322 and screening with specific mixed oligonucleotide probes, or in the expression vector lambda gt 11. The largest cDNA isolated was 1673 bases, and encodes for a protein of 258 amino acids; it contains a large 3' untranslated region (785 bases). It is slightly smaller than the size of the intact mRNA estimated by Northern blot (1800 bases). Our sequence data indicate differences with the previously published amino acid sequence involving 21% of the residues. They were entirely confirmed by the amino acid composition of the tryptic peptides derived from purified BPGM. The revised amino acid sequence of the human BPGM is presented.

Amino Acid Sequence↗

Glycerated hemoglobin alpha 2 beta 2(82) (EF6) N-epsilon-glyceryllysine: a new post-translational modification occurring in erythrocyte bisphosphoglyceromutase deficiency.

A new minor Hb fraction initially designated Hbx, has been found in the hemolysate of a erythremic patient that we have previously described with a complete erythrocyte bisphosphoglyceromutase (BPGM) (E.C.2.7.5.4.) deficiency. Hbx (3.5% of the total) was detected by isoelectric focusing (IEF) and exhibited electrophoretic and chromatographic properties similar to that of several variants of the Hb central cavity. By density fractionation of red cells, it was demonstrated that Hbx was an aging hemoglobin as in the case of glycated Hb A1c. Functional studies revealed a low oxygen affinity and almost complete inhibition of the allosteric effect of the organic phosphate effectors. Structural studies demonstrated an absence of tryptic cleavage between the peptides beta T9 and beta T10 suggesting the presence of an adduct on Lys beta 82 or on a neighboring residue. FAB mass spectrometry, CID/MIKE spectra and a specific enzymatic assay with glyoxylate reductase, demonstrated that the 82 adduct was a glycerate moiety. It was concluded that Hbx was a glycerylated Hb: alpha 2 A beta 2(82) (EF6) N-epsilon-glyceryllysine, to our knowledge the first example of glycerylated protein. The mechanism of formation of glyceryl-Hb, which was found in the four studied subjects with a BPGM deficiency, remains to be determined.

Bisphosphoglycerate Mutase↗