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Biomedical subjects

R Rosa

Publications and source records attributed to R Rosa.

At least 73 records · Page 4Linked to original sources

Antigenic studies on Rhizopus microsporus, Rh. rhizopodiformis, progeny and intermediates (Rh. chinensis).

Fourteen isolates belonging to Rhizopus microsporus, Rh. rhizopodiformis, the progeny of Rh. microsporus x Rh. rhizopodiformis and an intermediate species, Rh. chinensis, were serologically tested either by a modification of the exoantigen technique of Kaufman & Standard (1978) or by the more analytical cross immunoelectrophoresis technique with intermediate gel. Common antigenic determinants in the isolates studied indicated that the species, their progeny and the intermediate species Rh. chinensis, are antigenically very closely related. Through absorptions, a specific reference antiserum for Rh. microsporus was obtained. With this adsorbed monospecific antiserum, using the exoantigen test, the identity of the isolates in study, determined after their general morphology as Rh. microsporus, was confirmed. For comparative purposes, the use of reversed phase high performance liquid chromatography for the investigation of fungal isolates is also reported.

Antigens, Fungal↗

Rabbit M type phosphoglyceromutase: comparative effects of two thiol reagents antibody reaction and hybridization studies.

1. Treatment of purified rabbit phosphoglyceromutase (M type) with N-ethylmaleimide or with iodoacetamide produces the concurrent loss of phosphoglyceromutase activity with its collateral glycerate-2,3-P2 phosphatase activity. 2. Differences are observed in the protective effect of glycerate-2,3-P2 and of glycolate-2-P against N-ethylmaleimide and iodoacetamide treatments. 3. Specific chicken antibodies obtained by injection of the purified rabbit M type phosphoglyceromutase do not cross-react with the B type but neutralize both rabbit and human M type phosphoglyceromutase. 4. Purified rabbit M type phosphoglyceromutase can hybridize in vitro with the purified human B type or with purified human glycerate-2,3-P2 synthase. 5. Its ability to hybridize with glycerate-2,3-P2 synthase is unchanged after iodoacetamide treatment.

Animals↗

Pyruvate kinase synthesis and degradation by normal and pathologic cells during erythroid maturation.

Mature erythrocytes contain a specific isozyme of pyruvate kinase (R-PK) while immature erythroblasts coexpress R-PK and another isozyme, M2-PK. To determine what roles degradation and decreasing of synthesis played in the disappearance of M2-PK during erythroid maturation, M2-PK and R-PK synthesis and degradation were studied in erythroblasts from fetal liver and blood BFU-E-derived erythroblasts from healthy subjects, an erythroleukemic patient, and a patient with an erythrocyte PK hyperactivity associated with M2-PK persistence in mature erythrocytes. In normal erythroblasts, R-PK synthesis was constant throughout erythroid maturation, whereas M2-PK synthesis decreased to the point of becoming undetectable. R-PK degradation was very low, while M2-PK degradation was more pronounced and steady during erythroid maturation. In leukemic erythroblasts, total protein turnover was higher than in normal cells, but the M2-PK degradation rate was lower. In erythroblasts from the patient with M2-PK persistence in mature erythrocytes, M2-PK synthesis did not decline with cell maturation. In conclusion, our results emphasize the importance of the decrease of M2-PK synthesis in the disappearance of M2-PK during erythroid maturation. Further studies of patients with pathologic persistence of M2-PK synthesis will help in the understanding of this event involved in erythroid maturation.

Adult↗

The use of enzymopathic human red cells in the study of malarial parasite glucose metabolism.

The in vitro growth of Plasmodium falciparum malaria parasites was assayed in mutant red cells deficient in either diphosphoglycerate mutase (DPGM) or phosphoglycerate kinase (PGK). In addition, cDNA probes developed for human DNA sequences coding for these enzymes were used to examine the parasite genome by means of restriction endonuclease digestion and Southern blot analysis of parasite DNA. In both types of enzymopathic red cells, parasite growth was normal. In infected DPGM deficient red cells, no DPGM activity could be detected, and in normal red cells, DPGM activity declined slightly in a manner suggestive of parasite catabolism of host protein. However, in infected PGK deficient red cells, there was a 100-fold increase in PGK activity, and in normal red cells, a threefold increase in PGK activity was observed. Parasite PGK could be recovered from isolated parasites, and a marked increase in heat instability of parasite PGK as compared with the host cell enzyme was noted. Neither cDNA probe was found to cross-react with DNA sequences in the parasite genome. It is concluded that the parasite has no requirement for DPGM, and probably has no gene for this enzyme. On the other hand, the parasite does require PGK, (an adenosine triphosphate [ATP] generating enzyme) and synthesizes its own enzyme, which must have been encoded in the parasite genome. The parasite PGK gene most likely lacks sufficient homology to be detected by a human cDNA probe. Enzymopathic red cells are useful tools for elucidating the glycolytic enzymology of parasites and their co-evolution with their human hosts.

Animals↗

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↗

Metabolic activity of the Sticker's lymphosarcoma.

Some parameters (glycolysis, respiration, levels of glycolytic enzymes) of the lymphoid cells from the Sticker's lymphosarcoma were established in order to better define the biochemical behavior of the venereal tumor of the dog. For comparative purposes lymphocytes from peripheral blood of normal and tumor-bearing dogs were also studied. Lactic acid produced by the tumor cells during aerobic glycolysis is liberated in the reaction medium. Oxygen uptake is enhanced in the presence of succinate, but not with pyruvate, alpha-ketoglutarate, or malate as substrates. Higher levels of some of the enzymes from the glycolytic pathways as well as differences on the physicochemical and kinetic properties of the glycolytic regulatory enzymes are found in Sticker's tumor cells, when compared with the lymphocytes from peripheral blood of normal and tumor-bearing dogs. A fructose-bisphosphate positively modulated pyruvatekinase is found in the tumor cells.

Animals↗

Kinetic properties of pyruvate kinase from the epaxial muscle of the marine fishes Mugil lisa and Chaetoditerus faber.

Kinetic studies were carried out on the reaction catalyzed by pyruvate kinase (ATP:pyruvate phosphotransferase, E.C. 2.7.1.40) purified from white striated (epaxial) muscle of two marine fish Mugil lisa (Brazilian mullet) and Chaetoditerus faber (harvest fish). This included the establishment of kinetic parameters. Attention was given to the effect of fructose 1,6-bisphosphate (Fru-P2) on PK activity. Effects of ATP, alanine and the divalent ions, Mg2+, Mn2+, Cu2+, Be2+ and Co2+, on the fish muscle enzyme were also studied.

Adenosine Diphosphate↗

Antigenic characterization of Penicillium camemberti and related common cheese contaminants.

Twenty-four isolates of Penicillium (including a green-spored mutant from a French Brie cheese, Penicillium camemberti) with a proposed relationship to the white cheese mold P. camemberti were investigated by immunological procedures. These penicillia, which are representative of species that have caused considerable taxonomic confusion, had common micromorphology (terverticillate penicilli with rough and smooth stipes and smooth ellipsoidal to subglobose [(3 to 5) X 2 1/2 to 4 1/2 microns] conidia); growth rates; good growth on creatine sucrose agar, cheese, and other products with a high amount of protein and lipid as a primary habitat; production (with the exception of Penicillium solitum) of cyclopiazonic acid; and the ability to grow at low temperatures and water activities. The isolates that were investigated proved to be strictly antigenically related. Absorbed antiserum of the green-spored mutant of P. camemberti showed a specific precipitin band when tested by immunodiffusion either with its homologous reference antigen or with the exoantigens obtained from different isolates. The precipitin band was not present in any P. camemberti starter culture but in many unwanted cheese contaminants. The precipitin band can be used in the purity control of P. camemberti starter culture spore preparations. Analysis of the exoantigens of all the cultures by reversed phase high-performance liquid chromatography allowed us to subdivide these penicillia into nine groups below the species level. The results indicate that P. commune Thom is the wild-type ancestor of P. camemberti.

Antigens, Bacterial↗

Sodium-potassium pump, ion fluxes, and cellular dehydration in sickle cell anemia.

We studied the role of the sodium-potassium pump in erythrocytes of 12 patients with sickle cell anemia (SS). Ouabain-binding sites per cell and pump-mediated Rb/K uptake were significantly higher in SS patients than in white or black controls. Ouabain-resistant Rb/K influx was also greater than in normal controls or patients with sickle cell trait. Deoxygenation of SS erythrocytes increased ouabain-sensitive Rb/K influx without altering ouabain binding, presumably as the consequence of an increase in the passive influx of sodium. Deoxygenation increased mean corpuscular hemoglobin concentration (MCHC) by 5.5%, and studies of the density distribution of SS cells indicated an increase in highly dense fractions known to contain sickled erythrocytes. Ouabain prevented the rise in MCHC and reduced the percentage of dense cells. These findings indicate a magnified role for the sodium-potassium pump in the pathophysiology of SS erythrocytes and suggest that its inhibition might prove useful in therapy.

Adolescent↗

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↗

[Triosephosphate isomerase deficiency. Familial survey and prenatal detection].

Triose phosphate isomerase catalyses dihydroxyacetone phosphate to glyceraldehyde 3 phosphate isomerism. Its deficiency associates hemolytic anemia, neurologic abnormalities, relapsing infections and results in encephalopathy or early death. On the occasion of 2 new cases, we report one of the most important familial surveys as 93 subjects were studied, confirming the autosomal recessive transmission of the deficiency and the first results of antenatal diagnosis which could be performed in one of the families.

Anemia, Hemolytic, Congenital↗

Purification of human leucocyte pyruvate kinase.

The M2 form of pyruvate kinase (M2-PK) was purified from human leucocytes by a new method involving a succession of two different Dyematrex agarose chromatographies. The main step consisted of an orange dye affinity column with elution by fructose-1,6-diphosphate. This purification procedure allowed us to obtain M2-PK with a specific activity of 433 I.U./mg of protein, i.e. a 188-fold purification with an overall yield of 33%. The homogeneity of this preparation was verified by sodium dodecyl sulphate polyacrylamide gel electrophoresis and double immunodiffusion in Ouchterlony plates. Anti-M2-PK antibodies obtained from rabbit neutralized the enzyme activity. Their specificity with regard to other types of PK showed that anti-M2-PK also reacted with M1-PK but not with R-PK.

Chromatography, Ion Exchange↗

Purification of the M-type phosphoglyceromutase from rabbit muscle.

A new method for the purification of M-type phosphoglyceromutase from rabbit muscle involving affinity chromatography on dye ligand media in the presence of 2,3-diphosphoglycerate is described. The method is rapid and technically simple. The purity of the enzyme was verified by electrophoresis in polyacrylamide gel in the presence of sodium dodecyl sulphate and by Cellogel electrophoresis. Immunological techniques showed that the anti-M antibodies are specific and do not cross-react with the B isozyme.

Animals↗

Glycerated hemoglobin, alpha 2A 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 an erythremic patient that we have previously described with a complete erythrocyte bisphosphoglycerate mutase (EC 5.4.2.4) deficiency. Hbx (3.5% of the total) was detected by isoelectric focusing and exhibited electrophoretic and chromatographic properties similar to those 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. Fast atom bombardment mass spectrometry and a specific enzymatic assay with glyoxylate reductase demonstrated that the beta 82 adduct was a glycerate moiety. It was concluded that Hbx was a glycerylated Hb, alpha 2A 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 bisphosphoglyceromutase deficiency, remains to be determined.

Amino Acids↗

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

The human erythrocyte 2,3-bisphosphoglycerate mutase (BPGM) is a multifunctional enzyme which controls the metabolism of 2,3-diphosphoglycerate, the main allosteric effector of haemoglobin. Several cDNA banks were constructed from reticulocyte mRNA, either by conventional cloning methods in pBR322 and screening with specific mixed oligonucleotide probes, or in the expression vector lambda gt 11. The largest cDNA isolated contained 1673 bases [plus the poly(A) tail], which is slightly smaller than the size of the intact mRNA as estimated by Northern blot analysis (approximately 1800 bases). This cDNA encodes for a protein of 258 residues; the protein yielded 34 tryptic peptides which were subsequently isolated by h.p.l.c. Our nucleotide sequence data were entirely confirmed by the amino acid composition of these tryptic peptides and reveal several major differences from the published sequence; the revised amino acid sequence of human BPGM is presented. These findings represent the first step in the study of the expression and regulation of this enzyme as a specific marker of the erythroid cell line.

Amino Acid Sequence↗

Surgical treatment of tumors of the spine.

Indications for the surgical treatment of spinal tumors are intractable pain, spinal instability and deformity, and impending or present significant neurologic complications. The best results are obtained by thorough decompression, adequate correction of deformity, and proper stabilization of the spine. The decompressive laminectomy alone is rarely indicated for neoplastic diseases of the spine. In general, the principles of surgical treatment for spinal tumors are: anterior approach for the anterior lesion and posterior approach for the posterior lesion, a one-stage combined anterior and posterior approach for extensive lesions, and adequate stabilization with the use of various internal fixation devices, bone graft, or bone cement. The results of surgical treatments of 20 patients in this series based on these guidelines are satisfactory (7 excellent, 6 good, and 7 fair). None was rated as poor.

Adolescent↗