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Biomedical subjects

M Marden

Publications and source records attributed to M Marden.

At least 19 recordsLinked to original sources

Hb Sitia [beta128(H6)Ala-->Val]: an unstable variant with a substitution in the alpha1beta1 interface.

Hb Sitia [beta128(H6)Ala-->Val] was found in a Greek female with slightly reduced red blood cell indices. The abnormal hemoglobin was indistinguishable from Hb A by electrophoresis but eluted after Hb A on cation exchange high performance liquid chromatography. DNA sequence analysis revealed a GCT-->GTT mutation at codon 128, which is predicted to encode an Ala-->Val substitution. This was confirmed by mass spectrometry analyses of the beta-globin chain. Since alanine at beta128(H6) interacts with several amino acids of the alpha1beta1 contact, its replacement by a larger residue results in a mild instability of the molecule and slight modifications of the oxygen binding properties.

Adult↗

Synthesis and structure-activity relationships of chiral allosteric modifiers of hemoglobin.

A series of allosteric effectors of hemoglobin, 2-(aryloxy)-2-alkanoic acids, was prepared to investigate the effect of the stereocenter on allosteric activity. The chiral analogues were based on the lead compound, RSR13 (3b), with different alkyl/alkanoic and cycloalkyl/cycloalkanoic groups positioned at the acidic chiral center. Of the 23 racemic molecules synthesized, 5 were selected for resolution based on structure-activity relationships. One chiral analogue, (-)-(1R,2R)-1-[4-[[(3, 5-dimethylanilino)carbonyl]methyl]phenoxy]-2-methylcyclopentane carbox ylic acid (11), exhibited greater in vitro activity in hemoglobin solutions than its antipode, racemate, and RSR13. Compound (-)-(1R, 2R)-11 was equipotent with RSR13 in whole blood, is a candidate for in vivo animal studies, and if efficacious and safe has a potential for use in humans. In general, it was found that chirality affects allosteric effector activity with measurable differences observed between enantiomers and the racemates.

Acetates↗

Globin and globin gene structure of the nerve myoglobin of Aphrodite aculeata.

The globin of the nerve cord of the polychaete annelid Aphrodite aculeata was isolated and purified to homogeneity. The native molecule has a pI of 6.3 and acts as a dimer of two identical Mr 15, 644.5 polypeptide chains as determined by electrospray mass spectrometry. It has an average affinity for oxygen (P50 = 1.24 torr) resulting from fast association (kon = 170 X 10(6) M-1 . s-1) and dissociation rates (koff = 360 s-1). The partial primary structure of this nerve globin was determined at the protein level and completed and confirmed by translation of the cDNA sequence. The globin chain has 150 amino acid residues and a calculated Mr of 15, 602.69 strongly suggesting that the amino terminus is acetylated. The absence of a leader sequence and the lack of Cys at the positions NA2 and H9 needed for the formation of the high Mr complexes found in extracellular annelid globins classify the Aphrodite globin with the cellular globin species. The Aphrodite nerve globin is unlikely to represent a separate globin family, as cDNA derived primers detect globin messenger RNA in muscle, gut, and pharynx tissue as well. The gene encoding this globin species is interrupted by a single intron, inserted at position G7.0. Comparison to other globin gene structures strongly suggest that introns can be lost independently, rather than simultaneously as a result of a single conversion event as suggested previously (Lewin, R. (1984) Science 226, 328).

Amino Acid Sequence↗

Hb Arta [beta 45 (CD4) Phe-->Cys]: a new unstable haemoglobin with reduced oxygen affinity in trans with beta-thalassaemia.

The interaction of rare Hb variants with beta(0)-thalassaemia results in a quasihomozygous state where the erythrocytes contain the variant as the only major adult Hb component. Such a situation is a unique model that enables functional studies even in the case of a neutral variant that could not be isolated from Hb A. We report here an unusual patient carrying Hb Arta, a novel Hb variant [beta 45 (CD4) Phe-->Cys], in trans with beta(0)-thalassaemia gene (beta(0) 39). The aminoacid substitution at the critical CD corner of this Hb molecular renders the molecule unstable. In addition, haem is displaced in a position that favours the deoxy (T) conformation of the variant, but less than in Hb Cheverly [beta 45 (CD4) Phe-->Ser], and results in a p50 of 43 mmHg (pH 7.4, 37 degrees C) in the red cells with preservation of cooperativity. Solution studies of the almost pure Hb Arta show a 50% decrease in oxygen affinity and normal cooperativity; the Bohr effect and the interaction with organic phosphates are similar to those of Hb A. Hb Arta retains both normal homo- and heterotropic effects allowing a well-preserved oxygen transport in vivo despite a mild anaemia.

Adult↗

Chimeric hemoglobin subunits: functional properties of a recombinant beta/alpha hemoglobin.

Our goal was to design a single hemoglobin subunit able to assemble into a stable tetrameric structure with cooperative O2 binding and low oxygen affinity. We have synthesized in E. coli a chimeric beta/alpha globin subunit composed of the first 73 residues of the beta chain and the last 73 residues of the alpha chain. Molecular building indicated that this construction could result in Hb homotetramers possessing the alpha 1 beta 2 interface, responsible for the heme-heme interaction in Hb heterotetramers. The results show that the chimeric subunits assemble into tetramers which bind oxygen reversibly without cooperativity but with an oxygen affinity slightly lower than observed for human Hb. The strong effector RSR 4 lowers the oxygen affinity. Kinetics of CO recombination in the presence of RSR 4 reveal a biphasic bimolecular rebinding. Functional studies suggest that the quaternary structure of the oligomer is intermediary between R-and T-state.

Blood Substitutes↗

Functional properties of beta(NA1)Val-deleted,(NA2)His-->Met hemoglobin synthesized in Escherichia coli.

Bovine Hb (hemoglobin) has a low oxygen affinity in the absence of chloride ions and DPG. Because of the increasing interest of this Hb as a potential blood substitute we have engineered a human Hb mutant with the aim of mimicking the functional properties of bovine Hb. This was achieved by deleting residue beta NA1 Val and substituting a methionine for histidine at the beta NA2 position as previously suggested by Perutz and Imai in 1980. Our results show that the artificial mutant exhibits some of the characteristics of bovine Hb but does not show the low oxygen affinity which is measured in bovine blood.

Animals↗

Hemoglobin Rouen (alpha-140 (HC2) Tyr-->His): alteration of the alpha-chain C-terminal region and moderate increase in oxygen affinity.

Hb Rouen (alpha 140(HC2) Tyr-->His) is a moderately high oxygen-affinity variant that was found in coincidence with polycythemia vera in a French patient. This hemoglobin provides an example of an alteration of the C-terminus of the alpha-chain, a region involved in the mechanisms of allosteric regulation. The increase in oxygen-affinity and decrease in cooperativity of this variant is much smaller than that resulting from the same substitution in the beta-chain. This model provides additional evidence for the inequivalence between the alpha- and beta-subunits.

Aged↗

Allosteric properties of haemoglobin beta 41 (C7) Phe-->Tyr: a stable, low-oxygen-affinity variant synthesized in Escherichia coli.

In human deoxy haemoglobin, the alpha 42(C7)Tyr-residue is hydrogen-bonded to beta 99(G1)Asp which stabilizes the low-oxygen-affinity deoxy conformation. We engineered a haemoglobin with Tyr for Phe at the homologous C7 position in beta-chains. The oxygen affinity of the variant is decreased about two-fold relative to Hb A while keeping similar KR and KT values. This mutant may be a candidate for the development of an artificial oxygen carrier, as it would not require an external effector for significant oxygen unloading in vivo.

Allosteric Site↗

Steric and hydrophobic determinants of the solubilities of recombinant sickle cell hemoglobins.

Models for the structure of the fibers of deoxy sickle cell hemoglobin (Hb Hb S, beta 6 Glu-->Val) have been obtained from X-ray and electron microscopic studies. Recent molecular dynamics calculations of polymer formation give new insights on the various specific interactions between monomers. Site-directed mutagenesis with expression of the Hb S beta subunits in Escherichia coli provides the experimental tools to test these models. For Hb S, the beta 6 Val residue is intimately involved in a specific lateral contact, at the donor site, that interacts with the acceptor site of an adjacent molecule composed predominantly of the hydrophobic residues Phe 85 and Leu 88. Comparing natural and artificial mutants indicates that the solubility of deoxyHb decreases in relation to the surface hydrophobicity of the residue at the beta 6 position with Ile > Val > Ala. We also tested the role of the stereospecific adjustment between the donor and acceptor sites by substituting Trp for Glu at the beta 6 location. Among these hydrophobic substitutions and under our experimental conditions, only Val and Ile were observed to induce polymer formation. The interactions for the Ala mutant are too weak whereas a Trp residue inhibits aggregation through steric hindrance at the acceptor site of the lateral contact. Increasing the hydrophobicity at the axial contact between tetramers of the same strand also contributes to the stability of the double strand. This is demonstrated by associating the beta 23 Val-->Ile mutation at the axial contact with either the beta 6 Glu-->Val or beta 6 Glu-->Ile substitution in the same beta subunit.(ABSTRACT TRUNCATED AT 250 WORDS)

Alanine↗

Inhibition of the erythrocyte (Ca2+ + Mg2+)-ATPase by nonheme iron.

The erythrocyte calmodulin-stimulated (Ca2+ + Mg2+)-ATPase (CaM-ATPase), an integral membrane protein, is inhibited in different types of congenital hemolytic anemias for which oxidative processes appear as a common feature. The oxidation of hemoglobin and its degradation lead to the accumulation of ferric heme (hemin) and nonheme iron in the red cell. We have shown previously that hemin inhibits the activity of the enzyme of normal erythrocyte (Leclerc et al. (1988) Biochim. Biophys. Acta, 946, 49-56) involving an oxidation of thiol groups. The present study demonstrates that nonheme iron also inhibits the CaM-ATPase activity. In contrast with hemin, the inhibition of the enzyme induced by the nonheme treatment is prevented by butylated hydroxytoluene, a protecting agent of unsaturated phospholipid peroxidations, while dithiothreitol, a reducing agent of protein disulfide bridges, does not restore the activity of the enzyme. We conclude that nonheme iron inhibits the enzyme at least in part, through the peroxidation of phospholipids of the membrane bilayer.

Butylated Hydroxytoluene↗

Hemoglobin Calais [beta 76 (E20) Ala----Pro]: a hemoglobin variant with decreased intrinsic oxygen affinity.

Hb Calais [beta 76 (E20) Ala----Pro] is a new human hemoglobin variant displaying a decreased oxygen affinity. The only electrophoretical difference with Hb A was a slightly more acidic isoelectric point. A 2-fold decrease in the oxygen affinity was found by equilibrium measurements performed in a suspension of intact red blood cells and in the lysate. It was confirmed by kinetic studies of the purified abnormal hemoglobin. The rate of methemoglobin formation at 37 degrees C of Hb Calais was also increased relative to Hb A. The mechanism by which the Pro for Ala substitution of an external residue in the beta-chains results in these profound functional abnormalities is unclear. Subtle changes at the heme pocket, at a distance from the mutation, may be a plausible explanation for the effects observed.

Adult↗

New effectors of human hemoglobin: structure and function.

We describe the actions of two new allosteric effectors of hemoglobin, 2-[4-(3,5-dichlorophenylureido)phenoxy]-2-methylpropionic acid (L35) and 2-[4-(3,4,5-trichlorophenylureido)phenoxy]-2-methylpropionic acid (L345). Each of them binds to two pairs of symmetry-related sites in the central cavity of human deoxyhemoglobin. One pair of sites overlaps with that occupied by bezafibrate [Perutz et al. (1986) J. Am. Chem. Soc. 108, 1064-1078]. The other sites are new, and the pair occupied by L35 is different from that occupied by L345. All the sites are at least 20 A from the site where organic phosphates are bound. L345 is by far the most potent allosteric effector of hemoglobin ever described. At a concentration of 0.1 mM, it raises the P50 of a suspension of red cells by 50%; at 0.2 mM it raises the P50 2.5-fold. At acid pH, it reduces Hill's coefficient to near unity and prevents complete oxygen saturation even under 1 atm of pure oxygen. In azidemethemoglobin at pH 6, it induces a transition to higher spin. These properties are reminiscent of those of teleost fish hemoglobins that exhibit a Root effect. The influence of L35 and L345 and that of organic phosphates on the oxygen affinity are additive, but they compete with chloride. L35 acts more weakly than L345, but can be made to induce the same effects as L345 alone by adding inositol hexaphosphate. Both compounds increase the alkaline and acid Bohr effects. They alter the bimolecular kinetics of CO recombination after a flash by increasing the slowly reacting fraction of hemoglobin in the T state at the expense of the fast-reacting fraction in the R state.(ABSTRACT TRUNCATED AT 250 WORDS)

Allosteric Regulation↗

Enhanced polymerization of recombinant human deoxyhemoglobin beta 6 Glu----Ile.

Polymerization of the deoxy form of sickle cell hemoglobin (Hb S; beta 6 Glu----Val) involves both hydrophobic and electrostatic intermolecular contacts. These interactions drive the mutated molecules into long fibrous rods composed of seven pairs of strands. X-ray crystallography of Hb S and electron microscopy image reconstruction of the fibers have revealed the remarkable complementarity between one of the beta 6 valines of each molecule (the donor site) and an acceptor site at the EF corner of a neighboring tetramer. This interaction constitutes the major lateral contact between the two strands in a pair. To estimate the relative importance of this key hydrophobic contact in polymer formation we have generated a polymerizing Hb with isoleucine at the beta 6 position (beta E6I) by site-directed mutagenesis. The mutated beta chains were produced in Escherichia coli and reassembled into functional tetramers with native alpha chains. Compared to native Hb S, the beta E6I mutant polymerizes faster and with a shortened delay time in 1.8 M phosphate buffer, indicating an increased stability of the nuclei preceding fiber growth. The solubility of the beta E6I mutant Hb is half that of native Hb S. Computer modeling of the donor-acceptor interaction shows that the presence of an isoleucine side chain at the donor site induces increased contacts with the receptor site and an increased buried surface area, in agreement with the higher hydrophobicity of the isoleucine residue. The agreement between the predicted and experimental differences in solubility suggests that the transfer of the beta 6 valine or isoleucine side chain from water to a hydrophobic environment is sufficient to explain the observations.

Base Sequence↗

Inhibition of membrane erythrocyte (Ca2+ + Mg2+)-ATPase by hemin.

Red blood cell lysis is a common symptom following severe or prolonged oxidative stress. Oxidative processes occur commonly in sickle cells, probably mediated through denatured hemoglobin and the accumulation of ferric hemes in the membranes. Calmodulin-stimulated (Ca2+ + Mg2+)-ATPase from sickle red cell membranes is partially inactivated (Leclerc et al. (1987) Biochim. Biophys. Acta 897, 33-40). In this study (Ca2+ + Mg2+)-ATPase activity from normal adult erythrocyte membranes was measured in the presence of hemin. We report a time- and concentration-dependent inhibition of the activity of the enzyme by hemin due to a decrease in the maximum velocity. Only a mild inhibitory effect was observed in the presence of iron-free protoporphyrin IX, indicating the catalytic influence of the iron. Experiments carried out with hemin (ferric iron) liganded with imidazole or with reduced protoheme (ferrous iron) liganded with carbon monoxide, demonstrated that the inhibition requires that hemin be capable of binding additional ligands. The inhibition was not influenced by the absence of oxygen but was prevented by addition of bovine serum albumin. Addition of butylated hydroxytoluene, a protective agent of lipid peroxidation, failed to prevent the inhibition of calmodulin-stimulated (Ca2+ + Mg2+)-ATPase. As dithiothreitol partially restores the enzyme activity, we postulated that hemin interacts with the thiol groups of the enzyme.

Ca(2+) Mg(2+)-ATPase↗

Increased oxygen affinity with normal heterotropic effects in hemoglobin Loire [alpha 88(F9)Ala----Ser].

Increased homotropic allosteric effect, while maintaining normal heterotropic effects, was observed in hemoglobin Loire. The oxygen binding curves, at equilibrium, and the kinetic measurements demonstrated that the substitution of alpha 88(F9) Ala for a Ser results in increased oxygen affinity and decreased n50 value. The function of the residues involved in the Bohr effect or in the regulation by 2,3-bisphosphoglycerate is not altered. The effects of bezafibrate, which binds specifically to the alpha chains, was similar to that observed in Hb A. The functional properties of Hb Loire may be explained by a slight displacement of some key residues of the C-terminal region of the alpha chain destabilizing the T structure.

2,3-Diphosphoglycerate↗

Investigation of the tetramer-dimer equilibrium in haemoglobin solutions by high-performance size-exclusion chromatography on a diol column.

High-performance size-exclusion chromatography on a diol grafted column was applied to study the tetramer-dimer equilibrium in haemoglobin solution. Human haemoglobin A, isolated alpha A and beta A subunits and haemoglobin variants with structural modifications located at the interface between subunits were used as models. The elution volume of the subunits was found to deviate strongly from that expected from only a gel permeation mechanism and therefore ionic interactions are likely to participate in the protein retention. Experimental results and computer simulation indicate that the individual elution bands corresponding to the discrete components (tetramer, dimer, monomer) can be resolved under certain conditions. In general both the equilibrium and kinetic interconversion parameters must be considered. Single tetramer elution bands were observed from haemoglobin in the concentration range measurable, although the influence of dimers could be seen in the shape and shift of the profile. beta Chains showed resolved peaks for the tetramer-dimer forms.

Chromatography, Gel↗

Hemoglobin J Guantanamo [alpha 2 beta 2 128 (H6) Ala----Asp] in association with hemoglobin C and alpha-thalassemia in a family from Benin.

Hemoglobin J (HbJ), Guantanamo, which had been described but once in the literature, was found in a family originating from Benin; this second case was found to be in association with hemoglobin C (HbC) and alpha-thalassemia. High-performance liquid chromatography (HPLC) procedures and microsequencing were used for characterization of the aminoacid substitution. The main hematological disorder, in relation with the instability of Hb J Guantanamo, seems to be a worsening of the rheological properties of the red blood cells (RBC), as demonstrated by ektacytometric studies. Oxygen-binding properties of the RBC were almost normal, but a slight decrease in cooperativity and lowered Bohr and 2,3-diphosphoglycerate (DPG) effects were observed for pure stripped Hb J Guantanamo. The expression of the electrophoretic charge difference was partly masked, as is often observed when the structural abnormality is situated in or near a contact area.

Amino Acid Sequence↗