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Biomedical subjects

S E Harding

Publications and source records attributed to S E Harding.

At least 181 records · Page 10Linked to original sources

The effect of anions and cations on cardiac adenylate cyclase: interactions with isoprenaline and GTP.

Anions stimulated rabbit heart adenylate cyclase in the order chloride greater than phosphate greater than acetate, while the cations sodium and potassium had little effect. Activation by KCI was multiplicative with that of fluoride. Isoprenaline (10(-4) M) and GTP(10(-4) M) stimulated the cyclase independently, and their combined effects were multiplicative. GTP stimulated less than chloride but more than acetate. Activation by chloride or acetate was more than additive with that by GTP. The effect of isoprenaline was reduced in the presence of chloride or acetate, and this reduction was not modified by sodium or potassium. It was concluded that ionic influence may be biologically important in modifying cyclase activity and the extent of beta-receptor stimulation.

Acetates↗

Polyelectrolyte behaviour in mucus glycoproteins.

Mucus glycoproteins isolated from a human ovarian cyst and the sputum of a cystic fibrotic exhibit a significant decrease in reduced viscosity with increase in ionic strength, I. The molecular weights of the glycoproteins showed little variation with I, implying that the change is conformational rather than a dissociation. This change is ascribed to a polyelectrolyte-type contraction rather than to a reduction in particle asymmetry. Guanidine hydrochloride acts as a classical electrolyte in the reversible suppression of charge effects, and not as a denaturing or dissociation agent. These observations help to resolve some discrepancies in earlier studies. The occurrence of polyelectrolyte effects in these glycoproteins is ascribed to flexibility of structure and to their content of N-acetylneuraminic acid. The ionic strength values necessary for different types of physical measurement are discussed.

Cystic Fibrosis↗

Further evidence for a flexible and highly expanded spheroidal model for mucus glycoproteins in solution.

The flexible and greatly expanded roughly spherical model for mucus glycoproteins proposed earlier, on the basis of hydrodynamic and n.m.r. data, is supported by new hydrodynamic results on a bronchial glycoprotein from a cystic-fibrosis patient. Furthermore, images from electron microscopy of this molecule and a lower-molecular-weight mucus glycoprotein (which closely resembles a glycopolypeptide) appear to be at least consistent with this model.

Cystic Fibrosis↗

Tri-axial ellipsoids as models for macromolecules in solution: procedures for numerical inversion of the shape functions leading to a stable unique solution.

Two FORTRAN IV algorithms are given for determining the two axial ratios of a macromolecule (as modelled by a tri-axial ellipsoid) from its hydrodynamic parameters. The first involves a simple graphical inversion procedure of the volume independent V and R functions but can only be applied to a restricted range of macromolecules. The second algorithm is more general and involves an R-function constrained non-linear least squares fit to birefringence decay data.

Computers↗

A simple test for macromolecular heterogeneity in the analytical ultracentrifuge.

A simple check for the presence of heterogeneity in a macromolecular system is proposed, employing comparison of Rayleigh sedimentation-equilibrium patterns for two solutions of the same fringe concentration but differing absolute concentrations. The method is illustrated by application to a bronchial glycoprotein from a cystic-fibrosis patient.

Glycoproteins↗

Some observations on a new type of point average molecular weight.

A new type of (reduced) point average molecular weight, A*, is described. Several interesting properties are developed: (i) A* (cell base) = reduced weight average molecular weight over the whole cell, Aow; (ii) A* (meniscus) = Aw (meniscus); (iii) A* (zero concentration) = reduced number average molecular weight, An (meniscus). In addition, its usefulness in extracting the meniscus concentration, J(a), and in examining heterogeneous systems such as mucus glycoproteins, are discussed. The evaluation and application of A* requires only simple computational facilities, without the use for large-scale multiple data acquisition and recycling techniques.

Biopolymers↗

Removal of sialic acid from cardiac sarcolemma does not affect contractile function in electrically stimulated guinea pig left atria.

Calcium is essential for the maintenance of contraction in the heart, and it has been suggested that the glycoprotein matrix on the external surface of cardiac cells is a critical factor in the supply of 'activator' calcium to the beating heart. Sialic acid residues are important calcium-binding sites in the matrix and treatment with neuraminidase, an enzyme which cleaves sialic acid from oligosaccharide chains, has been reported to abolish spontaneous contraction in cultured heart cells, without causing general breakdown in the plasma membrane. However, we report here that in intact, electrically stimulated guinea pig atrial preparations, neuraminidase treatment produces no significant changes in resting tension or force of contraction. It is also without effect on the response to calcium removal and replacement, and inotropic or toxic concentrations of cardiac glycosides. In these experiments, up to 79% of the total tissue sialic acid was removed, and electron microscopy studies showed that this removal was accompanied by marked reduction of lanthanum binding to the sarcolemma. We therefore conclude that the calcium-binding sialic acid residues in the external matrix of the cardiac cells are of little importance in the maintenance of contractile function in these intact atrial preparations.

Animals↗

The combination of the viscosity increment with the harmonic mean rotational relaxation time for determining the conformation of biological macromolecules in solution.

A new hydrodynamic shape function, lambda, is derived for determining the conformation of biological macromolecules in solution, adding to the increasing number of shape parameters whose experimental determination does not require a knowledge of the particle swelling due to solvation in solution. lambda can be found from a knowledge of the molecular weight, intrinsic viscosity and the harmonic mean rotational relaxation time. A table of values and a plot of lambda as a function of axial ratio for both oblate and prolate ellipsoids of revolution are given.

Macromolecular Substances↗

Enhancement of the toxic effects of veratrine on guinea-pig atrium by threshold inotropic doses of ouabain.

Isolated atria of guinea-pigs were treated with veratrine until the initial signs of toxicity were seen. Ouabain was then added cumulatively, starting with a threshold inotropic concentration, 50 nM, until the tissue became dysrhythmic. It was found that a concentration of ouabain which by itself gave a positive inotropic effect of only 3%, significantly enhanced the toxicity of veratrine. Veratrine had no effect on the (Na+ + K+)-adenosine triphosphatase ((Na+ + K+)-ATPase) enzyme isolated from guinea-pig ventricle. The conclusion drawn is that at threshold inotropic concentrations of ouabain it is likely that the (Na+ + K+)-ATPase is inhibited rather than stimulated.

Animals↗

Phosphodiesterase inhibition and Ca2+ sensitization.

Inhibitors of phosphodiesterase type III (PDE III) enhance cardiac contractile force by elevating the intracellular calcium concentration [Ca2+]i by impairing cAMP degradation thus increasing cAMP levels. The drugs are more effective in healthy than in failing hearts since basal cAMP production is diminished in the latter. However, long term treatment with PDE-III inhibitors does not appear to be beneficial due to increased risk of potentially lethal arrhythmias caused by augmentation of [Ca2+]i[1). This risk should be absent in Ca2+ sensitizers. Recently, thiadiazinone derivatives have been synthetized in which the potency for Ca2+ sensitization is many-fold larger than the potency for PDE-III inhibition. The Ca(2+)-sensitizing action resides in the [+]-enantiomers, while the [-]-enantiomers show weak PDE-III inhibition. In the enantiomer pair [+]-EMD 60263 and [-]-EMD 60264, only the former concentration-dependently increased force of contraction in isolated cardiac preparations and myocytes. In the Langendorff-perfused guinea-pig heart, force was reversibly increased, whereas [-]-EMD 60264 even produced a negative inotropic response despite of its PDE inhibitory activity. Heart rate, however, was reduced by both enantiomers. Perfusion pressure remained unaffected. The effects were fully reversible upon wash-out of the enantiomers. [+]-EMD 60263 also enhanced cell shortening of human myocytes from both normal and failing hearts. In contrast to the opposite effects on contractility, both enantiomers prolong the action potential duration by blocking the rapidly activating component of the delayed rectifier K+ current. Thus they also possess class III antiarrhythmic activity. The therapeutic potential of these agents has yet to be assessed in clinical studies.

Animals↗

GTP-independent stimulation of rabbit heart adenylate cyclase by isoproterenol at physiological ATP concentrations.

Isoproterenol increased the activity of the adenylate cyclase of rabbit heart sarcolemmal membranes in the absence of added GTP. ATP, the ATP-regenerating system, and the sarcolemmal membrane preparation were eliminated as possible sources of contaminating GTP. Isoproterenol-stimulation increased as ATP was raised. At 0.5 mM ATP, isoproterenol increased activity by 19% whereas at 5 mM ATP isoproterenol increased activity by 121%. There was no change in basal activity between 0.5 and 5 mM ATP. Stimulation by Gpp(NH)p and NaF increased slightly between 0.5 and 5 mM ATP; stimulation by KCl was unaffected. GTP does not activate cyclase d. GTP does not activate cyclase to the same extent as Gpp(NH)p even though the two act at the same site on Ns (the stimulatory guanine nucleotide-binding protein). GTP decreased cyclase activation by Gpp(NH)p in a concentration-dependent fashion when the two were added to the assay simultaneously. Increasing ATP from 0.5 to 5 mM did not reduce activation by Gpp(NH)p when both were added simultaneously to the assay. This suggests that ATP does not interact with the same site as Gpp(NH)p. ATP gamma S, an analogue of ATP which irreversibly thiophosphorylates proteins, did not irreversibly support activation by isoproterenol. The effect of ATP in supporting isoproterenol stimulation is not, therefore, thought to be due to phosphorylation of a protein.

Adenosine Triphosphate↗

Comparison between isomyosin pattern and contractility of right ventricular myocytes isolated from rats with right cardiac hypertrophy.

The contractile properties of single rat cardiac cells isolated from normal and hypertrophied right ventricles have been investigated. These have been correlated with the isoenzyme composition of the whole ventricle. Right cardiac hypertrophy was induced by injecting rats with monocrotaline, an alkaloid which induces severe pulmonary hypertension. Ca2+ ATPase activity and myosin alpha-chain percentage were decreased in the hypertrophied right ventricle as compared with that of control rats. The contraction amplitude and speed of shortening of the isolated cells were measured using an inverted microscope, video camera, and edge detection device. Cells from the hypertrophied ventricle showed a significantly decreased contraction amplitude and speed of shortening in maximally activating concentrations of isoprenaline. A statistically significant correlation existed between myosin alpha-chain percentage and both contraction amplitude and speed of shortening in maximum isoprenaline. This was true when all cells studied were included, as well as within the hypertrophy group. A similar, although not always statistically significant, correlation was observed when cells were maximally activated with calcium. These results suggest that changes in isomyosin pattern that occur in cardiac hypertrophy produce alterations in contraction amplitude and speed of shortening which can be detected in single cells isolated from the hypertrophied ventricles. Isolated cells appear to give responses representative of the function of the whole heart.

Animals↗