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Biomedical subjects

S E Harding

Publications and source records attributed to S E Harding.

At least 145 records · Page 8Linked to original sources

Self-interaction of dynein from Tetrahymena cilia.

The molecular mass (Mr) and enzymic activity of the larger dynein species from Tetrahymena thermophila has been studied in the high (600 mM) to low (40 mM) ionic strength range. The apparent Mr is found to vary with both ionic strength (by sedimentation velocity and quasi elastic light scattering analysis) and with protein concentration at low ionic strength (by sedimentation equilibrium analysis). These data indicate a strong self-interaction, resulting in dimer formation under low salt conditions. There is no evidence for the formation of species of higher than dimeric mass. A molecular mass for the dynein monomer of 1.64 x 10(6) daltons has been determined, a value rather lower than previous published estimates. The ATPase activity of dynein increases with increasing ionic strength. The possible relationship between this effect and the self-association phenomenon is discussed.

Adenosine Triphosphatases↗

Adriamycin cardiomyopathy in the rabbit: alterations in contractile proteins and myocyte function.

STUDY OBJECTIVE: The aim was to determine the mechanism of the cardiotoxic effect of adriamycin, particularly at the level of the function of the cardiac myocyte. DESIGN: After chronic exposure to adriamycin, the contractile responses of single isolated cardiac myocytes to increasing calcium and isoprenaline were measured, as well as oxygen consumption of myocyte suspensions. Creatine kinase and myosin isoforms were investigated in whole ventricle. The degree of fibrosis of the ventricle was quantified using histological methods. SUBJECTS: 24 white male New Zealand rabbits were treated with adriamycin (1 mg.kg-1) twice a week for eight weeks, and allowed to recover for two weeks. There were 29 untreated controls. Six further rabbits were implanted with mini osmotic pumps delivering a constant infusion of isoprenaline for one week; five controls had pumps containing saline. MEASUREMENTS AND MAIN RESULTS: Cardiac myocytes were enzymatically isolated, and their contraction amplitude and velocity monitored. Cells isolated from adriamycin treated rabbits had a lower contraction amplitude than those from controls when maximally activated with calcium, at 11.1(0.9)% shortening (n = 11) v 13.6(0.5)% (n = 14), p less than 0.02; or with isoprenaline, at 11.6(0.6)% shortening v 13.1(0.4)%, p less than 0.05. Contraction, but not relaxation, velocity in maximum calcium or isoprenaline was also significantly lower in cells from adriamycin treated animals. Oxygen consumption per 10(6) cells was lower in preparations from treated animals (p less than 0.05), but the relative effects of glucose, acetate, 2,4-DNP, and cyanide were unaffected. There was no significant change in creatine kinase or myosin isozyme composition or in amounts of fibrosis following adriamycin treatment. However, the quantity of myosin per g wet weight of tissue was significantly reduced from 8.04(0.45) mg.g-1 wet tissue, n = 4, in controls to 5.76(1.55) mg.g-1, n = 6, in adriamycin treated animals (p less than 0.001). The EC50 for isoprenaline was unchanged in cells from treated animals. Together with the unaltered maximum isoprenaline/calcium ratio, this implies that there is no change in beta adrenoceptor sensitivity following adriamycin treatment. To confirm that it was possible to desensitise rabbit cardiac beta adrenoceptors, and to detect changes in sensitivity on single cells, rabbits were treated with isoprenaline for one week. Such treatment decreased the maximum isoprenaline/calcium contraction amplitude ratio from 0.97(0.15), n = 5, to 0.47(0.12), n = 6 (p less than 0.05), and increased the EC50 from 7.9 to 224 nM (p less than 0.05). CONCLUSIONS: Single cardiac myocytes isolated from the hearts of adriamycin treated rabbits show a decrease in contraction amplitude, velocity, and oxygen consumption compared to controls. The decreased contractility of individual myocytes may relate to their low myosin content, and could contribute to the reduced cardiac output produced by adriamycin treatment. Heart failure induced by adriamycin in the rabbit is not accompanied by beta adrenoceptor desensitisation.

Animals↗

The anti-adrenergic effect of adenosine and its blockade by pertussis toxin: a comparative study in myocytes isolated from guinea-pig, rat and failing human hearts.

1. In intact ventricular preparation, adenosine has been shown to reduce the beta-adrenoceptor-induced increase in contraction (the anti-adrenergic effect). In the present study we have investigated this effect of adenosine on isolated ventricular myocytes from failing human heart and normal guinea-pig and rat heart. 2. Adenosine in the absence of beta-adrenoceptor-mediated stimulation had no effect on contraction in human and guinea-pig myocytes but produced a variable effect in rat myocytes. 3. 8-Cyclopentyl 1,3-dipropylxanthine (CPX), a selective A1-receptor antagonist, antagonised the anti-adrenergic effect of adenosine in guinea-pig myocytes. 4. The anti-adrenergic effect of adenosine was greater in guinea-pig than rat myocytes and even more pronounced in cells isolated from failing human heart. 5. Pertussis toxin-pretreatment at 35 degrees C of guinea-pig and human myocytes abolished the anti-adrenergic effect of adenosine. Longer exposure to higher concentrations of pertussis toxin was required for complete abolition in human compared to guinea-pig cells. 6. These results support the suggestion that the adenosine receptors mediating the anti-adrenergic effect of adenosine are of the A1 subtype and are coupled to the inhibitory guanine nucleotide binding protein, Gi/Go. 7. Pertussis toxin pretreatment increased the sensitivity of guinea-pig myocytes to isoprenaline in the absence of adenosine; the EC50 value was decreased by a factor of 10. This suggests that Gi may exert a tonic inhibitory effect on the beta-adrenoceptor/adenylate cyclase interaction in normal myocardium.

Adenosine↗

Reversible elimination of myofibrillar Ca2+ sensitivity by diamide and other sulfhydryl reagents: comparison with reversible contracture produced in intact cells.

Cardiac contractile activity is usually controlled by intracellular Ca2+, but it can also be modified by oxidizing agents. Incubation of guinea pig heart myofibrils with diamide (3 mM, 1 h) increased basal (no Ca2+) ATPase activity by 580% and abolished Ca2+ dependence. The effect was proportional to diamide concentration (0.01-1 mM) and duration of preincubation (up to 2 h). Dithiothreitol (5 mM, 1 h) reversed most of the basal ATPase activation and restored Ca2+ sensitivity. Other sulfhydryl reagents produced a similar effect but also produced inhibition of total ATPase. In intact cell preparations, diamide produced a slow tonic contraction, consistent with myofibril activation. In the perfused rat heart, 1 mM diamide slowly increased diastolic ventricular pressure; this increase was partially reversed by dithioerythritol. In isolated rat heart myocytes, 1 mM diamide produced a slow tonic contraction, increased contractility in response to stimulation. Cardiocytes superfused for 1 h with buffer containing EGTA to deplete Ca2+ did not contract in response to stimulation but showed a slow tonic contraction with diamide. This contraction could be slowly and only partially reversed by dithioerythritol. Response to stimulation was restored by addition of Ca2+. The results show that diamide can produce contraction in viable cells. This contraction does not require extracellular Ca2+ and is unlikely to involve intracellular Ca2+. The direct activation of myofibrillar ATPase may contribute to the increased myocardial stiffness seen in ischemia and to ischemic contracture.

Adenosine Triphosphatases↗

Reduced beta-agonist sensitivity in single atrial cells from failing human hearts.

Human myocytes were isolated from right atrial appendage, and contractile responses to inotropic agents were studied. Responses to inotropic agents of cells isolated from patients with mild heart disease [New York Heart Association (NYHA) classes I and II] were compared with those of myocytes from rabbit atria. Maximally effective concentrations of calcium, forskolin, and isoproterenol increased contraction amplitude to a similar extent (11.9, 11.5, and 11.3% change in cell length, respectively), but histamine produced a smaller effect (7.1%). The maximum responses of rabbit atrial cells to calcium (18.5%) and isoproterenol (15.0%) were significantly greater than human. In human cells, the velocity of contraction or relaxation was accelerated more by isoproterenol (P less than 0.05) or forskolin (P less than 0.01) than by high calcium. Only relaxation velocity was increased by isoproterenol in rabbit cells (P less than 0.05). Rabbit myocytes contracted and relaxed 10-30% faster than human (P less than 0.05). Cells from the atria of patients with New York Heart Association (NYHA) heart failure class III or IV were less responsive to isoproterenol than those from class I or II (P less than 0.01). Omitting data from patients who had been taking calcium-channel blockers or beta-adrenoceptor agonist or antagonist drugs did not affect the conclusions. Analysis of variance revealed a significantly greater between-patient than within-patient variation (P less than 0.001), indicating that cells from the same patient have a tendency to respond in a similar way. Responses to high calcium did not differ among NYHA classes. The effect of forskolin was not reduced in NYHA class III, although there was a decreased response in cells from two patients in NYHA class IV.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Agonists↗

Functional and autoradiographic evidence for endothelin 1 receptors on human and rat cardiac myocytes. Comparison with single smooth muscle cells.

This study aimed to determine whether receptors for endothelin were present on the cardiac myocyte as well as on vascular smooth muscle cells. Low- and high-resolution autoradiography was performed using 125I-endothelin 1 on intact rat myocardium and samples of human ventricle obtained from explanted hearts at the time of transplant. In addition to specific binding to the smooth muscle of the blood vessel lumen, there was considerable binding associated with cardiac myocytes. To discover whether there was any functional correlate for this binding, muscle cells were isolated enzymatically from human and rat ventricle and from rat femoral artery, and their contractile characteristics were studied. Single cardiac cells were superfused with physiological saline at 32 degrees C, and their length change was displayed continuously on a chart recorder. Endothelin 1 had a pronounced effect on shortening in both rat and human myocytes. The contraction amplitude was approximately doubled in both cases, from 4.1 +/- 0.8% cell length to 8.1 +/- 1.3% for rat (mean +/- SEM, n = 9, p less than 0.001), and from 2.1 +/- 0.5% to 4.0 +/- 0.5% in human (n = 10, p less than 0.001). In rat, the magnitude of the effect was comparable to that of the alpha-adrenoceptor agonist phenylephrine. The maximum contraction amplitude of the human cells, produced by raising extracellular calcium to greater than 10 mM, was 11.4 +/- 1.1% cell length (n = 9), significantly greater than that produced by endothelin (p less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Species dependence of contraction velocity in single isolated cardiac myocytes.

Single myocytes were isolated from mouse, rat, guinea-pig, rabbit, sheep and human ventricle, and the amplitude and velocity of their unloaded contraction measured using a video camera and a system for measuring their length. Measurements were done at 32 degrees C in solutions containing either low calcium (1-1.3mM) or a concentration of calcium (usually 8mM) that produced a maximum amplitude of contraction. Unlike the cells of the majority of species, human cells could be successfully isolated only by using protease in addition to collagenase. To determine the effect of protease, guinea-pig cells were prepared with or without this enzyme. There was no significant difference in the characteristics of the cells prepared by either method. There was little species variation in the length of the cells or the length of resting sarcomeres. However, there were considerable species differences in the velocity of shortening and of relaxation. Myocytes from larger animals tended to contract and relax more slowly than those from smaller animals, although there was little systematic variation in the absolute amplitude of contraction. There was a significant correlation between the normalised contraction velocity of single cells and the average heart rate reported for that species. The trend for decreased relaxation velocity with lower heart rate did not reach statistical significance. Right ventricular cells from rat heart contracted more rapidly than those from the left ventricle, a finding similar to that reported for intact muscle strips. We conclude that species and left/right differences observed in the contraction velocity of whole muscle can be detected at the level of the single myocyte.

Animals↗

Characterization of two proteolytically derived soluble polypeptides from the neurofilament triplet components NFM and NFH.

We have purified to homogeneity the regions derived by chymotryptic digestion of the ox neurofilament polypeptides NFH and NFM; the regions, called M1 and M2, are thought to form part of the projecting sidearms of mammalian neurofilaments [Chin, Eagles & Maggs (1983) Biochem. J. 215, 239-252]. They were isolated and purified under non-denaturing conditions and showed no tendency to interact with each other in solution. The Mr values obtained by sedimentation are approx. 61,000 for M1 and 42,000 for M2, considerably lower than the values obtained by SDS/polyacrylamide-gel electrophoresis. These Mr values were unchanged in the presence of 6 M-guanidine hydrochloride, suggesting that the regions exist as monomers in solution. Both M1 and M2 are highly phosphorylated, and there is only a slight change in the sedimentation value upon dephosphorylation. Dephosphorylation of M1 with alkaline phosphatase was more than 90% efficient but was never absolute. Dephosphorylation of M2 was complete. Both M1 and M2 bind Ca2+; in the case of M1, this binding is phosphorylation-dependent. M1 also binds cytochrome c, and dephosphorylation affects binding. In similar conditions, neurofilaments bind at least twice their own mass of cytochrome c, owing to their opposite net charges. No interactions were observed between native or dephosphorylated M1 and M2, and intact neurofilaments under a wide variety of conditions. These results are discussed in terms of the possible roles that neurofilament sidearms might play and throw doubt upon their supposed function of rigidly cross-linking neurofilaments together within the axoplasm of neurons.

Animals↗

Dynamic light-scattering studies on the effect of heat and disinfectants on spores of Bacillus cereus.

The relative stability of spores of Bacillus cereus grown at three different temperatures was examined by using quasi-elastic light scattering (q.l.s.) in conjunction with turbidity and scanning electron microscopy (s.e.m.). Cultures grown at 20, 30 and 40 degrees C (BC20, BC30 and BC40 respectively) were compared in terms of (i) their effective hydrodynamic radius, rH, as determined from q.l.s. and (ii) their gross morphology, as determined from s.e.m. The effects of autoclaving at 121.1 degrees C on both these properties was also examined. We observed (1) that cultures BC20 and BC30 appeared to have similar values for rH, whereas that of BC40 appeared some 50% higher, and (2) BC40 had a correspondingly much lower heat resistance (its structural integrity was lost after about 20 min autoclaving, whereas that of BC20 and BC30 was retained even after 80 min autoclaving). These data were in good agreement with independent measurements of heat-resistance coefficients. Changes in the hydrodynamic radius, polydispersity (both using q.l.s.) and turbidity were monitored with time on addition of the disinfectants sodium hypochlorite and peracetic acid; again BC40 appeared to have a lower resistance.

Bacillus cereus↗

Subunit interactions in Propionibacterium shermanii methylmalonyl-CoA mutase studied by analytical ultracentrifugation.

The effect of increasing ionic strength on adenosylcobalamin-dependent methylmalonyl-CoA mutase from Propionibacterium shermanii was studied by using analytical ultracentrifugation. Both sedimentation-velocity and low-speed sedimentation-equilibration measurements show that the enzyme dissociates progressively into its two dissimilar subunits with increasing ionic strength. Equilibrium between the alpha beta-dimer and the separated subunits is rapidly established under these conditions. Dissociation is accompanied by loss of enzymic activity, but the position of the equilibrium is unaffected by the presence of either substrate or adenosylcobalamin cofactor.

Acyl Coenzyme A↗

Morphological and functional characteristics of myocytes isolated from human left ventricular aneurysms.

Isolated single myocytes were prepared from myocardium of developing ventricular aneurysms and from myocardium within the scar of chronic ventricular aneurysms. The morphology and function of the individual cells were compared. The cells from developing aneurysms were rod-shaped, with a distinct sarcomeric structure, but did not contract even in the presence of high calcium concentrations. The sarcomere length was significantly higher than that of cells from chronic aneurysms and approached the theoretical point at which no contraction can occur. Cells from chronic aneurysms were either rod-shaped and contractile, or rounded due to hypercontracture of the myofilaments. Electron microscopy of cells from developing aneurysms confirmed the presence of elongated sarcomeres, a loss of the actin-myosin interdigitation, and damage to the contractile proteins which was particularly evident in the thin filaments. Cells with similar characteristics have also been isolated from a ruptured, ischaemic papillary muscle. These changes, which are due either to ischaemia or to overstretching of cells, may account for the weakness of the wall of developing aneurysms and be a cause of rupture or enlargement.

Adult↗

Contractile abnormalities of single right ventricular myocytes isolated from rats with right ventricular hypertrophy.

The contractile properties of single rat cardiac myocytes isolated from normal and hypertrophied right ventricles have been investigated and then correlated with the isoenzyme pattern of ventricular myosin. The isoprenaline-stimulated contraction and the beta-adrenoceptor sensitivity were also investigated. Right ventricle hypertrophy was obtained by injecting monocrotaline, an alkaloid which induces severe pulmonary hypertension. The contractile parameters, namely contraction amplitude and speed of shortening, were obtained by means of an inverted microscope TV-system and edge-detection-device. Hypertrophied cells showed a significantly decreased speed of shortening and contraction amplitude when contraction was induced by maximum calcium and maximum isoprenaline. A statistically significant correlation existed between myosin alpha-chain percentage and both contraction parameters. Isoprenaline sensitivity expressed in terms of ED50, p kappa a and Hill coefficient were similar in the control and monocrotaline treated animals. Moreover no correlation between the degree of ventricular hypertrophy and ED50 existed. These results suggest that, in this animal model, the depressed contractile function which characterizes the hypertrophic myocardium depends on changes in isomyosin pattern while beta-adrenoceptor desensitization does not occur.

Animals↗

Isoproterenol sensitivity of isolated cardiac myocytes from rats with monocrotaline-induced right-sided hypertrophy and heart failure.

Rats treated with the alkaloid monocrotaline developed right ventricular hypertrophy with a left:right ventricle weight ratio of 1.35 +/- 0.10 (mean +/- s.e.m., n = 25) compared with 3.83 +/- 0.40 (n = 14) in diet-matched controls (P less than 0.001). Urine volume and sodium content were reduced and body water increased consistent with heart failure. In 10 out of 26 treated rats pleural, pericardial or peritoneal effusions were present. Urine norepinephrine content was significantly raised (P less than 0.02) but epinephrine was unchanged. Plasma norepinephrine levels were raised though not significantly. Myocytes isolated from the right ventricle had a reduced myosin Ca2+-activated ATPase (P less than 0.05) activity and a shift towards slower V2 and V3 myosin isoforms. There was no decrease in maximum contraction amplitude with calcium or isoproterenol in either left or right ventricular cells of treated rats. Right ventricular cells from treated rats showed a reduced rate of contraction in maximum isoproterenol (P less than 0.05) and a significant rightward shift in PD2 (P less than 0.05) representing a two-fold increase in EC50 for isoproterenol compared with right ventricular cells from control animals. There was no shift in EC50 for isoproterenol in left ventricle cells. In parallel experiments, myocytes isolated from both ventricles of rats treated with isoproterenol for one week showed a rightward shift of more than 50-fold in the isoproterenol concentration-response curve and a depressed response to maximum isoproterenol. In the rat monocrotaline model of right-sided cardiac hypertrophy and failure, changes in sensitivity to beta-adrenoceptor agonists are slight, and present only in the right ventricle. The lack of change in the left ventricle seems to suggest that this functional desensitisation is not a consequence of raised circulating catecholamines.

Animals↗