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Biomedical subjects

G R Jones

Publications and source records attributed to G R Jones.

At least 19 recordsLinked to original sources

Construction of a stable dimer of Bacillus stearothermophilus lactate dehydrogenase.

A molecular graphics analysis of the features which prevent cytosolic malate dehydrogenase dimers from forming tetramers was evaluated by its success in predicting the synthesis of a version of the LDH framework which is a stable dimer. Surface residues responsible for malate dehydrogenases being dimers were revealed by superimposing the structures of two dimers of pig cytosolic malate dehydrogenase on one homologous tetramer of L-lactate dehydrogenase from Bacillus stearothermophilus. Four regions were identified as composing the P-axis dimer-dimer interface. Two regions of the dimer were surface loops that collided when built as a tetramer: a large loop (residues 203-207, KNOBI) and a small loop (residues 264-269, KNOBII), and these were candidates to explain the dimeric character of malate dehydrogenase. The analysis was tested by constructing a synthetic B. stearothermophilus lactate dehydrogenase (KNOBI) containing the large malate dehydrogenase loop (residues 203-207 being AYIKLQAKE, and extra four amino acids). The new construct was thermotolerant (90 degrees C) and enzymically active with kcat and KM (pyruvate) values similar to those of the wild-type enzyme. However, whereas the allosteric activator fructose 1,6-bisphosphate decreased KM 100 times for wild type, it had no influence on KNOBI. The molecular volumes of 1-120 microM concentrations of the construct were measured by time-resolved decay of tryptophan fluorescence anisotropy and by gel filtration. Both methods showed the molecular weight of wild type increased from dimer to tetramer with Kd about 20 microM dimer. KNOBI remained a dimer under these conditions.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Homeoviscous adaptation under pressure: the pressure dependence of membrane order in brain myelin membranes of deep-sea fish.

Steady-state and time-resolved anistropy of 1,6-diphenyl-1,3,5-hexatriene (DPH) fluorescence have been used to compare the hydrocarbon order of brain myelin membranes from a shallow water (plaice) and two deep-sea fish species (Coryphenoides rupestris and Coryphenoides armatus). At atmospheric pressure the deep sea fish displayed lower steady-state anisotropies than shallow water species although the pressure dependence of anisotropy was similar in all species. Time-resolved measurements allowed the separate determination of the rate of probe motion from the amplitude of that motion. Anisotropy decays were analysed in terms of two correlation times and a constant (r infinity). The r infinity and mean value of P2 order parameter for all species increased with pressure, the graphs for deep-sea species being translated to higher pressures relative to shallow-water species. The resulting pressure coefficients for C. armatus was distinctly less than for the two shallower species. These time-resolved studies show that the interspecific differences provide for similar order parameters in all three species when corrected to their respective habitat conditions of pressure and temperature. This indicates that myelin order is highly conserved despite the profound ordering effects of high hydrostatic pressure.

Adaptation, Physiological

Histology of ovaries of female rabbits immunized with deglycosylated zona pellucida macromolecules of pigs.

Female rabbits (n = 36, 6 per group) were immunized with: (i) solubilized isolated porcine zona pellucida (SIZP), which contains ZP1, 82 kDa; ZP3 alpha, 55 kDa; and ZP3 beta, 55 kDa; (ii) a purified preparation of ZP3 alpha and ZP3 beta (ZP3); (iii) purified endo-beta-galactosidase digested glycoproteins ZP3 alpha-(EBGD) and (iv) ZP3 beta-(EBGD) (each about 30% deglycosylated); (v) chemically deglycosylated core proteins ZP3 alpha-(DG) and (vi) ZP3 beta-DG (each greater than 92% deglycosylated). Rabbits injected with saline (n = 6) or Freund's adjuvant (n = 6) served as controls. Rabbits were bled weekly to monitor titres. Every six weeks two animals from each group (n = 16) were selected for unilateral oophorectomy followed by histological examination. Sections were scored for numbers of primary, secondary and tertiary follicles. Anti-ZP3 titres developed in all treatment groups and correlated with carbohydrate content (peak per cent [125I]-labelled ZP3 binding by radioimmunoassay: SIZP 71.9 +/- 1.2, ZP3 70.0 +/- 2.5, ZP3 alpha-EBGD 60.9 +/- 5.3, ZP3 beta-EBGD 56.4 +/- 5.0, ZP3 alpha-DG 56.4 +/- 4.0, ZP3 beta-DG 53.5 +/- 4.3) (means +/- SEM). Animals immunized with SIZP, ZP3 and ZP3 beta-EBGD showed a statistically significant reduction in the number of primary, secondary and tertiary follicles compared with controls (P less than 0.01, MANOVA), whereas animals immunized with ZP3 alpha-EBGD, ZP3 alpha-DG and ZP3 beta-DG did not (P greater than 0.05, MANOVA). These results demonstrate that immunization with purified ZP3 alpha macromolecules (ZP3 alpha-EBGD, ZP3 alpha-DG) or ZP3 beta-DG does not produce histopathological changes in ovaries. Such deglycosylated ZP macromolecules represent potential target antigens for immunocontraceptive development.

Animals

Cancer destruction in vivo through disrupted energy metabolism. Part I. The endogenous mechanism of self-destruction within the malignant cell, and the roles of endotoxin, certain hormones and drugs, and active oxygen in causing cellular injury and death.

Autoxidative cellular injury arises when an intact endogenous mechanism present in cells is triggered by a range of specific stimuli, including endotoxin, stress hormones, hydralazine, L-isoproterenol and certain phenothiazines. The overall changes involve oxygen activation, lipid peroxidation, and the generation of substances which disrupt mitochondrial energy production by uncoupling oxidative phosphorylation. Magnetic resonance spectroscopy has revealed that falls in high-energy phosphate are commonly seen following a variety of therapeutic procedures, including radiation and treatment with cytotoxic agents. Sometimes the energy status of a tumor improves in response to therapy; in these instances tumor regression is due to programmed cell death, termed apoptosis. In the first part of this review the roles played in the development of autoxidative cellular injury by oxygen and its active forms, an endogenous peroxidisable substrate, and an oxygenase are considered and discussed.

Animals

Cancer destruction in vivo through disrupted energy metabolism. Part II. Lipid peroxidation and cell death; drug resistance as a consequence of reversible cellular injury.

In the second part of this review of autoxidative cellular injury and death in tumor cells, the presence of saturated or polyunsaturated fatty acids, vitamin E, and free or esterified cholesterol in whole cells and organelles is discussed in the context of enhancing or attenuating lipid peroxidation. The disposition of unsaturation within polyunsaturated fatty acid molecules is critical for tumor promotion, but the situation appears ambivalent with regard to inflicting cellular injury. Increases in lipid peroxidation and phospholipase A2 activity following on from the administration of hormones or non-cytotoxic drugs are considered from the viewpoint of generating hydroperoxyfatty acids and lysophosphatides, both of which disrupt mitochondrial energy production by uncoupling oxidative phosphorylation. The metabolic fate of lysophosphatides is thought to be a crucial factor both in determining whether cancer cells survive or not, and in furnishing protection for surviving cells against subsequent attack. Both energy-dependent and energy-independent mechanisms for acylating lysophosphatides are reviewed. The emergence of an unstable form of drug resistance during the recovery phase is interpreted in terms of the chemical identity of the new acyl groups on the acylated lysophospholipid. Resistance to further free radical challenge can be conferred by the regeneration of phospholipids bearing saturated or monoenoic 2-substituents which are unable to undergo peroxidation.

Animals

Cancer destruction in vivo through disrupted energy metabolism. Part III. Spontaneous drug resistance, selectivity of antineoplastic action, and strategies for intensifying tumor injury.

In the concluding section of this review of cancer destruction by disruption of energy metabolism, the cellular mechanism for interfering with energy production is considered in terms of drug resistance arising independently of previous tumor injury. The occurrence of various degrees of damage to cancerous growths as a consequence of secondary shock is interpreted on the basis of elevated levels of stress hormones, including vasopressin, which have earlier been shown to interfere with energy metabolism in a murine sarcoma. Similarly, the indirect action of various antineoplastic procedures can be related to a role for the endocrine system, with particular reference to vasopressin and inappropriate anti-diuretic hormone secretion syndrome. Multiple drug resistance is also discussed, and the mode of action of the topoisomerase inhibitor doxorubicin is critically examined. The basis of selectivity of disruption of energy metabolism by substances such as hydralazine and L-isoproterenol is discussed from the viewpoint of altered activities of antioxidant enzymes in transformed cells, but these considerations alone are not thought to be sufficient to account for the highly specific nature of the antineoplastic action. Conversely, antioxidant enzymes, more especially those concerned with glutathione metabolism, probably play a major role in multiple drug resistance, although in this respect the case of autoxidative cellular injury awaits attention. Theoretical strategies for the intensification of tumor injury include the aim of prolonging the half-lives of lysophosphatides within damaged tissue. Whereas the clinical application of the principle of tumor destruction through selective disruption of energy metabolism is at present compromised for lack of information, the use of phenothiazines as antineoplastic agents is feasible, and awaits serious exploitation. The relative lack of incapacitating side-effects of phenothiazines should provide an attractive change for the clinical oncologist.

Animals

Physical fitness capacity and absenteeism of police officers.

Police officers (n = 514) were studied to determine the relationship between physical fitness capacity and annual absenteeism rate. Hierarchical regression analyses revealed that for officers aged 34 years and younger, only 5% of the variability in absenteeism could be accounted for by age, sex, and physical fitness variables. For officers 35 years old and older, 7% of the variability was explained by these variables, and a bicycle ergometer score was a significant predictor of absenteeism. Each individual test and an overall physical fitness score were classified into five levels. ANOVAs revealed no significant differences between overall fitness levels and absenteeism. However, men 35 and over who were most fit on the bicycle ergometer test had fewer absences, and women 34 and under who were thinnest had more absences. In conclusion, at least among police officers, the extent to which physical fitness capacity can predict absenteeism is low.

Absenteeism

Cancer therapy at the crossroads: which direction for the future?

Magnetic resonance spectroscopy has revealed that cell death in tumors undergoing therapy may follow either from auto-oxidative cellular injury (ACI) or from programmed cell death (apoptosis), depending on the particular form of treatment employed and on its intensity. This short review argues not only in favor of ACI as the preferred mode of cell death, but also for a better understanding of the relationship between the nature of the changes stressed cells undergo and patterns of drug resistance accompanying survival if therapy is to become more successful.

Animals

Preliminary crystallographic study of C-reactive protein from Limulus polyphemus.

Crystals of C-reactive protein from Limulus polyphemus have been grown both with and without calcium. The space group for the calcium-free crystals is I422 or I4(1)22, and the cell parameters are a = b = 173.33 (4) A, c = 98.81 (3) A. The crystals diffract to at least 2.8 A resolution and are suitable for detailed structural studies.

Animals

Post-mortem drug redistribution--a toxicological nightmare.

Detailed human case data is presented to illustrate the dramatic extent of the phenomenon of post-mortem drug redistribution. The data suggests that there is a post-mortem diffusion of drugs along a concentration gradient, from sites of high concentration in solid organs, into the blood with resultant artefactual elevation of drug levels in blood. Highest drug levels were found in central vessels such as pulmonary artery and vein, and lowest levels were found in peripheral vessels such as subclavian and femoral veins. In individual cases, in multiple blood samples obtained from ligated vessels, concentrations of doxepin and desmethyldoxepin ranged from 3.6 to 12.5 mg/l and 1.2 to 7.5 mg/l, respectively; amobartital, secobarbital and pentobarbital from 4.3 to 25.8 mg/l, 3.9 to 25.3 mg/l and 5.1 to 31.5 mg/l respectively; clomipramine and desmethylclomipramine from 4.0 to 21.5 mg/l and 1.7 to 8.1 mg/l, respectively and flurazepam 0.15 to 0.99 mg/l; imipramine and desipramine from 4.1 to 18.1 mg/l and 1.0 to 3.6 mg/l, respectively. We conclude that this poorly studied phenomenon creates major difficulties in interpretation and undermines the reference value of data bases where the site of origin of post-mortem blood samples is unknown.

Adult

The interactions of pyrenylmethyl tributylphosphonium bromide with single strand polynucleotides.

The binding of the water soluble derivative of pyrene, pyrenylmethyl tri-n-butylphosphonium bromide (PMTP), to single strand polynucleotides has been characterised by changes in the absorption spectra, fluorescence spectra, the fluorescence lifetime and the time-resolved fluorescence anisotropy of PMTP. For polyguanylic acid at low ionic strength, there are two modes of binding; external ionic binding and intercalation between the bases. The former results in PMTP excimer formation and the latter involves a charge-transfer complex between PMTP and guanine bases. Polyadenylic acid and polyinosinic acid show only external binding and poly[C] exhibits an interaction which is a combination of external binding and partial intercalation. Single strand DNA binds PMTP by intercalation and external binding at low ionic strength. In the presence of 0.2 M sodium chloride, only binding by intercalation between the bases occurs for poly[G]. Single strand DNA bound PMPT by partial intercalation, as well as full intercalation between the bases, but polyadenylic acid, polycytidylic acid and polyinosinic acid showed no significant binding in the presence of 0.2 M sodium chloride. The differences in the binding of PMTP are attributed to variations in the rigidity and form the structures of single strand polynucleotides adopt in solution. A full analysis of the binding isotherms has been made using methods based on Scatchard plots and the McGhee and von Hippel approach, which are critically compared.

DNA

Glucose tolerance during pregnancy in Asian women.

The present study was aimed at examining differences in gestational diabetes mellitus (GDM) between two ethnic populations (immigrant Asians and indigenous White Caucasians) residing in Leicester, U.K. The study was divided into two parts: to determine the prevalence of GDM and to determine the level at which glycaemia may impose a risk to the mother and the foetus. Of a total of 12,005 pregnancies (4561 Asian and 7444 White Caucasian), over a 3-year period, 314 (6.8%) Asian and 504 (6.7%) White Caucasian were given a 75-g oral glucose tolerance test (OGTT) at 28-32 weeks for indications of 'large for date' pregnancies, hydramnios, glycosuria, a history of previous abortions, stillbirths, congenital abnormalities or glucose intolerance, and family history of diabetes. Abnormal glucose tolerance (AGT) was taken as a 2-h venous plasma glucose greater than or equal to 7.8 mmol/l which reverted to normal when formally tested during the puerperium (WHO criteria, 1985). AGT was found in 1.38% Asian and 0.87% White Caucasian pregnancies (P less than 0.01). This was further divided into impaired glucose tolerance (IGT) (2-h value 7.8-11.1 mmol/l) and gestational diabetes mellitus (GDM) (2-h value greater than or equal to 11.1 mmol/l). IGT was found in 1.2% Asian and 0.84% White Caucasian pregnancies (P less than 0.01), and GDM in 0.18% and 0.02% respectively (P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

A 220 kDa polypeptide, immunolocalized to epithelial tight junctions, is associated with brain clathrin preparations.

Antibodies were raised in rabbits to highly purified preparations of bovine brain clathrin. The serum stained by immunofluorescence rat liver sections at tight junctions in a pattern that was identical to that previously reported (B. R. Stevenson et al.: J. Cell Biol. 103, 755-766 (1986] in which a monoclonal antibody specific to a 220 kDa (ZO-1) liver tight junction component was used. The serum also stained regions of the cell surface corresponding to the positions of intercellular junctions in confluent MDCK and HepG-2 cell cultures. Analysis of brain clathrin preparations resolved by polyacrylamide gel electrophoresis by immunoblotting with the serum indicated reaction with clathrin heavy and light chains as well as towards a 220 kDa polypeptide that was a minor component. Affinity purification of the serum provided antibodies directed mainly to clathrin light chains and these antibodies, as well as an independent antiserum to clathrin heavy chains, immunofluorescently stained liver tissue and cells in a manner typical of coated membranes/vesicles. These results suggested, by difference, that antibodies to a 220 kDa polypeptide, a minor constituent in brain clathrin preparations, were responsible for staining intercellular tight junctions in epithelia. The 220 kDa polypeptide present in brain clathrin preparations was demonstrated to be immunologically distinct from liver myosin heavy chain as well as erythrocyte and brain ankyrin. Comparison by two-dimensional mapping of the 220 kDa in brain clathrin with the clathrin heavy chain (180 kDa) polypeptide showed they were different proteins, but the 220 kDa polypeptide present in rat liver tight junctions was highly similar to the 220 kDa present in bovine brain clathrin preparations.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals