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T Meyer

Publications and source records attributed to T Meyer.

At least 343 records · Page 19Linked to original sources

Localized calcium spikes and propagating calcium waves.

Ca2+ signals control or modulate diverse cellular processes such as cell growth, muscle contraction, hormone secretion, and neuronal plasticity. Elevations in intracellular Ca2+ concentrations can be highly localized to micron and submicron domains or propagated as intra- and intercellular waves over distances as large as 1 mm. Localized, subcellular Ca2+ spikes are thought to selectively activate effector systems such as Ca2+ activated chloride currents in pancreatic acinar cells, neurotransmitter release in synaptic nerve terminals, and morphological changes in neural growth cones. In contrast, long-ranged Ca2+ waves synchronize the activities of different cytoplasmic regions of a single cell, such as cortical granule exocytosis after egg fertilization or coordinate the activities of many cells, such as ciliary beating in pulmonary epithelium. The purpose of this review is to delineate the role of Ca2+ in the generation of localized, subcellular Ca2+ spikes and long-ranged intracellular and intercellular Ca2+ waves.

Animals↗

Physical training improves skeletal muscle metabolism in patients with chronic heart failure.

OBJECTIVES: This study investigated the effects of physical training on skeletal muscle metabolism in patients with chronic heart failure. BACKGROUND: Skeletal muscle metabolic abnormalities in patients with chronic heart failure have been associated with exercise intolerance. Muscle deconditioning is a possible mechanism for the intrinsic skeletal muscle metabolic changes seen in chronic heart failure. METHODS: We used phosphorus-31 nuclear magnetic resonance spectroscopy to study muscle metabolism during exercise in 12 patients with stable ischemic chronic heart failure undergoing 8 weeks of home-based bicycle exercise training in a randomized crossover controlled trial. Changes in muscle pH and concentrations of phosphocreatine and adenosine diphosphate (ADP) were measured in phosphorus-31 spectra of calf muscle obtained at rest, throughout incremental work load plantar flexion until exhaustion and during recovery from exercise. Results were compared with those in 15 age-matched control subjects who performed a single study only. RESULTS: Before training, phosphocreatine depletion, muscle acidification and the increase in ADP during the 1st 4 min of plantar flexion exercise were all increased (p < 0.04) compared with values in control subjects. Training produced an increase (p < 0.002) in incremental plantar flexion exercise tolerance. After training, phosphocreatine depletion and the increase in ADP during exercise were reduced significantly (p < 0.003) at all matched submaximal work loads and at peak exercise, although there was no significant change in the response of muscle pH to exercise. After training, changes in ADP were not significantly different from those in control subjects, although phosphocreatine depletion was still greater (p < 0.05) in trained patients than in control subjects. The phosphocreatine recovery half-time was significantly (p < 0.05) shorter after training, although there was no significant change in the half-time of adenosine diphosphate recovery. In untrained subjects, the initial rate of phosphocreatine resynthesis after exercise (a measure of the rate of oxidative adenosine triphosphate [ATP] synthesis) and the inferred maximal rate of mitochondrial ATP synthesis were reduced compared with rates in control subjects (p < 0.003) and both were significantly increased (p < 0.05) by training, so that they were not significantly different from values in control subjects. CONCLUSIONS: The reduction in phosphocreatine depletion and in the increase in ADP during exercise, and the enhanced rate of phosphocreatine resynthesis in recovery (which is independent of muscle mass) indicate that a substantial correction of the impaired oxidative capacity of skeletal muscle in chronic heart failure can be achieved by exercise training.

Adenosine Diphosphate↗

Glomerular permeability barrier in the rat. Functional assessment by in vitro methods.

The formation of glomerular ultrafiltrate is dependent on the prevailing hemodynamic forces within the glomerular microcirculation and the intrinsic properties of the filtration barrier. However, direct assessment of the permeability barrier is difficult with most available techniques. We used confocal microscopy to image 1-micron thick optical cross-sections of isolated intact glomeruli and glomeruli denuded of cells and quantitated dextran (70,000 mol wt) diffusion from the capillary lumen. Dextran permeance was 11 times greater for the acellular filtration barrier than the intact peripheral capillary. Consideration of the basement membrane and cells as series resistors demonstrated that cells of the filtration barrier contribute 90% of the total resistance to macromolecular permeance. Using a different approach, dextran sieving coefficients for acellular glomeruli consolidated as a multilayer sheet in a filtration cell were similar to those for intact glomeruli in vivo at radii 30-36 A and approximately 50 times greater at a dextran radius of 60 A. The presence of cells significantly reduced hydraulic permeability determined on consolidated intact or acellular glomeruli in an ultrafiltration cell with 50 mmHg applied pressure. The glomerular basement membrane does restrict macromolecular permeability but cells are important determinants of the overall macromolecular and hydraulic permeability of the glomerulus.

Animals↗

Intracellular calcium regulates insulin-like growth factor-I messenger ribonucleic acid levels.

Insulin-like growth factor-I (IGF-I) is involved in repair and regeneration in tissues in which non-GH-mediated regulation of its production has been shown to be important. We have investigated the effects of a second messenger signaling pathway, intracellular calcium, on IGF-I mRNA levels in cultured rat dermal fibroblasts using a RNase protection assay. Intracellular calcium concentrations ([Ca2+]i) were increased using either the calcium ionophore A23187 or thapsigargin. The ability of these agents to increase [Ca2+]i was confirmed by spectrofluorimetry, using fluo-3 as the Ca2+ indicator. Treatment of cells in serum-free medium and 0.25% BSA [Minimum Essential Medium (MEM) + BSA] with 500 nM A23187 or 1 micron thapsigargin decreased IGF-I mRNA levels in a time-responsive manner over 4-8 h. A23187 and thapsigargin also decreased IGF-I mRNA levels to 36% and 47% of control levels, respectively, in a dose-responsive fashion. Basic fibroblast growth factor mRNA levels, which were simultaneously determined, were either unchanged or increased in cells treated with thapsigargin or A23187. Consistent with the change in IGF-I mRNA levels, immunoreactive IGF-I levels in medium conditioned for 48 h by A23187 or thapsigargin decreased to 25% and 14%, respectively, of control levels in cells maintained in MEM + BSA. To determine the role of protein synthesis in the effects of A23187 and thapsigargin, cells were treated with these agents in the presence or absence of cycloheximide. Cycloheximide had no effect on the decrease in IGF-I mRNA levels mediated by thapsigargin, but significantly attenuated the response to A23187. Given these differences in the role of protein synthesis in and the time course of the effects of A23187 and thapsigargin on IGF-I mRNA levels, additivity experiments were performed. Treatment of cells with the combination of A23187 and thapsigargin resulted in IGF-I mRNA levels that were approximately 70% of the levels present in cells treated with either agent alone. These data are consistent with a small additive effect, but suggest that the majority of the effect of A23187 and thapsigargin occurs via the same final pathway.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

A modified isometric test to evaluate blood pressure control with once-daily slow-release verapamil.

Blood pressure at rest is not predictive of round-the-clock values. Blood pressure should therefore be measured during effort to evaluate hypertension and its response to treatment. The effect of sustained-release verapamil (240 mg taken once a day) on blood pressure at rest and during isometric effort was therefore investigated. Overall, verapamil reduced blood pressure significantly in 41 of 45 hypertensive patients: the mean systolic blood pressure at rest (+/- SD) fell from 151 +/- 35 mmHg to 137 +/- 13 mmHg (P < 0.001) and the diastolic blood pressure from 97 +/- 21 mmHg to 83 +/- 7 mmHg (P < 0.001), while the systolic blood pressure during isometric effort fell from 186 +/- 23 mmHg to 156 +/- 13 mmHg (P < 0.001) and the diastolic blood pressure from 118 +/- 14 mmHg to 95 +/- 8 mmHg (P < 0.001). The simple, inexpensive handgrip method described is cost-effective and strongly recommended as an integral part of the evaluation of hypertensive patients. The combination of a drug to which compliance is good and a simple method of blood pressure evaluation should result in improved effectiveness of treatment in the long term.

Adult↗

Range of messenger action of calcium ion and inositol 1,4,5-trisphosphate.

The range of messenger action of a point source of Ca2+ or inositol 1,4,5-trisphosphate (IP3) was determined from measurements of their diffusion coefficients in a cytosolic extract from Xenopus laevis oocytes. The diffusion coefficient (D) of [3H]IP3 injected into an extract was 283 microns 2/s. D for Ca2+ increased from 13 to 65 microns 2/s when the free calcium concentration was raised from about 90 nM to 1 microM. The slow diffusion of Ca2+ in the physiologic concentration range results from its binding to slowly mobile or immobile buffers. The calculated effective ranges of free Ca2+ before it is buffered, buffered Ca2+, and IP3 determined from their diffusion coefficients and lifetimes were 0.1 micron, 5 microns, and 24 microns, respectively. Thus, for a transient point source of messenger in cells smaller than 20 microns, IP3 is a global messenger, whereas Ca2+ acts in restricted domains.

Animals↗

Benzopyranones and benzothiopyranones: a class of tyrosine protein kinase inhibitors with selectivity for the v-abl kinase.

Abelson murine leukemia virus is an acutely transforming replication-defective virus which encodes a transforming protein with tyrosine-specific protein kinase activity. A variety of benzopyranone and benzothiopyranone derivatives have been identified which selectively inhibit the v-abl tyrosine protein kinase with 50% inhibitory concentrations ranging from 1 to 30 microM. The most active derivative inhibited v-abl with a Ki value of 0.9 microM. Active derivatives showed selectivity for the v-abl tyrosine protein kinase relative to the epidermal growth factor receptor tyrosine protein kinase (50% inhibitory concentration greater than 100 microM). Protein kinase C and protein kinase A, two members of the serine/threonine protein kinase family, were not inhibited by benzopyranones or benzothiopyranones (50% inhibitory concentration greater than 100 microM). Kinetically, a representative derivative (compound 2) showed competitivity with respect to ATP and noncompetitive behavior with respect to the exogenous peptide substrate. Autophosphorylation of p120v-abl and recombinant p70v-abl tyrosine protein kinases were also inhibited by benzopyranones and benzothiopyranones in vitro. When tested in Abelson murine leukemia virus-transformed BALB/c cell, active benzopyranone and benzothiopyranone derivatives inhibited tyrosine phosphorylation of cellular proteins by the v-abl tyrosine protein kinase.

Animals↗

Calmodulin trapping by calcium-calmodulin-dependent protein kinase.

Multifunctional calcium-calmodulin-dependent protein kinase (CaM kinase) transduces transient elevations in intracellular calcium into changes in the phosphorylation state and activity of target proteins. By fluorescence emission anisotropy, the affinity of CaM kinase for dansylated calmodulin was measured and found to increase 1000 times after autophosphorylation of the threonine at position 286 of the protein. Autophosphorylation markedly slowed the release of bound calcium-calmodulin; the release time increased from less than a second to several hundred seconds. In essence, calmodulin is trapped by autophosphorylation. The shift in affinity does not occur in a site-directed mutant in which threonine at position 286 has been replaced by a non-phosphorylatable amino acid. These experiments demonstrate the existence of a new state in which calmodulin is bound to CaM kinase even though the concentration of calcium is basal. Calmodulin trapping provides for molecular potentiation of calcium transients and may enable detection of their frequency.

Amino Acid Sequence↗

Association of the beta isoform of protein kinase C with vimentin filaments.

Protein kinase C (PKC) isoforms are key mediators in hormone, growth factor, and neurotransmitter triggered pathways of cell activation (Nishizuka: Science 233:305-312, 1986; Nature 334:661-665, 1988). Stimulation of kinase activity by diacylglycerol and calcium often leads to translocation of PKC from the cytosol to a particulate fraction (Kraft and Anderson: Nature 301:621-623, 1983). The beta isoform of PKC is translocated and degraded much more rapidly than the alpha isoform in phorbolester-stimulated rat basophilic leukemia (RBL) cells (Huang et al.: J. Biol. Chem. 264:4238-4243, 1989). We report here immunofluorescence evidence that the distributions of PKC alpha and beta are strikingly different in antigen-activated RBL cells. PKC beta associates with perinuclear filaments and filaments that extend from the perinuclear area to the cell periphery whereas PKC alpha concentrates in regions of the cell periphery. This distribution of PKC beta is distinctly different from that of actin filaments and microtubules as determined by phalloidin staining and by anti-tubulin antibody labeling. In contrast, the staining patterns obtained with antibodies to PKC beta and to the intermediate filament protein vimentin are almost identical, indicating that PKC beta associates with vimentin filaments. These bundles of 100 A filaments may provide docking sites for interactions of PKC beta with its substrates and thus confer specificity to the actions of this isoform.

Animals↗

Expression and partial characterization of rat protein kinase C-delta and protein kinase C-zeta in insect cells using recombinant baculovirus.

Expression of rat protein kinase C-delta (PKC-delta) and PKC-zeta in insect cells using recombinant baculovirus resulted in the production of proteins with a molecular size of approximately 76 kD and 78 kD, respectively, as determined by immunoblotting with subtype-specific antisera. Although the PKC-zeta cDNA encoded for 592 amino acids, a 76 kD protein was also generated by in vitro transcription/translation. Extracts of cells expressing PKC-delta were able to bind phorbol ester to levels comparable to extracts of cells expressing PKC-alpha. No phorbol ester binding was, however, detected in insect cell extracts expressing PKC-zeta. However, similar levels of protein kinase activity were detected in lysates of cells expressing PKC-delta or PKC-zeta when protamine sulfate was used as exogenous substrate. Compared to protamine sulfate, both, myelin basic protein (MBP) or histone, were poor substrates for PKC-delta and PKC-zeta. In contrast to PKC-zeta, the PKC-delta enzyme activity phosphorylated MBP or histone in a phosphatidylserine-(PS)/diacylglycerol(DG)-dependent manner, albeit not to the same extent as PKC-alpha. Lack of stimulation of the enzyme activity of PKC-zeta by PS/DG, was confirmed by endogenous phosphorylation of insect cell proteins by PKC-zeta, whereas several insect cell proteins were phosphorylated by PKC-delta in a PS/DG-dependent manner, including a protein of 78 kD. Our data demonstrate that the 76 kD PKC-zeta, in contrast to PKC-delta, is unable to bind phorbol esters and displays a protein kinase activity that is independent of PS or PS/DG. In addition, staurosporine was about 2-4 order of magnitudes less effective in inhibiting the protein kinase activities of PKC-delta and PKC-zeta when compared to PKC-alpha.

Alkaloids↗

Multiple intracavitary cardiac masses; an uncommon presentation of African Burkitt's lymphoma.

A 29-yr-old patient is described, who presented with rapid general deterioration and right heart failure. Two-dimensional echocardiography revealed massive intracardiac tumor involving the right atrium, the right ventricle and the left atrium. At histology the diagnosis of Burkitt's lymphoma was made. This report presents what we believe to be the first case of a patient with primary cardiac manifestations and multiple intracardiac masses in this disease.

Adult↗

Cloning and sequencing of a Shiga-like toxin II-related gene from Escherichia coli O157:H7 strain 7279.

Escherichia coli O157:H7 strains are newly recognized pathogens associated with haemorrhagic colitis and haemolytic-uremic syndrome. In addition to Shiga-like toxin types I and II known to be produced by E. coli O157 isolates, we have identified in E. coli O157:H7 strain 7279 a third toxin, designated SLT-IIvhc, that is neutralized neither by anti-SLT-I nor by anti-SLT-II antibodies. The genes for this toxin were isolated by using a PCR-mediated cell-free cloning technique. DNA sequence analysis revealed a high degree of homologies to SLT-II and several SLT-II variants. The predicted amino acid sequence of the A subunit of SLT-IIvhc differed from that of the O91:H7 toxin VT2ha and SLT-IIc from E. coli O157:H- strain E2511 by 2 and 3 amino acids, respectively. The amino acid sequence of its B subunit was identical to VT2ha and SLT-IIc but different from SLT-II and SLT-IIv. Immunological differences of SLT-IIvhc and SLT-II as well as their different toxicity to HeLa cells presumably resulted from the small deviations within the primary structure of the B subunit.

Amino Acid Sequence↗

Frequent loss of Shiga-like toxin genes in clinical isolates of Escherichia coli upon subcultivation.

Forty-five consecutive patients with various gastrointestinal disorders were identified as having Shiga-like toxin (SLT)-producing Escherichia coli infections. This was shown by the cytotoxic effect of stool extracts in Vero cell cultures which was neutralizable by antibodies to SLTs and by isolation of E. coli that hybridized with DNA probes complementary to SLT-I and SLT-II sequences. When we tested the same strains for SLT genes after subcultivation, the isolates from 15 patients became negative by colony hybridization and polymerase chain reaction and failed to produce SLTs. The instability of SLT genes warrants direct screening methods for clinical material and the development of new culture methods to prevent the loss of SLT genes.

Bacterial Toxins↗

Ventilation in chronic heart failure: effects of physical training.

OBJECTIVE: To assess the effects of exercise training on ventilatory function in chronic heart failure. DESIGN: Observer blinded random allocation crossover training and detraining trial. SETTING: Assessment in hospital based clinical laboratory; training home based. PATIENTS: 22 patients with chronic heart failure (New York Heart Association (NYHA) class II or III) recruited from a tertiary referral centre. All finished the study. INTERVENTION: Bicycle ergometer exercise for 20 minutes a day, five days a week for eight weeks at 70%-80% of maximum heart rate. MAIN OUTCOME MEASURES: Exercise capacity on graded incremental exercise test, minute ventilation, oxygen consumption and carbon dioxide output. RESULTS: Peak work load increased from 96 W to 112 W and peak oxygen consumption from 14.1 ml/kg/min to 15.4 ml/kg/min (p < 0.01). At submaximal workloads carbon dioxide excretion (VCO2) and minute ventilation (Vi) decreased significantly (p < 0.05) though oxygen consumption was unchanged. The relation between Vi and carbon dioxide excretion changed: the slope of the Vi to VCO2 plot decreased from 38.6 to 35.3, indicating an improvement in overall ventilary efficiency. The instantaneous carbon dioxide ventilatory equivalent (Vi/VCO2) decreased at submaximal workloads, and reached a lower minimum value after training, indicating that optimum ventilatory performance improved. The exercise capacity of patients was related to the optimum ventilatory performance. It is suggested that this may in part be mediated through changes in skeletal muscles. CONCLUSION: Exercise training reduces the ventilatory abnormalities in chronic heart failure; thus some of these changes may be due to physical deconditioning.

Aged↗

Regulation of insulin-like growth factor I production in rat C6 glioma cells: possible role as an autocrine/paracrine growth factor.

The growth of rat glioma C6 cells, which provide an in vitro model of glial cells, is inhibited by retinoic acid and glucocorticoids, two agents which are important in brain differentiation and growth. To determine whether the growth-inhibitory effects of these agents are mediated by alterations in insulin-like growth factor I (IGF-I) production, the effects of retinoic acid and dexamethasone on IGF-I production and messenger RNA levels in C6 cells were investigated. IGF-I mRNA levels were determined using a solution hybridization/RNase protection assay. Treatment of C6 cells with dexamethasone or retinoic acid decreased IGF-I mRNA levels in a time-dependent fashion. The time course of the effect of the two agents differed, with the peak effect of dexamethasone between 6 and 12 h and the peak effect of retinoic acid at 27 h. In dose-response studies, IGF-I mRNA levels decreased to 27% of control levels (cells maintained in serum-free media) after treatment with 5 ng/ml dexamethasone, while half-maximal inhibition was achieved with approximately 0.5 ng/ml (1.4 nM) dexamethasone. Treatment with 10 microM retinoic acid decreased IGF-I mRNA levels to 24% of control levels with half-maximal inhibition occurring with approximately 0.5 microM retinoic acid. Cycloheximide prevented the inhibitory effect of these agents on IGF-I mRNA levels, suggesting that their effect is at least partly dependent upon protein synthesis. Immunoreactive IGF-I levels in media conditioned for 48 h by cells treated with dexamethasone or retinoic acid decreased to 32% and 42% of control levels, respectively. Treatment of C6 cells with retinoic acid or dexamethasone decreased thymidine incorporation into DNA. Treatment of cells with IGF-I alone had no effect on thymidine incorporation into DNA, but addition of 10 or 50 ng/ml IGF-I to dexamethasone-treated cells stimulated a small, but significant (P less than 0.01), increase in thymidine incorporation into DNA. IGF-I was not, however, able to reverse the inhibitory effect of retinoic acid. Finally, treatment of cells with 150 ng/ml of IGF binding protein 1 significantly decreased (P less than 0.01) thymidine incorporation into DNA by 17% as compared to incorporation into control cells maintained in serum-free media.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Microinjection of IFA antibody induces intermediate filament aggregates in epithelial cell lines but perinuclear coils in fibroblast-like lines.

The murine monoclonal IFA antibody recognizes a conserved sequence present in almost all intermediate filament (IF) proteins. When IFA antibody was injected into 13 different primary or established cell lines, striking differences were detected between epithelial and fibroblastic cell lines. In epithelial cells keratin IFs were broken down within 4 h into numerous spheroid aggregates scattered throughout the cytoplasm. Keratin aggregates were first detected in the cytoplasmic periphery. In contrast, in fibroblastic cells, injection of IFA antibody led to the formation of perinuclear coils of vimentin. IFA antibody at a concentration of greater than 1 mg/ml had to be injected to initiate these transitions. When HeLa cells, which contain separate networks of vimentin and keratin filaments, were injected with IFA antibody, vimentin did not form perinuclear coils but was instead found together with keratin in aggregates. Electron micrographs of HeLa cells injected with IFA antibody showed that the aggregates have diameters between 0.5 and 2.6 microns and resembled the keratin aggregates observed in certain mitotic epithelial cells. Although the ultrastructural studies support an association of some aggregates with desmosomes, aggregates were, however, also induced by injection of IFA antibody into human keratinocytes in low calcium medium under conditions where desmosomes were not present.

3T3 Cells↗