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Biomedical subjects

H Riedel

Publications and source records attributed to H Riedel.

At least 37 records · Page 2Linked to original sources

Epidermal growth factor (EGF) modulation of feline sarcoma virus fms tyrosine kinase activity, internalization, degradation, and transforming potential in an EGF receptor/v-fms chimera.

The feline sarcoma virus oncogene v-fms has significantly contributed to the dissection of peptide growth factor action since it encodes the transmembrane tyrosine kinase gp140v-fms, a transforming version of colony-stimulating factor 1 receptor, a member of the growth factor receptor tyrosine kinase family. In this study, the functional significance of structural differences between distinct tyrosine kinase types, in particular between cellular receptors and viral transforming proteins of distinct structural types, has been further investigated, and their functional compatibility has been addressed. For this purpose, major functional domains of three structurally distinct tyrosine kinases were combined into two chimeric receptors. The cytoplasmic gp140v-fms kinase domain and the kinase domain of Rous sarcoma virus pp60v-src were each fused to the extracellular ligand-binding domain of the epidermal growth factor (EGF) receptor to create chimeras EFR and ESR, respectively, which were studied upon stable expression in NIH 3T3 fibroblasts. Both chimeras were faithfully synthesized and routed to the cell surface, where they displayed EGF-specific, low-affinity ligand-binding domains in contrast to the high- and low-affinity EGF-binding sites of normal EGF receptors. While the EFR kinase was EGF controlled for autophosphorylation and substrate phosphorylation in vitro, in vivo, and in digitonin-treated cells, the ESR kinase was not responsive to EGF. While ESR appeared to recycle to the cell surface upon endocytosis, EGF induced efficient EFR internalization and degradation, and phorbol esters stimulated protein kinase C-mediated downmodulation of EFR. Despite its ligand-inducible kinase activity, EFR was partly EGF independent in mediating mitogenesis and cell transformation, while ESR appeared biologically inactive.

3T3 Cells↗

Identification of differentially expressed mRNA species by an improved display technique (DDRT-PCR).

We have significantly improved a method originally developed by Liang and Pardee [Science 257 (1992) 967-971] to display a broad spectrum of expressed genes and to detect differences in expression between different cell types. We have analysed various aspects of the technique and have modified it for both, the application to fast and efficient identification of genes and the use with automatic analysis systems. Based on the mathematical background we have devised the appropriate number of optimal PCR primers. We have also introduced nondenaturating gels for separating double stranded fragments as single bands. By applying the method to regenerating mouse liver, we have identified, out of a total of 38,000 bands, about 70 fragments where the expression of the corresponding genes seems to be differentially regulated at different time points. Application of the method to an automatic DNA sequencer was successfully done. Thus, we have confirmed the usefulness and increased the power of the RNA display technique, which we named differential display reverse transcription PCR (DDRT-PCR), and have extended the range of its application.

Animals↗

Stimulation of calcium uptake in Saccharomyces cerevisiae by bovine protein kinase C alpha.

Ca2+ plays essential roles as a second messenger often in synergism with the calcium- and phospholipid-dependent phorbol ester receptor, protein kinase C (PKC), which stimulates Ca2+ influx in various cell types in a potential positive feedback mechanism. To address the compatibility of these mechanisms between lower eukaryotes and mammals, we have stably expressed bovine PKC alpha in the yeast Saccharomyces cerevisiae. We find that phorbol ester binding sites are created which stimulate a specific calcium- and phospholipid-dependent catalytic activity in vitro. Phorbol ester activation in vivo stimulates PKC down-regulation, uptake of extracellular Ca2+, Ca2+ dependence of cell viability, and changes in cell morphology. This may represent activation of a putative PKC-mediated signaling pathway utilized by functional yeast homologs of mammalian PKC isoforms. These are suggested by some protein data; however, their genes have not yet been characterized (Simon, A. J., Milner, Y., Saville, S. P., Dvir, A., Mochly-Rosen, D., and Orr, E. (1991) Proc. R. Soc. Lond. B 243, 165-171). Our findings indicate that bovine PKC alpha is functional in yeast and stimulates calcium uptake in a manner similar to some of its responses in mammalian cells, which suggests compatible aspects of higher and lower eukaryotic signaling pathways and the feasibility of dissecting parts of the action of common signaling mediators in a simple genetic model.

Amino Acid Sequence↗

Phorbol ester activation of functional rat protein kinase C beta-1 causes phenotype in yeast.

The phorbol ester receptor protein kinase C (PKC) gene family encodes essential mediators of various eukaryotic cellular signals. The molecular dissection of its mechanisms of action has been limited in part by the genetic inaccessibility and complexity of signaling in mammalian cells. Here we present a novel approach to study rat PKC beta-1 action in yeast, a simple lower eukaryotic genetic model. Expression of its cDNA in Saccharomyces cerevisiae introduces novel phorbol ester binding sites which stimulate a specific calcium- and phospholipid-dependent catalytic activity in vitro consistent with a fully functional protein which phosphorylates cellular yeast proteins in vivo. Phorbol ester activation of PKC beta-1 in vivo results in biological responses which include stimulation of extracellular calcium uptake, changes in cell morphology, and an increase in the cell doubling time. These PKC functions are not affected by truncation of 12 amino terminal amino acids; however, they are completely abolished by truncation of 15 or more carboxyl terminal amino acids which likely result in inactivation of the kinase. The increase in the yeast doubling time caused by PKC beta-1 activation provides a phenotype which can be exploited as a screen for the activity of random PKC cDNA mutations. Our findings indicate that rat PKC beta-1 is functional in yeast and leads to biological responses which suggest compatible aspects of higher and lower eukaryotic signaling pathways and the feasibility of dissecting parts of the action of common signaling mediators in a simple genetic model.

Amino Acid Sequence↗

Tedisamil (KC 8857) is a new specific bradycardic drug: does it also influence myocardial contractility? Analysis by the conductance (volume) technique in coronary artery disease.

To determine whether inotropism influences the bradycardic action of tedisamil, hemodynamic assessment was performed in 13 patients with ischemic coronary artery disease including analysis of end-systolic pressure-volume relationships after an infusion of tedisamil, 0.3 mg/kg, at rest, and during paced tachycardia stress. Slope Emax fell by 14% at rest (13 patients) and by 10% during tachycardia (6/13 patients), whereas loops of end-systolic pressure-volume relationships moved rightward; all parameter changes indicated a lack of significant inotropism loss with tedisamil (p > 0.05). Although the mean heart rate decreased from 77.5 to 64.7 beats/min and QTc duration increased by 14% (p < 0.05), filling pressure and dp/dtmin remained unchanged and vascular resistance increased by 30%. Parameters of left ventricular pump function (ejection fraction, stroke volume, left ventricular efficiency) decreased slightly (between 3% and 13%), whereas left ventricular volumes increased (end-diastolic volume by 6%, end-systolic volume by 23%). The respective parameter changes during tachycardia were comparable in tendency, and angina could no longer be induced during postdrug pacing stress. We concluded that the bradycardic effects of tedisamil are selectively generated without impairing either ventricular pump function or contractility in a clinically relevant fashion, whereas the postdrug anginal threshold appears elevated. Thus tedisamil can be used safely in ischemic coronary artery disease.

Aged↗

Reconstitution of protein kinase C alpha function by the protein kinase C beta-I carboxy terminus.

The Ca(2+)- and phospholipid-dependent Ser/Thr kinase protein kinase C (PKC) plays important roles in the transduction of cellular signals. Various PKC isoforms exist in mammalian cells which share conserved and variable regions as defined by cDNA sequence comparisons. To test whether carboxyl (C) terminal sequences of distinct isoforms can complement each other to yield functional chimeric molecules, we have constructed a PKC chimera in which amino acids 595-672 at the C-terminus of bovine PKC alpha (a) were replaced with the corresponding C-terminal amino acids (598-671) of rat PKC beta-I (b) to yield the chimera alpha/beta-I (ab). The chimera was then characterized biochemically and functionally, and compared with the parental isoforms. Since structure/function analysis of PKC in mammalian experimental systems is complicated by multiple PKC isoforms and by cellular complexity, we stably introduced the PKC constructs into the yeast Saccharomyces cerevisiae, a simple, lower eukaryote with a short doubling time and well established molecular genetics. In yeast, the faithfully expressed PKCab chimera and normal PKC isoforms bound radiolabelled phorbol ester and were recognized on immunoblots by PKC-specific antibodies. The chimera phosphorylated substrate peptides in a PMA- and Ca(2+)-dependent manner, and, upon activation, increased the cell doubling time and the rate of Ca2+ uptake into cells. In addition, PKCab displayed characteristics distinct from normal PKCb, but virtually indistinguishable from normal PKCa. Our findings indicate the reconstitution of PKCa function by the PKCb carboxyl terminus.

Animals↗

Yeast phenotype classifies mammalian protein kinase C cDNA mutants.

The phorbol ester receptor protein kinase C (PKC) gene family encodes essential mediators of eukaryotic cellular signals. Molecular dissection of their mechanisms of action has been limited in part by the lack of random mutagenesis approaches and by the complexity of signaling pathways in mammalian cells which involve multiple PKC isoforms. Here we present a rapid screen which permits the quantification of mammalian PKC activity phenotypically in the yeast Saccharomyces cerevisiae. Bovine PKC alpha cDNA is functionally expressed in S. cerevisiae. This results in a phorbol ester response: a fourfold increase in the cell doubling time and a substantial decrease in yeast colony size on agar plates. We have expressed pools of bovine PKC alpha cDNAs mutagenized by Bal 31 deletion of internal, amino-terminal, or carboxyl-terminal sequences and have identified three classes of mutants on the basis of their distinct yeast phenotypes. Representatives of each class were analyzed. An internal deletion of amino acids (aa) 172 to 225 displayed ligand-dependent but reduced catalytic activity, an amino-terminal truncation of aa 1 to 153 displayed elevated and ligand-independent activity, and a carboxyl-terminal 26-aa truncation (aa 647 to 672) lacked activity under any conditions. Additional mutations confirmed the distinct functional characteristics of these classes. Our data show that deletion of the V1 and C1 regions results in elevated basal catalytic activity which is still Ca2+ responsive. Internal deletions in the V2 and C2 regions do not abolish phorbol ester or Ca2+ regulation of PKC activity, suggesting that most of the C2 domain is not essential for phorbol ester stimulation and most of the regulatory domain is dispensable for Ca2+ regulation of PKC activity. These distinct activities od the PKC mutants correlate with a specific and proportional yeast phenotype and are quantified on agar plates by yeast colony size. This provides a phenotypic screen which is suitable to identity rare, randomly altered but active mammalian PKC mutants. It quantifies their catalytic and biological activities in response to PKC activators or inhibitors for a systematic mapping of PKC structure and function or PKC-drug interaction.

Animals↗

Functional carboxyl terminal deletion map of protein kinase C alpha.

The phorbol ester receptor protein kinase C (PKC) gene family encodes essential mediators of various eukaryotic cellular signals. Based on the predicted amino acid (aa) sequence homology of more than ten distinct PKC gene coding sequences, four highly conserved regions C1-C4 and five variable regions V1-V5 have been defined for the different PKC subtypes. Some of these regions, such as C1 and C3/V4/C4, have been correlated with specific PKC functions, such as activator binding and enzymatic activity, respectively, while the biological role of others is unknown. The biological significance of the PKC carboxyl terminus is unclear and the predicted boundary of the catalytic C4 region is controversial due to different interpretations of aa sequence comparisons. We explored the PKC alpha carboxyl terminal requirement for basic PKC function and mapped the boundary of the sequences essential for enzymatic activity based on functional criteria. cDNAs encoding normal and random carboxyl terminal truncations of bovine PKC alpha were introduced into Saccharomyces cerevisiae, allowing its rapid functional expression and characterization for catalytic as well as biological activity. We found that deletion of up to 11 carboxyl terminal aa still results in a phorbol ester-responsive, biologically active enzyme in vivo which is dependent on calcium and phospholipids for catalytic activation in vitro. Deletion of 15 and 23 aa results in marginal and total loss of catalytic activity, respectively, and in complete loss of biological activity for both truncations.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

[Is the bradycardic effect of tedisamil at the expense of the loss of the inotropic effect? A pressure-volume analysis with the conductance (volume) catheter technique in patients with coronary artery disease].

UNLABELLED: To exclude or prove potential inotropic influences from tedisamil's bradycardiac effects, our hemodynamic evaluation in 13 patients (pat.) with coronary artery disease (CAD) included analyses of end-systolic pressure-volume relationships (ESPVR) after tedisamil, 0.3 mg/kg infusion at rest and during tachycardia induced by atrial pacing. Slope Emax [mm HG/ml] fell by 14% at rest (13 pat.) and by 10% during paced tachycardia (6/13 pat.) while loops of ESPVR tended to move rightward towards larger volumes (p > 0.05): all parameter changes indicated lack of significant inotropy loss with tedisamil. While mean heart rate decreased from 77.5 to 64.7 b/min and QTc duration increased by 14% (p < 0.05), filling pressure as well as dP/dtmin remained unchanged and vascular resistance rose by 30%. Parameters of LV-pump function (ejection fraction, stroke volume) decreased slightly (between 3 and 13%), while LV-volumes increased (end-diastolic by 6%, end-systolic by 23%). The respective parameter changes during paced tachycardia were comparable in tendency. CONCLUSION: Tedisamil's bradycardic effects are selectively generated without impairing either ventricular pump function or contractility in a clinically relevant fashion. Thus, tedisamil can be used safely in CAD.

Aged↗

[The therapy of the heparin-induced thrombosis-thrombocytopenia syndrome with immunoglobulins].

A 51-year-old obese woman who had just undergone a second osteotomy for arthrosis of the hip joint was given unfractionated heparin, 7,500 IU subcutaneously three times daily, as thrombosis prophylaxis. Signs of fulminant pulmonary embolism occurred on the 16th postoperative day with a platelet count of 33,000/microliters. Suspected heparin-induced thrombocytopenia and thrombosis (HITT) was confirmed by platelet tests. When heparin had been discontinued immunoglobulin G was administered, seven times 5 g intravenously, in view of the immunological genesis of HITT. In addition thrombolysis treatment with streptokinase combined with phenprocoumon was undertaken, until satisfactory anticoagulation was achieved after 4 days. Platelet count rose to 136,000/microliters within 20 hours of the first immunoglobulin dose. Complete clinical normality was restored, scintigraphy showed no perfusion deficit in the lungs.

Blood Cell Count↗

Significance of glomerular compartmentalization for olfactory coding.

This paper deals with the dendritic signal processing by mitral cells in the olfactory bulb and its meaning for olfactory coding. The output signals of olfactory receptor neurones are sent to the olfactory bulb where they converge onto the secondary neurones, the mitral cells. On a short time scale, the connectivity between receptor and mitral cells can be assumed to be constant, whereas on a longer time scale, when considering the ongoing de- and regeneration, it is necessary to model the synaptical weights between receptor and mitral cells as variables. In a first approach we used Hebb's rule to this end and presumed that a mitral cell can be represented by one compartment only. In this case, and with a sequence of realistically modeled receptor activity signals, the synaptical weights of all mitral cells converged to the same point though every mitral cell had initial weights different from those of any other mitral cell. This means that a mitral cell, when modeled as one compartment, does not become sensitive to any particular odor quality. A similar lack of quality tuning turned out to occur when one-compartment mitral cells were connected among each other by laterally inhibiting interneurones. We therefore took into account the glomerular fine structure of mitral cell dendrites, assuming electrotonically decoupled dendritic subbranches. This feature together with local inhibitory circuitry at the subbranches led to a fundamentally different type of synaptical convergence pattern. In this case, mitral cells developed differential sensitivities for different odors. Mitral cells have thus to be regarded as multicompartment cells, and local, non-Hebbian learning rules for their afferent synapses are necessary to achieve a reasonable map of odors upon mitral cell activities.

Animals↗

[The temporal variation of fine dust concentration in the air in fattening pig housing. Hygienic and occupational medicine aspects].

The temporal variation of airborne dust concentration (less than or equal to microns) was examined with an instrument operating on the nephelometer principle combined with a specifically adapted data processor in two pig fattening houses at night, at day and during feeding. Activities and factors affecting the dust level were noted. The measurement system allows the uptake and storage of values in the stable. For further processing, the data can be transmitted to a personal computer. In our experience the instrument is very suitable for the registration of airborne dust concentration in animal confinement buildings. Peak concentrations ranging up to 100 mg/m3 in intervals of 10 seconds could be measured. The data of a longer trial were averaged over 1.5 minutes. Animal activity has a great influence on the dust concentration. The highest mean concentration of dust with maximally 2.5 mg/m3 were determined at feeding time and when pigs were disturbed. The concentration of airborne dust particles was obviously lower at night than at day. A defect of the ventilation system, referable to the emission of feed dust, was disclosed by the continuous registration of air dust concentration, in one of the pig fattening houses. During the feeding periods, for a short time of less than 20 seconds, the dust concentration rises to 100 mg/m3 resp. 27 mg/m3 by dry resp. wet feeding. About 30 minutes after feeding the dust concentration was again in the average of 0.67 mg/m3. In conclusion the results were considered under hygienic and medical aspects.

Air Pollution↗

[Iron metabolism and chloroquine phosphate therapy in porphyria cutanea tarda].

The knowledge about the influence of chloroquine phosphate (CQ) on the iron metabolism in porphyria cutanea tarda (PCT) is still insufficient. In a study on 138 PCT patients treated with CQ, we observed decreasing serum iron concentration, transferrin saturation, and hepatic siderosis, as well as an increasing level of transferrin. After a one-year therapy with CQ, the patients showed normal porphyrinuria. Since there were no statistical correlations between the degree of hepatic siderosis and porphyrinuria, and since we repeatedly found remission of the PCT in spite of the continued existence of hepatic siderosis, the removal of iron cannot be regarded as the only principle of action in CQ therapy. In comparison with chloroquine, phlebotomy obviously has--even with regard to the iron deposits--no decisive advantages.

Adult↗

[Porphyria cutanea tarda and lupus erythematosus].

We observed three patients with lupus erythematosus and porphyria cutanea tarda manifesting itself simultaneously or subsequently. The possible coincidence of the two diseases might be the consequence of immunological communities indicated on the assumption of a genetically coined hepatic uroporphyrinogen decarboxylase defect. The treatment of the lupus erythematosus can be performed according to corresponding observations of the course according to general acknowledged principles including the administration of cytostatic drugs, if the chloroquine phosphate therapy which is clearing up the porphyria cutanea tarda is beginning with low dosages. The fluorescence of the fresh kidney bioptate under long-wave UV-light in porphyria cutanea tarda is referred to for the first time.

Adult↗

[HLA studies and histochemical detection of liver iron in porphyria cutanea tarda].

With regard to disturbances of the iron metabolism, porphyria cutanea tarda (PCT) is most frequently accompanied by liver siderosis. In 74 out of 88 patients suffering from PCT (84%), we found histochemical evidence of liver siderosis. These patients showed a significantly higher incidence of HLA A3--which has been proved to be associated with hemochromatosis--than those without liver siderosis (39.2% vs. 7.1%). With part of the PCT patients, disorders of the iron metabolism related to the HLA system (A3) might contribute to the manifestation of the disease. We discuss PCT as the result of the combined action of several predisposing genetic markers and exogenic factors.

Biopsy↗