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Biomedical subjects

E Pfaff

Publications and source records attributed to E Pfaff.

16 recordsLinked to original sources

Role of hepatitis C virus infection in German patients with fulminant and subacute hepatic failure.

To investigate the possible role of hepatitis C virus (HCV) in fulminant and subacute liver failure, we tested serum and liver of 13 patients undergoing orthotopic liver transplantation for the presence of HCV RNA. HCV RNA was detected in specimens from two out of eight patients negative for all viral markers with suspected hepatitis non-A, non-B infection and in one out of four patients with hepatitis B virus infection. Only in this patient replication of HCV could be demonstrated. We conclude, that fulminant and subacute hepatic failure is induced by hepatitis C virus only in few patients with hepatitis non-A, non-B.

Adult

Reassessment of the v-fms sequence: threonine phosphorylation of the COOH-terminal domain.

The v-fms oncogene product of the McDonough strain of feline sarcoma virus is a member of the receptor tyrosine kinase family. Its cellular counterpart, the c-fms product, is the receptor for colony-stimulating factor 1 (CSF-1) of macrophages. We have reanalyzed the v-fms gene by direct sequencing of a biologically active clone. An additional A nucleotide was detected in position 2810 of the published v-fms sequence. The frameshift changed the COOH-terminal sequence of the v-fms protein from -R-937-G-P-P-L-COOH to -Q-937-R-T-P-P-V-A-R-COOH. Antibodies against a synthetic peptide representing this new sequence precipitated the v-fms proteins from transformed NRK cells as well as from feline sarcoma virus (McDonough)-infected feline fibroblasts. We show by tryptic peptide mapping that threonine 939 present in the new sequence is phosphorylated by a yet unknown serine/threonine kinase in vivo. In chicken fibroblasts expressing the v-fms gene, this phosphorylation clearly depended on the addition of exogenous CSF-1. Furthermore, addition of CSF-1 appeared to activate the serine/threonine kinase, as judged by phosphorylation of the synthetic peptide QRTPPVAR.

Amino Acid Sequence

Transient 45Ca uptake and release in isolated rat-liver cells during recovery from deenergized states.

1. Aerobic incubation of isolated rat liver cells--after dilution from the anaerobic stock suspension--transiently brings about a state, during which a reversible calcium uptake can be observed on addition of a respiratory substrate. Uptake varies greatly and can reach more than 50 nmol/mg protein, but declines to zero on prolonged preincubation, especially at higher temperature. Repeated additions of succinate or 3-hydroxybutyrate evoke new calcium transients. If ATP is simultaneously added, if greatly potentiates succinate-initiated reversible uptake. 2. If rotenone is present during the preincubation phase, calcium transients are strongly enhanced. Uptake is blocked by uncouplers and respiratory inhibitors, indicating the involvement of mitochondria. 3. Calcium uptake is not accompanied by increased oxygen consumption. The actual respiration cannot account sufficiently for the energy need of calcium uptake. Participation of cytoplasmic ATP is likely, as inhibitors of adenine nucleotide translocase affect uptake. 4. Lanthanum enhances calcium uptake in contrast to its action on mitochondria. 5. Pulse-labeling experiments indicate that the calcium taken up is removed from a rapidly exchangeable calcium pool by withdrawal into the mitochondria as a deep compartment. 6. Calcium uptake is accelerated either by increasing the phosphate level or by high temperature. It is prolonged by low temperature, high pH or high ATP concentration. Calcium release accelerates with increasing temperature, decreasing pH and a further rise in phosphate concentration. 7. The dependency on phosphate and temperature reveals a delicately poised equilibrium of uptake and release. At ambient temperature, phosphate increases uptake up to a concentration of 0.5 mM. Higher concentrations accelerate both uptake and release. At lower temperature, the accelerating effect on uptake predominates. A temperature shift during incubation results in adaptation of the calcium equilibrium to the new temperature, i.e. release of calcium at high temperature, uptake at low temperature. 8. Oxidizing metabolites inhibit succinate-stimulated calcium uptake and promote release of previously accumulated calcium. An increased sensitivity to phosphate is established. 9. With respect to isolated mitochondria, isolated liver cells appear to be a more realistic model for studying the physiological mechanism of mitochondrial calcium release, since compartmental constraints and regulations are maintained.

Aerobiosis

Excretion of taurocholate from isolated hepatocytes.

Efflux of taurocholate from isolated rat hepatocytes was studied to characterize the mechanism of bile acid secretion. Cells were incubated with taurocholate for 15 min. The amount of the intracellularly accumulated bile acid was directly related to the concentration in the medium. Transfer of the loaded cells from the incubation medium to a medium without taurocholate led to taurocholate efflux. Efflux was saturable, its activation energy amounted to 12 kcal/mol (50 kJ). It was strongly inhibited by the metabolic inhibitor antimycin A and to a lesser extend by the uncoupler carbonylcyanide-m-chlorophenylhydrazone. Dinitrofluorobenzene and mersalyl, reagents which react with amino acids, inhibited efflux by about 30% when applied at concentrations of 50 muM. Ouabain increased the rate of efflux. The observations indicate that secretory functions are maintained in isolated liver cells.

Animals

Influence of viability on bromosulfophthalein uptake by isolated hepatocytes.

The initial rates of BSP uptake by isolated hepatocytes were compared in cells of good and poor viability. Cells with impaired viability were obtained by ageing or by accident also in fresh preparations. Viability was judged by trypan blue stainability, membrane potential and respiratory parameters indicative for energy state, substrate supply and plasma membrane permeability changes. It was found that concomitant with impaired viability there was a decline of uptake rates at low and an increase at high BSP concentrations with a crossover point at 10 muM as manifest in an increase of Km and V. Simultaneously, the affinity and size of the membrane bound fraction decreases. The results give kinetic support to the supposition that it is the decreased uptake from plasma to liver that is responsible for the prolonged plasma retention times in the liver function test of patients with impaired hepatobiliary function.

Cell Membrane Permeability

Uptake of taurocholic acid into isolated rat-liver cells.

Binding and transport characteristics for uptake of taurocholic acid by isolated rat liver cells were studied. 1. An adsorption of taurocholate to the cell surface is terminated in less than 15 s. A Ks of 0.55 mM and a total binding capacity of 3.8 nmol/mg cell protein is determined. 2. The rate of uptake of taurocholate follows Michaelis-Menten kinetics with Km = 19 muM and V = 1.7 nmol/mg protein min. 3. There is a broad pH optimum for uptake between pH 6.5 -- 8.0. 4. The activation energy amounts to 29 kcal/mol. At high taurocholate concentration an unusual upward bend is observed in the Arrhenius plot. 5. Taurocholate uptake is competitively inhibited by taurochenodeoxycholate (Ki = 9 muM). It is noncompetitively inhibited by bromosulfophthalein (Ki = 3 muM). 6. At physiological taurocholate concentrations a 200-fold intracellular accumulation of taurocholate is observed. 7. Uptake is inhibited by about 75% by either antimycin A, carbonylcyanide m-chlorophenyl-hydrazone, ouabain. 8. Replacement of extracellular Na+ by either K+ or sucrose results in a 75% decrease of uptake. 9. It is concluded that taurocholate uptake is a carrier-mediated process, and suggested that the energy for intracellular accumulation is made available by cotransport of Na+.

Animals

Criteria of viability of isolated liver cells.

36.4 +/Various cellular parameters were measured with regard to their usefulness as criteria of viability of isolated cells. Stainability by trypan blue and release of lactate dehydrogenase indicate only severe irreversible damage of cells. Neither endogenous respiration nor even the ATP/ADP ratio is a sensitive criterion of viability. On aging of cells, the ATP/ADP ratio remains high, even though the membrane potential, the intracellular K concentration and the content of adenine nucleotides decrease considerably. A sensitive, easily performed test is the stimulation of cellular respiration by 1mM succinate. Only a damaged plasma membrane allows succinate permeation of a rate sufficient to stimulate respiration. The membrane potential and the intracellular Na and K concentrations are the most sensitive criteria of viability, since they indicate the earliest changes on aging. (For freshly isolated cells, we found a membrane potential of 36.4 "/- 3.4 mv [n = 5], an intracellular K concentration of 109.0 +/- 9.1 mM, and an intracellular Na concentration of 47.0 +/- 13.4mM.) The incorporation of [14C]uridine also sensitively reflects cellular damage.

Adenosine Diphosphate