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Biomedical subjects

C Klein

Publications and source records attributed to C Klein.

At least 361 records · Page 20Linked to original sources

Vaccine-associated contact paralytic poliomyelitis with atypical neurological presentation.

Paralytic poliomyelitis presenting with quadriparesis, transient encephalitis and bulbar symptoms in 2 patients in close contact with recently vaccinated children with trivalent live oral polio vaccine is described. Symmetrical lower motor neuron involvement of deltoid muscles with electromyographic confirmation was found. Upper motor neuron signs, with symmetrical hyperactive deep tendon reflexes developed in the lower extremities. Poliovirus Type-2 vaccine-like strain was cultured from one patient and both patients showed significant antibody titers rises to poliovirus. Attention is drawn to the possible clinical differences between vaccine associated poliomelitis and the usual features found in wild strain poliomyelitis. It is suggested that in selected cases, non-immunized contacts be given inactivated polio-vaccine when the vaccinees are immunized with the live oral-vaccine.

Adult↗

Human neonatal lymphocytes immortalized after microinjection of Epstein-Barr virus DNA.

Epstein-Barr virus (EBV) is a highly efficient acute transforming agent in human cells, provided that the intact virus is used. To investigate the ability of viral DNA alone to transform cells, we introduced the EBV genome into human lymphocytes. After microinjection of EBV DNA into neonatal B lymphocytes, we established a cell line that in early passages contained multiple viral fragments. This cell line retained sequences from the short, unique (Us) region of the EBV genome and sequences from EcoRI-E. The viral sequences were not expressed; however, the cells expressed a 2.3-kilobase polyadenylated message homologous to the c-fgr oncogene, a cellular locus believed to be activated by EBV infection [M. S. C. Cheah, T. J. Ley, S. R. Tronick, and K. C. Robbins, Nature (London) 319:238-240.]. The cell line was monoclonal with rearrangement at the immunoglobulin locus and had a reciprocal translocation t(1;7)(p34;q34) and a deletion of sequences within the locus for the beta chain of the T-cell receptor. The close proximity of the translocation to the chromosomal loci for c-fgr on chromosome 1 and the T-cell receptor beta chain on chromosome 7 suggests that structural alteration of these genes was critical to this transformation event.

Cell Line↗

Immunological analyses of the chemotactic receptor of Dictyosteleum discoideum. Identification of cDNA clones.

The cell surface cAMP receptor was excised from preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis and used to generate a polyclonal antiserum. The antiserum immunoprecipitates the two molecular weight forms of the cAMP receptor. Both forms are phosphorylated. Western blot analyses show that the antiserum is highly specific and recognizes only the two molecular weight forms of the cAMP receptor. Immunological studies indicate that both forms of the receptor are phosphorylated. Vegetative amoebae possess low levels of the cAMP receptor. Levels of the antigen increase in differentiated cells which express high cell surface cAMP binding activity. The antiserum was also used to isolate 6 lambda gt11 cDNA clones. One of those clones contains a 1.1-kilobase pair cDNA fragment which encodes for a protein of approximately 30,000-35,000 daltons. The antibody which binds to the fusion protein also recognizes the two molecular weight forms of the receptor.

Antigen-Antibody Complex↗

[Lipoprotein metabolism in relation to age].

Ageing is associated with a variety of changes of intracellular and extracellular lipid metabolism. Depending upon age the the rapidity of synthesis and metabolism of lipids decreases and partly increased plasma lipoprotein levels are found. Both under basal and under special alimentary conditions the lipoprotein metabolism shows age-dependent changes which may lead to an increased risk for atherosclerosis. These results are important for therapeutic and prophylactic conditions.

Adipose Tissue↗

Beta-adrenergic receptors in the elderly are not less sensitive to timolol.

The elderly have been reported to be less sensitive to the beta-adrenergic blocking effect of propranolol. However, propranolol is a racemate, and age-related changes in stereoselective metabolism or protein binding could confound interpretation of the data. To avoid these problems, we studied timolol in 12 young and 12 elderly healthy subjects. The dose of isoproterenol required for a heart rate increase of 25 bpm (I25) was determined before and 2 hours after an oral 10 mg dose of timolol. A dose ratio (DR) was calculated for each subject as the I25 after timolol/I25 before timolol. The binding constant for timolol binding to the receptor was calculated as the plasma timolol concentration divided by (DR-1). The I25 for the elderly group was significantly greater than the I25 for the young group, but the timolol binding constant was the same for both groups. We conclude that, although the elderly are less sensitive to isoproterenol, they are not less sensitive to timolol, and thus our data do not implicate a change in the interaction of beta-adrenoceptors with antagonists.

Adult↗

Subcellular compartmentation of opioid receptors: modulation by enkephalin and alkaloids.

A subclone of NG108-15 neuroblastoma-glioma hybrid cells was used to study the intracellular distribution of opioid receptors. Subcellular organelles were separated on self-generating Percoll-sucrose gradients and the enzymes beta-glucuronidase, galactosyltransferase, 5'-nucleotidase, and glucose-6-phosphatase were used as markers to localize the various structures. Analysis of the receptor distribution from untreated cells shows that the plasma membranes contained the highest receptor density, but a significant portion of the opioid binding sites was unevenly distributed between the lysosomes, microsomes, and Golgi elements. The enzyme markers indicated that appearance of opioid receptors in these intracellular structures does not result merely from contamination with plasma membranes. About 11% of the receptors appeared in a fraction lighter than plasma membranes. The antilysosomal agent chloroquine altered the intracellular compartmentation of the receptors, possibly by blocking their translocation in the cells. Leu-enkephalin induced time-dependent loss of receptors from all four intracellular compartments examined, but a kinetic analysis showed that the rate of receptor loss in these fractions was not identical. Thus, the percent of receptors appearing in the lysosomal fraction that could still bind [3H]D-Ala2-D-Leu5-enkephalin in vitro was increased on treatment with Leu-enkephalin. As an additional approach to follow the intracellular fate of the receptors, cells were labeled with [3H]diprenorphine, chased with various unlabeled opiates, and the distribution of 3H-ligand-receptors in the cells was monitored. Leu-enkephalin and etorphine altered the distribution of receptor-bound [3H]diprenorphine between the plasma membranes, lysosomes, and Golgi elements, whereas morphine had no such effect. The study sheds light on the role of intracellular structures in the metabolism of opioid receptors in untreated and opioid-treated cells.

Animals↗

cAMP induces a rapid and reversible modification of the chemotactic receptor in Dictyostelium discoideum.

Stimulation, within 1 min after cAMP stimulation, of aggregation-competent Dictyostelium discoideum amebae was found to cause a rapid (within 1 min) modification of the cell's surface cAMP receptor. The modified receptor migrated on SDS PAGE as a 47,000-mol-wt protein, as opposed to a 45,000-mol-wt protein labeled on unstimulated cells. The length of time this modified receptor could be detected depended upon the strength of the cAMP stimulus: 3-4 min after treatment with 10(-7) M cAMP, cells no longer possessed the 47,000-mol-wt form of the cAMP receptor. Instead, the 45,000-mol-wt form was present. Stimulation of cells with 10(-5) M cAMP, however, resulted in the persistent (over 15 min) expression of the modified receptor. The time course, concentration dependence, and specificity of stimulus for this cAMP-induced shift in the cAMP receptor were found to parallel the cAMP-stimulated phosphorylation of a 47,000-mol-wt protein. In addition, both phenomena were shown to occur in the absence of endogenous cAMP synthesis. The possibility that the cAMP receptor is phosphorylated in response to cAMP stimulation, and the role of this event in cell desensitization, are discussed.

Cell Membrane↗

Effects of urinary pH on renal interactions between probenecid and cefsulodin in rabbits.

The effect of urinary pH on renal interaction of cefsulodin and probenecid was tested in rabbits. Probenecid was reabsorbed in acidic urine (fractional excretion [FE] = 8 +/- 4%) and secreted in alkaline urine (FE = 492 +/- 258%). Renal excretion of cefsulodin alone was not affected by the urinary pH (FE = ca. 100%). In acidic urine, probenecid significantly reduced tubular secretion of cefsulodin (FE = 74 +/- 8%). An inverse pattern was observed in alkaline urine (FE = 122 +/- 18%).

Animals↗

Transdermal clonidine therapy in elderly mild hypertensives: effects on blood pressure, plasma norepinephrine and fasting plasma glucose.

Twenty patients aged 60-74 years entered a study on the effect of transdermal clonidine (Catapres-TTS) as monotherapy for mild hypertension [diastolic blood pressure (DBP) 90-104 mmHg]. Seventeen patients (85%) had a positive therapeutic response (DBP reduced to less than 90 mmHg or by greater than or equal to 5 mmHg). Patient acceptance was high and side effects mild; however, one-quarter of the patients experienced localized skin reactions. A slight increase in fasting plasma glucose level (mean delta = 20 mg/dl) was consistently observed. Transdermal clonidine led to a sustained decline in plasma catecholamine levels although this effect did not seem to be closely related to the observed decreases in blood pressure. Three out of four evaluable patients had a blood pressure 'overshoot' upon discontinuation of therapy to levels above pretreatment values. Transdermal clonidine appears to be effective and generally well tolerated in the treatment of mild hypertension in the elderly; however, more studies designed to investigate effects on glucose tolerance and the possible existence of a rebound syndrome are needed.

Administration, Topical↗

Guanine nucleotide inhibition of adenylate cyclase in a membrane fraction from Dictyostelium discoideum.

The regulation of adenylate cyclase by guanine nucleotides was examined in a plasma membrane preparation from Dictyostelium discoideum. At concentrations of greater than 10 microM, GDP, GTP and a non-hydrolyzable GTP analogue, guanosine 5'-(beta-gamma-imino)triphosphate (Gpp(NH)p), inhibited the enzyme. Guanosine, GMP and ITP were ineffective. The inhibition was not affected by variations in assay conditions (membrane concentration, time or temperature), the presence of cAMP, NaF or forskolin in the reaction mix, or variations in the stage of Dictyostelium discoideum development. There was no stimulation of adenylate cyclase by GTP or Gpp(NH)p under any conditions. Inhibition of adenylate cyclase by Gpp(NH)p was sensitive to divalent cations. The addition of MnCl2 resulted in increased adenylate cyclase activity, but augmented the inhibitory response to Gpp(NH)p. The differences between Dictyostelium discoideum and eukaryotic regulation of adenylate cyclase by guanine nucleotides are discussed.

Adenylyl Cyclase Inhibitors↗

Monoclonal antibodies: use to detect developmentally regulated antigens on D. discoideum amebae.

We have used monoclonal antibodies to detect developmentally regulated cell surface antigens on D. discoideum amebae. A study of an antigen detected using an antibody produced by a hybridoma line implicates a previously undescribed component in the process of cell aggregation. This antigen (consisting of a doublet of 69,000 and 73,000 molecular weight) is first detected during the early hours of cell starvation and is present until cells begin slug formation. The developmental appearance of the antigen is not controlled by cAMP pulses and is distinct from that of Contact A sites. Fab fragments directed against the antigen are potent inhibitors of aggregation but do not inhibit the differentiation of cells to aggregation competence.

Adhesiveness↗

Cyclic nucleotide-dependent phosphorylation in Dictyostelium discoideum amoebae.

Stimulation of Dictyostelium discoideum amoebae with cAMP was found to induce the specific phosphorylation of a 47,000 molecular weight protein (pP47). This cellular response to cAMP was developmentally regulated. It was first detected in 3 1/2-h starved cells and appeared to persist throughout the aggregation phase of the cells' life cycle. pP47 phosphorylation was specifically induced by cAMP in that amoebae did not respond to stimulation with 5'-AMP, folic acid, Ca2+, and/or the Ca2+ ionophore A23187. cGMP could elicit pP47 phosphorylation but only at high concentrations. Phosphorylation of pP47 in response to cAMP occurred rapidly (within 5 s). The length of time for which it remained phosphorylated depended upon the concentration of the stimulus. With 10(-6) M cAMP, pP47 was phosphorylated for less than 4 min. If amoebae were stimulated with 10(-4) M cAMP, over 30 min were necessary before pP47 was dephosphorylated. Once dephosphorylated, pP47 could again be phosphorylated upon reapplication of the cAMP stimulus.

Calcimycin↗

Stability of dehydrogenases. III. Malate dehydrogenases.

Cytoplasmic and mitochondrial malate dehydrogenases from pig and chicken were studied by chemical modification of amino groups, hybridization of immobilization. Determination of thermal stability was used to characterize the different species. Modification of amino groups was found to decrease thermal stability especially when neutralization of the positive charges occurred. Decreased thermal stability correlated with decreased reassociation of immobilized monomers and modification in the monomeric state completely inhibited reassociation. Thus some lysines seem to be implicated within the subunit contacts. Active monomers of the mitochondrial forms as demonstrated earlier (Jürgensen, S.R., Wood, D.C., Mahler, J.C. and Harrison, J.H. (1981) J. Biol Chem. 256, 2383-2388) were found to display unaltered kinetic properties. From hybridizations the mechanism of thermal denaturation of malate dehydrogenases was concluded to contain a rate-limiting cooperative transaction of both monomers within the dimer, as was found earlier for tetrameric lactate dehydrogenase (Müller, J. (1981) Biochim. Biophys. Acta 669, 210-215 and Müller, J. and Klein, C. (1981) Biochim. Biophys. Acta 671, 38-41).

Animals↗