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J Thompson

Publications and source records attributed to J Thompson.

At least 667 records · Page 37Linked to original sources

The substantia innominata and adjacent regions in the human brain: histochemical and biochemical observations.

The substantia innominata was investigated in the adult human brain with particular reference to the cholinergic nature of the nucleus of Meynert. Based on histochemical observations of acetylcholinesterase activity and biochemical estimations of choline acetyltransferase the relations of the Meynert nucleus to adjacent structures in the substantia innominata region were identified precisely. A new dissection procedure is described which permits combined histochemical and histological examination of anatomically complex regions of the human brain, such as the substantia innominata, to be carried out in conjunction with accurate tissue dissection for neurochemical analysis. Using this technique, various acetylcholinesterase-positive and choline acetyltransferase-containing structures are apparent in coronal sections removed from the rostrocaudal length of the substantia innominata. These include, in addition to the prominently stained, putative cholinergic neurons, acetylcholinesterase-positive tracts which contain putative cholinergic projections to the neocortex, and 'islands' of acetylcholinesterase-positive neuropil which presumably reflect a collateral or intrinsic cholinergic innervation in the area. This anatomical complexity of cholinergic structures in the substantia innominata suggests that neurochemical analysis should be conducted on microdissected as opposed to macrodissected tissue samples. Neuropathologically, the present report provides a further basis for optimising quantification of putative cholinergic perikarya. Continued systematic analysis of the nucleus of Meynert at the morphological and biochemical level should thus establish the role of this nucleus in normal brain function and in disease.

Acetylcholinesterase↗

A simplified ultrafiltration method for determination of serum free cortisol.

We describe the suitability of the Amicon MPS-1 centrifugal ultrafiltration device and the YMB membrane for measuring free cortisol in serum. The method combines two independent assays: total cortisol and the ultrafiltrate fraction of added [3H]cortisol. The unbound fraction is determined in 0.25-0.30 ml of ultrafiltrate collected from 0.6 to 1 ml of serum that has been equilibrated with [3H]cortisol at 37 degrees C for 20 min. The assay is rapid (less than 1 h), practical ( no more than 0.6 ml of serum is necessary) and repeatable (CV: 3.8% within-assay and 12.2% in different assays). Error introduced in free cortisol measurement due to dilution effects in dialysis is systematically defined, and the effect of tracer purity on the ultrafiltration method is examined. Dialyzed sera from normal men and women, from patients with Cushing's disease and adrenal insufficiency, and from pregnant women gave ultrafiltration results that accurately duplicated those obtained by previous dialysis.

Adsorption↗

Haemoperfusion ineffective for paraquat removal in life-threatening poisoning.

Five patients in whom plasma paraquat concentrations suggested that survival was in doubt were treated by charcoal haemoperfusion. The mass of paraquat removed was in each case between 2.5 and 19.1 mg. Three of the patients survived and two died. The mass of paraquat removed is low in relation to the adult lethal dose of 1000-3000 mg.

Evaluation Studies as Topic↗

Concentration and cellular distribution of androgen receptor in human prostatic neoplasia: can estrogen treatment increase androgen receptor content?

The concentration of androgen receptor in cytosol (free and total sites) and nuclear fractions from benign (28 specimens) and malignant prostatic tissue from treated (16 specimens) and untreated patients (10 specimens) were assayed using [3H]methyltrienolone (3H R-1881) as ligand under conditions which stabilize AR and prevent binding of 3H R-1881 to progesterone receptor. It was found that optimum results were obtained when sodium molybdate (10 mM) was added after separation of the nuclear pellet rather than during tissue homogenization; when cytosol and nuclear exchange assays were carried out at 15 degrees C rather than at 0 degrees C; and when hydroxylapatite was used to separate free and bound steroid in the nuclear assay. Although AR values were variable in both BPH and carcinoma tissue, certain patterns of concentration, occupancy, and cellular distribution were observed in different patient groups. In BPH and untreated carcinoma tissue, the mean occupancy of cytosol AR by endogenous androgens was high, but the mean nuclear AR concentration was higher in BPH than in carcinoma tissue. Androgen receptor concentrations in tissue from orchiectomized patients were consistent with the effects of androgen deprivation: total cell AR was depleted, and a higher proportion was present as free cytosol AR. However, in tissue from most patients who had been treated with diethylstilbestrol (DES) on a long-term basis, total cell AR values were high. Although most of the AR was present as free cytosol AR, in three of four patients who had been treated with both orchiectomy and DES, the concentrations of bound cytosol AR and nuclear AR were similar to those in untreated patients.

Castration↗

Characterization of messenger RNA specific for carcinoembryonic antigen.

Total poly(A)-containing RNA extracted from a rectal carcinoma was translated in a rabbit reticulocyte lysate. By addition of either a monoclonal or a polyclonal antibody, both monospecific for carcinoembryonic antigen, one protein with an apparent molecular weight of 85,000 was specifically precipitated, as shown by electrophoresis of the immunoprecipitate on sodium dodecylsulfate polyacrylamide gels. This protein behaves similarly to CEA isolated from liver metastases of a colon tumor in its property of being resistant to cleavage by cyanogen bromide. These findings suggest that this protein represents the CEA precursor protein. When we consider the high carbohydrate content of 60% of CEA, the observed molecular weight of the CEA precursor protein is in agreement with the reported molecular weight of 180,000 for CEA. By sedimentation of poly(A)-containing tumor RNA through a sucrose gradient, and by in vitro translation of each fraction of the gradient, the sedimentation coefficient of CEA-specific mRNA was found to be about 22 S.

Animals↗

Role of granulocytes and monocytes in experimental Staphylococcus epidermidis endocarditis.

The role of granulocytes and monocytes during the induction and course of Staphylococcus epidermidis endocarditis was investigated by the selective depletion of monocytes with the drug VP16-213 and of both granulocytes and monocytes with nitrogen mustard. The induction of endocarditis was influenced only by the depletion of monocytes: the 50% infective dose differed significantly, being 3.4 X 10(5) CFU in control rabbits and 3.4 X 10(4) CFU in the monocyte-depleted rabbits, whereas no significant differences were found between the latter and those depleted of both granulocytes and monocytes. Also, control rabbits injected with 10(6) or 10(7) CFU had a significantly higher incidence of sterile vegetations than did rabbits selectively depleted of granulocytes or monocytes. Compared with baseline values, mean monocyte numbers at the time of bacterial inoculation were significantly increased in control rabbits whose vegetations remained sterile, whereas this effect was not seen in rabbits whose vegetations became infected. The course of the endocarditis appeared to be significantly influenced by both granulocytes and monocytes. Comparison showed that a decrease of the same numbers of these cells per microliter of blood was accompanied for the monocytes by an approximately fourfold higher increase of the number of staphylococci in the vegetations. The correlation between the number of granulocytes and of monocytes on the one hand and the number of staphylococci in the vegetations on the other was not substantially influenced by the duration of the disease or the number of staphylococci injected to induce the endocarditis. The number injected proved to be significantly correlated with the number of staphylococci in the vegetations. In rabbits with numbers of CFU per gram of vegetation exceeding 10(7), blood cultures were usually positive. This finding applied rarely to control rabbits, but generally to drug-treated rabbits. In the latter animals a significant correlation between the number of staphylococci in the vegetations and in the circulation was found. We conclude that only monocytes have a measurable effect on the induction of Staphylococcus epidermidis endocarditis but during its course both granulocytes and monocytes keep the endocardial infection in check.

Animals↗

Regulation of glycolysis and sugar phosphotransferase activities in Streptococcus lactis: growth in the presence of 2-deoxy-D-glucose.

Streptococcus lactis K1 has the capacity to grow on many sugars, including sucrose and lactose, in the presence of high levels (greater than 500 mM) of 2-deoxy-D-glucose. Initially, growth of the organism was transiently halted by the addition of comparatively low concentrations (less than 0.5 mM) of the glucose analog to the culture. Inhibition was coincident with (i) rapid accumulation of 2-deoxy-D-glucose 6-phosphate (ca. 120 mM) and preferential utilization of phosphoenolpyruvate via the mannose:phosphotransferase system, (ii) depletion of phosphorylated glycolytic intermediates, and (iii) a 60% reduction in intracellular ATP concentration. During the 5- to 10-min period of bacteriostasis the intracellular concentration of 2-deoxy-D-glucose 6-phosphate rapidly declined, and the concentrations of glycolytic intermediates were restored to near-normal levels. When growth resumed, the cell doubling time (Td) and the steady-state levels of 2-deoxy-D-glucose 6-phosphate maintained by the cells were dependent upon the medium concentration of 2-deoxy-D-glucose. Resistance of S. lactis K1 to the potentially toxic analog was a consequence of negative regulation of the mannose:phosphotransferase system by two independent mechanisms. The first, short-term response occurred immediately after the initial "overshoot" accumulation of 2-deoxy-D-glucose 6-phosphate, and this mechanism reduced the activity (fine control) of the mannose:phosphotransferase system. The second, long-term mechanism resulted in repression of synthesis (coarse control) of enzyme IImannose. The two regulatory mechanisms reduced the rate of 2-deoxy-D-glucose translocation via the mannose:phosphotransferase system and minimized the activity of the phosphoenolpyruvate-dependent futile cycle of the glucose analog (J. Thompson and B. M. Chassy, J. Bacteriol. 151:1454-1465, 1982). Phosphoenolpyruvate was thus conserved for transport of the growth sugar and for generation of ATP required for biosynthetic and work functions of the growing cell.

Chloramphenicol↗

Regulation of lactose-phosphoenolpyruvate-dependent phosphotransferase system and beta-D-phosphogalactoside galactohydrolase activities in Lactobacillus casei.

The lactose-phosphoenolpyruvate-dependent phosphotransferase system (lac-PTS) and beta-D-phosphogalactoside galactohydrolase (P-beta-gal) mediate the metabolism of lactose by Lactobacillus casei. Starved cells of L. casei contained a high intracellular concentration of phosphoenolpyruvate, and this endogenous energy reserve facilitated characterization of phosphotransferase system activities in physiologically intact cells. Data obtained from transport studies with whole cells and from in vitro phosphotransferase system assays with permeabilized cells revealed that the lac-PTS had a high affinity for beta-galactosides (e.g., lactose, lactulose, lactobionic acid, and arabinosyl-beta-D-galactoside). lac-PTS and P-beta-gal activities were determined in wild-type strains and strains defective in the glucose-phosphoenolpyruvate-dependent phosphotransferase system after growth on various sugars and in the presence of potential inducers. We found that (i) the lac genes (i.e., the genes coding for the lac-PTS proteins and P-beta-gal) were induced by metabolizable and non-metabolizable beta-galactosides (presumably acting as their phosphorylated derivatives), (ii) galactose 6-phosphate was not an inducer in most strains, (iii) the ratio of lac-PTS activity to P-beta-gal activity in a given strain was not constant, and (iv) inhibition of lac gene expression during growth on glucose was a consequence of glucose-phosphoenolpyruvate-dependent phosphotransferase system-mediated inducer exclusion, repressive effects of a functional glucose-phosphoenolpyruvate-dependent phosphotransferase system and glucose-derived metabolites. The expression of the lac-PTS structural genes and the expression of the P-beta-gal gene are independently regulated and may be subject to both positive control and negative control.

Enzyme Induction↗

Regulation and characterization of the galactose-phosphoenolpyruvate-dependent phosphotransferase system in Lactobacillus casei.

Cells of Lactobacillus casei grown in media containing galactose or a metabolizable beta-galactoside (lactose, lactulose, or arabinosyl-beta-D-galactoside) were induced for a galactose-phosphoenolpyruvate-dependent phosphotransferase system (gal-PTS). This high-affinity system (Km for galactose, 11 microM) was inducible in eight strains examined, which were representative of all five subspecies of L. casei. The gal-PTS was also induced in strains defective in glucose- and lactose-phosphoenolpyruvate-dependent phosphotransferase systems during growth on galactose. Galactose 6-phosphate appeared to be the intracellular inducer of the gal-PTS. The gal-PTS was quite specific for D-galactose, and neither glucose, lactose, nor a variety of structural analogs of galactose caused significant inhibition of phosphotransferase system-mediated galactose transport in intact cells. The phosphoenolpyruvate-dependent phosphorylation of galactose in vitro required specific membrane and cytoplasmic components (including enzyme IIIgal), which were induced only by growth of the cells on galactose or beta-galactosides. Extracts prepared from such cells also contained an ATP-dependent galactokinase which converted galactose to galactose 1-phosphate. Our results demonstrate the separate identities of the gal-PTS and the lactose-phosphoenol-pyruvate-dependent phosphotransferase system in L. casei.

Adenosine Triphosphate↗

Intracellular hexose-6-phosphate:phosphohydrolase from Streptococcus lactis: purification, properties, and function.

An intracellular hexose 6-phosphate:phosphohydrolase (EC 3.1.3.2) has been purified from Streptococcus lactis K1. Polyacrylamide disc gel electrophoresis of the purified enzyme revealed one major activity staining protein and one minor inactive band. The Mr determined by gel permeation chromatography was 36,500, but sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed a single polypeptide of apparent Mr 60,000. The enzyme exhibited a marked preference for hexose 6-phosphates, and the rate of substrate hydrolysis (at 5 mM concentration) decreased in the order, galactose 6-phosphate greater than 2-deoxy-D-glucose 6-phosphate greater than fructose 6-phosphate greater than mannose 6-phosphate greater than glucose 6-phosphate. Hexose 1-phosphates, p-nitrophenylphosphate, pyrophosphate, and nucleotides were not hydrolyzed at a significant rate. In addition, the glycolytic intermediates comprising the intracellular phosphoenolpyruvate potential in the starved cells (phosphoenolpyruvate and 2- and 3-phosphoglyceric acids) were not substrates for the phosphatase. Throughout the isolation, the hexose 6-phosphate:phosphohydrolase was stabilized by Mn2+ ion, and the purified enzyme was dependent upon Mn2+, Mg2+, Fe2+, or Co2+ for activation. Other divalent metal ions including Pb2+, Cu2+, Zn2+, Cd2+, Ca2+, Ba2+, Sr2+, and Ni2+ were unable to activate the enzyme, and the first four cations were potent inhibitors. Enzymatic hydrolysis of 2-deoxy-D-glucose 6-phosphate was inhibited by fluoride when Mg2+ was included in the assay, but only slight inhibition occurred in the presence of Mn2+, Fe2+, or Co2+. The inhibitory effect of Mg2+ plus fluoride was specifically and completely reversed by Fe2+ ion. The hexose 6-phosphate:phosphohydrolase catalyzes the in vivo hydrolysis of 2-deoxy-D-glucose 6-phosphate in stage II of the phosphoenolpyruvate-dependent futile cycle in S. lactis (J. Thompson and B. M. Chassy, J. Bacteriol. 151:1454-1465, 1982).

Cations, Divalent↗