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Biomedical subjects

S Hamada

Publications and source records attributed to S Hamada.

At least 487 records · Page 27Linked to original sources

Increase in liver nuclear tri-iodothyronine receptors associated with increased deoxyribonucleic acid by long-term administration of tri-iodothyronine in thyroidectomized rats.

The effect of long-term administration of small amounts of tri-iodothyronine was examined on the nuclear tri-iodothyronine receptors in rat liver. The maximal binding capacity (C(max.)) and association constant (K(a)) of the receptors were determined in thyroidectomized rats given vehicle alone (group A), 2mug of tri-iodothyronine/100g body wt. (group B) or 7mug of tri-iodothyronine/100g body wt. (group C) for 2 weeks. Scatchard analyses with correction for the amount of endogenous tri-iodothyronine revealed that C(max.) values per g of liver were increased to 1.5 and 2.7 times the control value in groups B and C respectively. Since concentrations of DNA per g of liver were significantly increased in the two groups of hormone-treated rats, C(max.) values per mg of DNA were nearly the same in group B, but still increased significantly in group C compared with group A. K(a) values remained unchanged in all three groups of animals. Mitochondrial alpha-glycerophosphate dehydrogenase activity was 9.6 and 28.7 times as high in groups B and C, respectively, as in group A. Concentrations of endogenous tri-iodothyronine bound to non-histone protein were substantially increased in groups B and C, although concentrations of serum tri-iodothyronine remained rather low. The results obtained indicate that the long-term administration of tri-iodothyronine in small doses induces an increase in the nuclear receptors associated with increased DNA with and without accompanying a relative increase in the receptor concentration in thyroidectomized rats. Also the hormonal effect is closely related to the total number of the nuclear receptors and the concentrations of nuclear tri-iodothyronine bound to the receptors rather than the serum tri-iodothyronine concentrations.

Animals↗

Tri-iodothyronine-induced increase in rat liver nuclear thyroid-hormone receptors associated with increased mitochondrial alpha-glycerophosphate dehydrogenase activity.

The effect of tri-iodothyronine injection on the nuclear tri-iodothyronine receptor (putative thyroid-hormone receptor) was examined in rat liver. Nuclear receptors were extracted from isolated nuclei with 0.4 M-KCl, and their association constants (Ka) and maximal binding capacities (Cmax.) were determined by Scatchard analyses with and without correction for the endogenous hormone. The amount of endogenous tri-iodothyronine bound to non-histone protein was estimated on the basis of the specific radio-activity of [125I]tri-iodothyronine injected 2 h before the rats were killed. It was demonstrated that Cmax. of the nuclear receptors was 2.5-fold higher in severely hyperthyroid than in hypothyroid rats. However, irrespective of the thyroid status, the Ka of the receptors remained unchanged when corrected for endogenous tri-iodothyronine bound to non-histone protein. The validity of the correction was supported by experiments in vitro in which nuclear receptors were preincubated with unlabelled tri-iodothyronine. The increase in Cmax. of nuclear receptors was directly related to mitochondrial alpha-glycerophosphate dehydrogenase activity. These results suggest a hormonal modulation of the nuclear receptors which is associated with hormonal action.

Animals↗

Sequential changes in rat liver nuclear tri-iodothyronine receptors and mitochondrial alpha-glycerophosphate dehydrogenase activity after administration of tri-iodothyronine.

The dynamics of the induction of nuclear tri-iodothyronine receptors and mitochondrial alpha-glycerophosphate dehydrogenase were studied in rat liver after a single injection of tri-iodothyronine. The maximal binding capacity (C(max.)) and association constant (K(a)) of the nuclear receptors were determined by Scatchard analyses with and without correction for the endogenous tri-iodothyronine measured by radioimmunoassay. The administration of tri-iodothyronine induced sequential increases in the concentration of nuclear receptors and alpha-glycerophosphate dehydrogenase activity in the liver. The nuclear-receptor concentration was increased to 2.5 times that in the hypothyroid rat 1 day after the administration of hormone, and then decreased, with a half-life of about 2 days. alpha-Glycerophosphate dehydrogenase activity changed in parallel with the nuclear-receptor concentration, showing a delayed response. The total amount of non-histone protein in the liver was significantly increased 3 days after the administration. It seems likely therefore that the tri-iodothyronine-induced increase in nuclear-receptor concentration is responsible, at least in part, for the induction of this enzyme. The possibility is also suggested that nuclear receptors may be one of the non-histone proteins selectively synthesized at an early stage of the hormonal stimulation. Throughout the time course, the K(a) values of the nuclear receptors for tri-iodothyronine remained unchanged, when corrected for endogenous tri-iodothyronine bound to the non-histone proteins, although they were apparently changed when the correction was not made. The results obtained provide further evidence for hormonal modulation of the nuclear receptors which is closely linked with the hormonal effect.

Animals↗

Serotype-dependent inhibition of glucan synthesis and cell adherence of Streptococcus mutans by antibody against glucosyltransferase of serotype e S. mutans.

A crude glucosyltransferase (GTase) preparation was obtained from the culture supernatant of Streptococcus mutans strain MT703 (serotype e) by 50% ammonium sulphate precipitation. Antiserum specific against the GTase was prepared by immunizing rabbits intramuscularly with the GTase in Freund incomplete adjuvant, followed by GTase without adjuvant intravenously. Gamma globulin fractions of the antiserum and normal serum were partially purified by 1/3 saturated ammonium sulphate precipitation. The antibody strongly inhibited the GTase activity (greater than 90%) of type c, e and f S. mutans, whereas the GTase of type a, d and g was not affected by the antibody. The GTase from type b S. mutans was slightly inhibited. The adherence of viable cells of type c, e, and f S. mutans to a glass surface due to synthesis of glucan by the cell-associated GTase was also significantly inhibited by the antibody to the enzyme. These results suggest that type c, e, and f and types a, d, and g S. mutans can be separated into two major groups in terms of the immunological relationship of GTase.

Antibodies, Bacterial↗

Chemical composition of Streptococcus mutans cell walls and their susceptibility to Flavobacterium L-11 enzyme.

The susceptibility to a cell wall lytic L-11 enzyme from Flavobacterium sp. and the quantitative and/or qualitative composition of the cell walls of some strains of cariogenic Streptococcus mutans and a non-cariogenic strain of Streptococcus mitis were determined. The purified cell walls of S. mutans strains HS-1 (serotype a), BHT (b), NCTC10449 (c), C67-1 (c), C67-25 (c), OMZ 176 (d), MT703 (e), MT557 (f), OMZ65 (g), and AHT (g), and S. mitis CHT contained glutamic acid, alanine, and lysine as well as muramic acid and glucosamine as a peptidoglycan component. Besides these amino acids, significant amounts of threonine were detected in strains HS-1, OMZ65, and AHT cell walls, and considerable amounts of aspartic acid and/or threonine as well as several other amino acids in OMZ176, OMZ65, and CHT cell walls. Rhamnose was a common special component of the cell walls of S. mutans strains BHT, NCTC10449, MT703, B2 (e), MT557, and AHT, and S. mitis CHT. An additional sugar component, glucose, was detected in the cell walls of all of these strains except BHT, and galactose was found in BHT, AHT, and CHT cell walls. Galactosamine was present in S. mitis CHT cell walls. Varying amounts of phosphorus were detected in the cell walls of all the strains examined. The cell walls of all these streptococcal strains except MT703, 6715, and AHT were susceptible to the lytic action of the L-11 enzyme to various extents. No consistent relationship was observed between the amino acid and sugar composition of these cell walls and their susceptibility to the L-11 enzyme. The chemical composition of these cell walls is discussed in terms of the serological classification of S. mutans.

Amino Acids↗