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Biomedical subjects

T Kitagawa

Publications and source records attributed to T Kitagawa.

At least 793 records · Page 44Linked to original sources

Resonance Raman scattering from hemoproteins. Effects of ligands upon the Raman spectra of various C-type cytochromes.

Resonance Raman spectra were measured for various C-type cytochromes (mammalian cytochrome c, bacterial cytochrome c3, algal photosynthetic cytochrome f, and alkylated cytochrome c) and a B-type cytochrome (cytochrome b5) in their reduced and oxidized states. (1) For ferrous alkylated cytochrome c, a Raman line sensitive to the replacement of an axial ligand of the heme iron uas found around 1540 cm=1. This ligand-sensitive Raman line indicated the transition from acidic (1545 cm-1) to alkaline (1533 cm-1) forms with pK 7.9. The pH dependence of the Raman spectrum corresponded well to that of the optical absorption spectra. (2) For ferrous cytochrome f, the ligand-sensitive Raman line was found at the same frequency as cytochrome c (1545 cm-1). Accordingly two axial ligands are likely to be histidine and methionine as in cytochrome c. (3) For ferrous cytochrome c3, the frequency of the ligand-sensitive Raman line was between those of cytochrome c and cytochrome b5. Since two axial ligands of the heme iron in cytochrome c3 might be histidines. However, a combination of histidine and methionine as a possible set of two axial ligands was not completely excluded for one or two of the four hemes. (4) In ferrous cytochrome b5, two weak Raman lines appeared at 1302 and 1338 cm-1 instead of the strongest band at 1313 cm-1 of C-type ferrous cytochromes. This suggests the practical use of these bands for the identification of types of cytochromes. The difference in frequency and intensity between B- and C-types of hemes implies that the low effective symmetry of the heme in ferrous cytochrome c is due to vibrational coupling of ring modes with peripheral substituents rather than geometrical disortion of heme.

Alkylation↗

Gas-liquid chromatography of phenylalanine and its metabolites in serum and urine of various hyperphenylalaninemic subjects, their relatives, and controls.

Phenylalanine and its metabolites were determined in serum and urine of phenylketonuric subjects and in subjects with milder hyperphenylalaninemia in whom blood phenylalanine concentrations were usually less than 200 mg/liter. Metabolite concentrations were related to serum phenylalanine, and in hyperphenylalaninemic subjects were between those for treated and untreated phenylketonuric subjects. Phenyllactic and phenylpyruvic acids were excreted by all of the mild hyperphenylalaninemic subjects except for the youngest (one-year-old twins) and the only subject with a serum phenylalanine of less than 100 mg/liter. Serum and urinary metabolites of heterozygotes of both conditions were similar before and after a phenylalanine load. The similar pattern of metabolites in phenylketonuric and mild hyperphenylalaninemic subjects reinforces the belief that the latter have some phenylalanine hydroxylase activity, and that this is the essential difference between the two groups.

Adolescent↗

Interstitial nephritis with concomitant uveitis. Report of two cases.

In two female pediatric cases of uveitis with proteinuria and glycosuria, kidney biopsy demonstrated the presence of interstitial nephritis. Peripheral leukocytes responded positively in vitro in the leukocyte migration inhibition test with renal tubular antigen, thus suggesting the possibility that the patients' lymphocytes infiltrating into the renal parenchyma might be sensitized against the renal tubular antigen. Urinary beta2-microglobulin was also demonstrable and its levels correlated fairly well with the clinical course of uveitis in both cases.

Adolescent↗

Unscheduled DNA synthesis in cells from N-2-fluorenylacetamide-induced hyperplastic nodules of rat liver maintained in a primary culture system.

The level of unscheduled DNA synthesis in the parenchymal cells from hyperplastic nodules and from the entire liver of rats fed N-2-fluorenylacetamide was studied and compared with that of normal liver cells. Measurements of unscheduled DNA synthesis were carried out by the use of a primary liver cell culture system. Livers were perfused with collagenase, the cells from individual hyperplastic nodules, and/or from the whole liver aspirated and plated onto plastic Petri dishes. Simultaneous histochemical measurements of beta-glucuronidase were carried out in the cultured cells as an aid in distinguishing functional cell types. The cells from hyperplastic nodules obtained from the liver during carcinogen feeding survived much longer than normal liver cells in culture. The level of unscheduled DNA synthesis was determined radioautographically after exposing cells to ultraviolet light and incubating with [3H]thymidine. [3H]Thymidine labeling was variable among individual nodules or animals and fluctuated as a function of the number of days in culture. In general, however, the level of unscheduled DNA synthesis in the cells from hyperplastic nodules was always higher than or similar to that of normal liver cells. Thus, the cells of hyperplastic nodules are not more readily transformed into the malignant state than normal cells as a result of their lowered DNA repair mechanisms.

2-Acetylaminofluorene↗

Immunohistochemical demonstration of serine dehydratase in rat liver.

Serine dehydratase (L-serine hydro-lyase, EC 4.2.1.13) WAS DEMONSTRATED IN LIVER TISSUE OF RATS BY AN INdirect immunofluorescent method. In the adult rat liver, serine dehydratase was localized to periportal hepatocytes, diffusely in their cytoplasm. The enzyme-specific fluorescence was absent or extremely low in the centrolobular hepatocytes. It was not demonstrated in nonparenchymal cells. Feeding a 90% protein diet for 5 days caused marked induction of this enzyme in the periportal and midzonal hepatocytes but no induction in the centrolobular hepatocytes. In the newborn rat liver, there was no apparent intralobular heterogeneity seen in the distribution of serine dehydratase, either before or after dietary induction. After 1 week of age, there was a gradual development of the intralobular hetero-geneity of the enzyme, which was emphasized by dietary stimulation. A comparative study of the induction pattern between the livers of intact and adrenalectomized rats suggested that there is no heterogeneity among serine-dehydratase-positive cells with respect to hormonal regulation of this enzyme by either glucagon or cortisone.

Adrenal Glands↗

The regulation of serine dehydratase and glucose-6-phosphatase in hyperplastic nodules of rat liver during diethylnitrosamine and N-2-fluorenylacetamide feeding.

Changes in the levels of serine dehydratase and glucose-6-phosphatase induced by dietary stimuli or starvation in hyperplastic nodules of rat liver during diethylnitrosamine or N-2-fluorenylacetamide feeding were studied by immuno- and enzyme histochemical methods. The study was performed during carcinogenesis through a combined method of enzyme histochemistry and radioautography. Serine dehydratase was observed diffusely in the cytoplasm of the original hepatocytes in the periportal zone and was induced markedly during diethynitrosamine feeding but only slightly during N-2-fluorenylacetamide feeding. The enzyme was deficient and not inducible in hyperplastic nodules during their developing phase. Later during the feeding period, however, there was an elevation of the level of serine dehydratase and its inducibility with time in the majority of the nodules. A good correlation was observed between serine dehydratase and glucose-6-phosphatase in their elevated levels and response to enviornmental stimuli. There was a minor group of hyperplastic nodules in which the deficiencies of these enzymes persisted and enzyme induction was not observed. A greater number of hyperplastic nodules with persistent enzyme deficiency was seen during diethylnitrosamine carcinogenesis. These results provide further information about the changing biological nature of hyperplastic nodules with respect to their metabolic adaptability and enzyme levels during hepatocarcinogenesis.

Animals↗