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S Tomonaga

Publications and source records attributed to S Tomonaga.

At least 19 recordsLinked to original sources

Differences in catecholamine metabolism and behaviour in neonatal broiler and layer chicks.

1. To clarify the difference in behavioural activities and catecholamine metabolism between layer and broiler-type chicks two experiments were conducted. 2. In experiment 1, 1-d-old male layer and broiler chicks were placed in an open-field area and their responses were investigated for 10 min. The responses of the two strains were remarkably different, with broilers being less active than layers. Vocalisations rapidly decreased in broilers whereas those of layers remained elevated during the 10 min. 3. In experiment 2, 1-d-old chicks of both strains were killed and brain catecholamine concentrations were determined in three parts of the brain: telencephalon, optic lobe and brain stem. 4. In the whole brain, dopamine (DA) and dihydroxyphenylacetic acid (DOPAC) were significantly higher in broilers. However, the values for norepinephrine (NE), epinephrine (E) and 4-hydroxy-3-methoxyphenylacetic acid (HVA) were similar between strains. The ratios of metabolite/precursor were also calculated: HVA/DOPAC was higher in layers, while NE/DA, E/NE and DOPAC/DA were not significantly different between strains. 5. These results suggest that behavioural activities differ greatly, while there are some differences in catecholamine metabolism between the two strains.

3,4-Dihydroxyphenylacetic Acid↗

Intracerebroventricular administration of GABA-A and GABA-B receptor antagonists attenuate feeding and sleeping-like behavior induced by L-pipecolic acid in neonatal chicks.

It has been demonstrated that L-pipecolic acid (L-PA), a major metabolic intermediate of L-lysine (L-Lys) in the mammalian and chicken brain, is involved in the functioning of the GABAergic system. A previous study has shown that intracerebroventricular (i.c.v.) injection of L-PA suppressed feeding and induced sleep-like behavior in neonatal chicks; however, the precise relationship between the GABAergic system and L-PA has not been clarified. In the present study, the role of the GABA-A or GABA-B receptors in the suppression of food intake and induction of sleeping-like behavior by L-PA was investigated. Chicks were injected i.c.v. with the GABA-A antagonist picrotoxin or GABA-B antagonist CGP54626 along with L-PA. Although suppression of food intake by L-PA was restored partially by co-injection with CGP54626, but not picrotoxin, sleep-like behavior induced by L-PA was suppressed significantly by both antagonists. These results suggested that L-PA activated both GABA-A and GABA-B receptors, and GABA-B receptors alone contributed to food intake whereas both receptors contributed to sleep-like behavior.

Animals↗

Component C3 of hagfish complement has a unique structure: identification of native C3 and its degradation products.

A protein from hagfish serum that cross-reacted with the third component of hagfish complement (C3) was purified to homogeneity and its structural properties were compared with those of C3 which has a two-subunit chain structure (115 and 72 kDa). This protein (designated C3b), when purified from plasma, consisted of three disulfide-linked polypeptide chains (77, 72 and 30 kDa). On immunoelectrophoresis, purified C3b migrated more rapidly towards the anode than the beta mobility of C3. However, immunochemical analysis revealed that C3b, after the first step in its purification, consisted of two disulfide-linked polypeptide chains (105 and 72 kDa). Treatment of C3b with methylamine, prior to spectrophotometric titration of the free sulfhydryl groups, did not significantly affect the end-point of the titration, suggesting the absence of a thioester bond in this molecule. Analysis of the amino acid sequences of the amino-termini of the subunits of C3b revealed that 77 amino acid residues at the amino-terminus of the native alpha chain were missing from both the 77-kDa and the 105-kDa polypeptides from C3b. These results indicate that the C3b in this study was analogous to mammalian C3b. Furthermore, amino acid sequencing data indicated that most of the native C3 from hagfish serum has an irregular two-subunit (alpha+gamma and beta)-linked structure, as a result of one-sided processing of putative hagfish pro-C3 at the beta-alpha processing site exclusively. Moreover, it appears that only the molecular features of degenerated hagfish C3 (C3b) are altered during its purification to generate a three-chain structure.

Amino Acid Sequence↗

Immunohistochemical localization and biological significance of the phylogenically conserved thymus-brain antigen (UB-13 antigen) in skate, rat and human.

A monoclonal antibody (UB-13) originally raised against the brain of the skate (Raja kenojei, a cartilaginous-fish) was found to react with lymphoid and brain tissues from many species when examined immunohistochemically. In rat and human thymus, UB-13 antigen was observed to be closely associated with reticular tissue in the medulla and cortex. Interestingly, a few or several thymocytes were encircled by the UB-13-reactive reticular tissue. At 14 days gestation, rat thymus consisted mainly of reticular epithelial tissue, after which strong thymocyte production started. At this stage, some of the reticular tissue was heavily stained with UB-13. In the thymus tissues of the irradiated and recovering rats, where reduction and massive reproduction of thymocytes were observed, extensive UB-13 antigen expression localized on the reticular epithelial tissue, an observation which may support the thymocyte re-population. These findings suggest that the antigen recognized by UB-13 may be important for thymocyte proliferation and maturation. UB-13 antigen was found in the fibrous structure of the molecular and granular layer of the human cerebellum. Some glial cells were also stained strongly with UB-13 in the human cerebellar or cerebral grey and white matter. In rat, glial cells, especially astroglias, and the endothelial structure of blood vessels were stained strongly with UB-13. These findings suggest that UB-13 may be a useful monoclonal antibody for analysis of brain-lymphoid antigen in many species.

Adult↗

Isolation and characterization of a protein from hagfish serum that is homologous to the third component of the mammalian complement system.

The 192-kDa protein HX, a major component of serum that specifically binds to zymosan particles, was prepared from the plasma of the hagfish (Eptatretus burgeri) by ion-exchange chromatography and gel filtration. HX, present at a concentration of 0.8 mg/ml in the original plasma, was composed of two distinct subunits of 115 kDa and 77 kDa, respectively, which were linked by disulfide bonds. The protein had the same electrophoretic mobility as beta-globulin. Digestion by trypsin resulted in a specific cleavage of the 115-kDa subunit and a change in its immunoelectrophoretic mobility in the anodal direction, leaving the 77-kDa subunit intact. Treatment with SDS and urea resulted in the splitting of the 115-kDa subunits into 68-kDa and 45-kDa components, but this splitting was inhibited by pretreatment with methylamine, suggesting the presence of a thiol ester bond in the 115-kDa subunit. The amino acid composition of HX revealed a striking resemblance to that of human C3. We conclude, therefore, that the 192-kDa protein isolated in this study is analogous to C3, which plays a key role in the mammalian C system.

Amino Acid Sequence↗

Isolation of a hagfish gene that encodes a complement component.

It has been widely accepted that cyclostomes are the most primitive vertebrates extant with the ability to produce antibodies. We isolated cDNA clones that encode a putative 'antibody' from one of the cyclostomes, Eptatretus burgeri. The amino acid sequence predicted from the nucleotide sequences of the cDNA clones indicated that this gene does actually encode the proteins isolated as hagfish 'antibodies' by various investigators. However, these proteins are not similar to mammalian immunoglobulins but have some characteristics common to complements C3, C4 and C5 in higher vertebrates. We discuss the relationships of the isolated gene for hagfish complement with the mammalian genes for complements C3, C4 and C5. We also discuss the possibility of the presence of antibodies in cyclostomes.

Amino Acid Sequence↗

Plasma cells in the spleen of the Aleutian skate, Bathyraja aleutica.

Splenic white pulp of the Aleutian skate (Bathyraja aleutica), an elasmobranch, was investigated using light and transmission electron microscopy. The major cellular constituent was plasma cells, of the typical Marshalko type, characterized by well developed rough-endoplasmic reticulum and a Golgi complex. The morphology of the rough-endoplasmic reticulum was variable, being lamellar in some cells and spherical in others. Plasma cells with distended cisternae of rough-endoplasmic reticulum and cells with Russel bodies were often observed. Only a small number of lymphocytes were encountered. These findings indicate that the splenic white pulp is the major site for immunoglobulin production in this fish, thus confirming our previous immunocytochemical observation. Globules presumably containing immunoglobulin were found consistently associated with the Golgi complex. The secretion mechanism of immunoglobulin by plasma cells is discussed in connection with the globules.

Animals↗

The second immunoglobulin class is commonly present in cartilaginous fish belonging to the order Rajiformes.

Six species of cartilaginous fish distributed into four orders, Rajiformes (skates and guitarfishes), Myliobatiformes (rays), Heterodontiformes (sharks) and Carcharhiniformes (sharks), were investigated for the possible presence of a second class of immunoglobulin (Ig) other than IgM. Among those orders, fish belonging to the order Rajiformes were found to have a second Ig (IgR) with a non-covalently associated dimeric structure in which the H chain was different from that of IgM in mol. wt and antigenicity. Cartilaginous fish belonging to the other orders investigated had only one class of IgM.

Animals↗

Ontogenic studies on the appearance of two classes of immunoglobulin-forming cells in the spleen of the Aleutian skate, Bathyraja aleutica, a cartilaginous fish.

We identified the presence in the Aleutian skate, Bathyraja aleutica, of two classes of immunoglobulins (Ig), a high molecular weight Ig analogous to mammalian IgM and a low molecular weight Ig, similarly to the spiny rasp skate, Raja kenojei, (Kobayashi, K. et al., Mol. Immunol. 1984. 21: 397), using an immunological cross-reaction with the specific antisera to the spiny rasp skate Ig components. The antigenic similarity of the heavy chains of the Ig of the Aleutian skate and those of the spiny rasp skate was less than that between their light chains. Two types of Ig-producing cells, one producing the high molecular weight and the other forming the low molecular weight Ig, were present in the spleen of embryos and adults in the Aleutian skate at a ratio of 5-6:4-5. The number of these Ig-producing cells increased with advancing development of the embryos but was 1/20 to 1/50 of those of adults. Cells, each of which were capable of forming both classes of Ig, were found in the spleen of embryos but not in that of adults. These results suggested that the spleen of the Aleutian skate is the primary lymphoid organ for B lymphocyte differentiation and proliferation, possibly equivalent to the bursa of birds.

Animals↗

Studies on immunoglobulin and immunoglobulin-forming cells in Heterodontus japonicus, a cartilaginous fish.

Immunoglobulin (Ig), lymphoid tissues and Ig-forming cells of the Japanese bullhead shark, Heterodontus japonicus were analyzed biochemically, histologically and immunocytochemically. The serum of Heterodontus contains two Igs with different molecular weights one with 900 K and the other with 180 K daltons. Heavy chains of the two Igs showed an identical molecular weight of 68 K and the same antigenicity, indicating that the two Igs belong to the same class with different molecular structure. Light chains of Heterodontus Igs showed two distinct bands using sodium dodecyl sulfate-polyacrylamide gel electrophoresis, one with the molecular weight of 25 K and the other with 22 K daltons. The latter finding indicates the possible existence of two light chain types in the Heterodontus Igs. White pulp of the spleen appeared as a well-developed lymphoid tissue accompanied large number of Ig-forming cells especially around blood vessels. Massive lymphocytic aggregations were found in the central area of the intestinal valves and certain lymphoid cells were demonstrated to be Ig-forming cells. Ig-forming cells were also observed in the epigonal organ, although the frequency was much less than in the former two tissues. Although the spleen is the major Ig-forming organ in Heterodontus japonicus, the valvular intestine and the epigonal organ also appear to share the function of Ig production.

Animals↗

Isolation and characterization of immunoglobulin of hagfish, Eptatretus burgeri, a primitive vertebrate.

The immunoglobulin of the hagfish, Eptatretus burgeri, one of the most primitive vertebrates extant, was isolated from the serum of non-immune normal adult hagfish in a pure form. Analysis of the immunoglobulin by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) under reducing condition indicated that the immunoglobulin was composed of heavy (H) and light (L) chains. The mol. wt of the H-chain was 68,000, slightly smaller than that of the human mu-chain. The L-chain of the immunoglobulin appeared as 2 bands on SDS-PAGE, with mol. wts of 25,000 and 22,000. These findings were confirmed by gel filtration of reduced-alkylated immunoglobulin in 5 M guanidine-HCl. The H:L molar ratio of the immunoglobulin was roughly 1:1. Gel filtration of the immunoglobulin in non-dissociating buffer indicated that the mol. wt of the intact immunoglobulin was 150,000-160,000. Thus, the subunit chain composition of the immunoglobulin was assumed to be H2L2, identical with the fundamental structure of immunoglobulins. The instability of the hagfish immunoglobulin was ascertained by the fact that it dissociated into heterogeneous mol. wt components ranging from approx. 90,000 to 160,000 upon SDS-PAGE under non-reducing conditions. However, almost no free or monomeric H- or L-chains were dissociated from the immunoglobulin by this procedure and also by gel filtration in 5 M guanidine-HCl. Theses results indicated that the hagfish immunoglobulin is unusually labile in its tertiary structure but has disulfide binding between at least more than 2 subunit chains.

Animals↗

J-chain-like component in 18-S immunoglobulin of the skate Raja kenojei, a cartilaginous fish.

A J-chain was found in the IgM, an 18-S pentameric immunoglobulin, of the skate, Raja kenojei, a cartilaginous fish, by means of gel filtration-column chromatography of reduced and radioalkylated immunoglobulin, followed by alkaline-urea polyacrylamide gel electrophoresis. The J-chain showed an electrophoretic mobility equivalent to that of the light chain, and much slower than that of the J-chain in human IgM. Its electrophoretic banding patterns, however, were different from those of the light chain. Its mol. wt of 17,500 was close to that of mammalian J-chain. The J-chain was not found in another immunoglobulin of the skate, a 9-S dimer held by a noncovalent force. No immunological cross-reactivity was observed between the skate J-chain and human and chicken J-chains. In view of these findings, it was concluded that the J-chain in the skate IgM is both electrophoretically and antigenically considerably different from the J-chain in mammalian IgM.

Animals↗

Two populations of immunoglobulin-forming cells in the skate, Raja kenojei: their distribution and characterization.

We recently reported the presence in the skate, Raja kenojei, of two immunoglobulins, a high molecular weight immunoglobulin analogous to mammalian IgM, and a low molecular weight immunoglobulin belonging to a hitherto undescribed class. In view of these findings, we studied lymphoid organs of the skate using morphological and immunocytochemical means. The spleen and the intestinal mucosa had numerous plasma cells and lymphocytes, while the Leydig organ of the esophagus, the epigonal organ and the liver contained these cells in a much lesser frequency. Immunocytochemical studies proved these plasma cells and some of the lymphocytes to be immunoglobulin-forming cells. Double immunofluorescence staining of the spleen and other lymphoid tissues demonstrated the occurrence at a 1: 1 ratio of two distinct populations of cells, one forming the high molecular weight immunoglobulin and the other producing the low molecular weight immunoglobulin.

Animals↗

A second class of immunoglobulin other than IgM present in the serum of a cartilaginous fish, the skate, Raja kenojei: isolation and characterization.

A second class of immunoglobulin, in addition to a pentameric immunoglobulin analogous to mammalian IgM, was found in the serum of a cartilaginous fish, the skate, Raja kenojei. The immunoglobulin was a non-covalently associated dimer with a sedimentation coefficient of 8.9S and a mol. wt of 320,000. Its heavy chain had a mol. wt of 45,000-50,000, smaller than that of the heavy chain (mol. wt 70,000) of the skate IgM, and had its own specific antigenic determinants. The immunoglobulin was synthesized in plasma cells different from those that produced the IgM. These results provide evidence that, contrary to the prevailing view, the divergence of immunoglobulin class occurred as early in evolution as the cartilaginous fish, a primitive vertebrate.

Animals↗

A case of Maffucci's syndrome associated with primary hyperparathyroidism.

Maffucci's syndrome (association of multiple enchondromatosis and multiple hemangiomata) is rarely associated with other ectodermal tumors. The present case is the second in literature in which the Maffucci's syndrome is associated with the parathyroid adenoma resulting in primary hyperparathyroidism. Although the cystic lesions of the bone and the ectopic calcifications are common to both diseases, pathogenesis apparently not related. The association of parathyroid adenoma with Maffucci's syndrome suggests the potential involvement of mesenchymal organs in this ectodermal neoplastic disorder.

Adenoma↗