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Biomedical subjects

K Toyoshima

Publications and source records attributed to K Toyoshima.

At least 145 records · Page 8Linked to original sources

Similarity, in molecular structure and function, between the plant toxin purothionin and the mammalian pore-forming proteins.

Many proteins containing domains of a cysteine-rich repeated motif, such as epidermal growth factor (EGF), have been reported. Here we report strong similarity between the amino acid sequence of a plant toxin--i.e., purothionin and its homologues--and with those of a domain found in mammalian pore-forming cytoplasmic proteins: components of complement and perforin of cytotoxic T-lymphocytes or natural killer-like cytotoxic cells. These similar sequences were found to be identical to the so-called EGF-like cysteine-rich repeated motif itself. Electron-microscopic observations indicated that, like complement and perforin, purothionin forms pores in the cytoplasmic membrane of target cells, resulting in their death within a few hours. On the basis of these sequence comparisons and physiological functions, we propose a scheme for the evolution of proteins containing modules of the cysteine-rich repeat motif.

3T3 Cells↗

Expression and characterization of kinase-active v-erbB protein using a baculovirus vector system.

The v-erbB gene is an oncogene of the avian erythroblastosis virus encoding a protein that is a truncated version of the epidermal growth factor receptor. The v-erbB protein was expressed alone or as polyhedrin-erbB fusion proteins using the Bombyx mori nuclear polyhedrosis virus vector. The expression level of the fusion protein whose polyhedrin portion consisted of only 8 amino-terminal amino acids was more than ten times higher than that of the non-fusion protein. Studies with tunicamycin showed that the recombinant v-erbB proteins were glycosylated. The recombinant protein autophosphorylated tyrosine residues, and phosphorylated a synthetic tyrosine-containing peptide and lipocortin I. These observations indicate that functional v-erbB protein can be expressed in silkworm-derived cells, and furthermore, that this system can be used for large-scale production.

Amino Acid Sequence↗

Characterization of the promoter region of the src family gene lyn and its trans activation by human T-cell leukemia virus type I-encoded p40tax.

The src family gene lyn is expressed preferentially in B lymphocytes but very little in normal T lymphocytes. Transcription of the lyn gene in T lymphocytes was shown to be induced by the p40tax protein encoded by human T-cell lymphotropic virus type I. For determination of the mechanism of p40tax-mediated trans activation, the transcriptional promoter region of the lyn gene was characterized. By endonuclease S1 mapping, the transcriptional initiation sites were identified within the 770-bp EcoRI-SacI fragment of the 5'-terminal portion of the human lyn gene. This fragment showed promoter activity when placed upstream of the bacterial chloramphenicol acetyltransferase gene and transfected into various cell lines. Nucleotide sequence analysis revealed that the lyn promoter region contained four GC box-like sequences but not a TATA or CCAAT box. In addition, it contained sequences characteristic of a cyclic AMP-responsive element, octamer-binding motif, PEA3-like motifs, and NF kappa B-binding motif-like sequence. Mutational analysis suggested that the octamer-binding motif sequence is of primary importance for the lyn promoter activity but that the other elements are not. Cotransfection of various chloramphenicol acetyltransferase constructs containing different length of the lyn promoter together with p40tax expression plasmids into Jurkat T cells showed that the sequence responsible for p40tax-induced transcription is present around the transcription initiation sites.

Base Sequence↗

Phosphorylation of the anti-oncogene products and control of the cell cycle.

To investigate the function of the RB protein, we have studied cellular RB binding proteins and protein kinases responsible for phosphorylation of the RB protein. (1) We purified a cellular RB-associated protein p56 which competes with SV40 large T antigen for binding to the RB protein. (2) In another experiment, we screened expression libraries of U937 monocytic leukemia cell line by West-Western method and obtained two cDNA clones that encode RB binding proteins. (3) The RB protein was found to be phosphorylated by cdk2 and MAP kinase in vitro. Most of the sites phosphorylated in vitro are the same as those phosphorylated in vivo and the time course of activation of cdk2 in the cell cycle were similar to that of phosphorylation of the RB protein.

Cell Cycle↗

Fine structure of the Herbst corpuscles in the lingual mucosa of the finch, Lonchura striata.

The ultrastructure of Herbst corpuscles in the lingual mucosa of the finch, Lonchura striata var. domestica, was examined by light and electron microscopy. Numerous Herbst corpuscles were found at the top of connective tissue papillae just beneath the dorsal epithelium. The Herbst corpuscle was composed of an outer capsule, inner core and central axon. The central axon was discoid in shape and immunoreactive for NSE-antiserum. The central axon was surrounded by compactly stacked layers of thin lamellae of lamellar cell processes. Since these lamellae did not completely encircle the axon as seen in cross sections, they displayed a symmetrical longitudinal cleft dividing the inner core into bilateral halves. Numerous axonal spines were seen to extend from the Y-axis of the axolemma into the cleft and occasionally into the cytoplasmic invagination of the lamellar cell body in the inner core. A number of clear and dense-cored vesicles were seen in the axoplasm near the base of axonal spines. Further, the omega-shaped coated invaginations were occasionally found on the axolemma near those places. These findings suggest that the area nearby the axonal spine in the central axon of the Herbst corpuscle is a site active both metabolically and functionally.

Animals↗

[Progress in oncogene and antioncogene research].

Recent progress in molecular biology of cancer revealed that mutations which potentiate the activities of proto-oncogenes create the oncogenes to force the growth of tumor cells. On the other hand, inactivation of antioncogenes results in the generations of tumor cells. The progression of many tumors to full malignancy requires both types of changes of the tumor cell genome.

Genes, Tumor Suppressor↗

Expression of the ret proto-oncogene in human medullary thyroid carcinomas and pheochromocytomas of MEN 2A.

We studied the expression of the ret proto-oncogene (proto-ret) in human medullary thyroid carcinomas (MTCs) and pheochromocytomas of multiple endocrine neoplasia type 2A (MEN 2A) by Northern blot analysis. Expression of the normal-sized transcripts was detected in all 12 MTCs and in 6 of 8 pheochromocytomas. In situ localization of proto-ret mRNA revealed that the signal was confined to the cytoplasm of MTC cells. By Southern blot analysis neither amplification nor gross genetic changes of proto-ret were found in the tumors. Although no transcripts were detected in the normal portion of the thyroid from one MEN 2A patient, faint signals were detected in normal adrenal glands by Northern blot analysis, probably due to minor populations of C-cells and chromaffin cells in specimens from which MTC and pheochromocytoma might later develop. Proto-ret may play an important role in differentiation of a specific cell lineage from neuroectoderm, and it may be involved in development of MEN 2A tumors.

Adrenal Gland Neoplasms↗

Oncogenic activation of murine mos protein kinase by DNA rearrangement of its N-terminal coding region.

An activated c-mos oncogene was detected by DNA transfection assay of hamster SHOK cells with DNAs from X-ray-induced mouse osteosarcoma. It was molecularly cloned by the cosmid rescue method and found to form transformed foci of SHOK cells. Genomic DNA sequencing revealed that in this oncogene the N-terminal coding region of the mouse proto-mos gene was deleted and replaced by a hamster-derived sequence in the primary transformant, suggesting that activation was due to the rearrangement during transfection. The gene product was about 37 kDa and was immunoprecipitated with anti-mos antibody from a lysate of a SHOK cell transfectant. This truncated mos (t-mos) gene transformed SHOK cells more effectively than v-mos. A chimeric gene construct of this hamster-derived upstream sequence and normal mouse c-mos also transformed SHOK cells at a lower level, whereas neither t-mos nor the chimeric c-mos gene transformed NIH3T3 cells appreciably. The high transforming efficiency of t-mos in SHOK cells was due not only to truncation of the coding region but also to its integration under a putative promoter sequence derived from the hamster genome. This is the first report of detection of an activated c-mos gene by DNA transfection assay.

Amino Acid Sequence↗

Transactivation of the TPA-responsive element by the oncogenic C-erbB-2 protein is partly mediated by protein kinase C.

The mutant c-erbB-2 gene encoding a protein with Glu instead of Val-659 in the transmembrane domain is able to transform NIH3T3 cells, while the wild type c-erbB-2 unless overexpressed does not. The mutant c-erbB-2 protein shows enhanced tyrosine kinase activity in vitro. Transient expression of this active c-erbB-2 stimulated the 12-O-tetradecanoylphorbol-13-acetate (TPA) response element, serum response element, and cyclic AMP response element. Particularly, stimulation of the TPA response element by active c-erbB-2 was prominent. In contrast, transient expression of wild type c-erbB-2 stimulated none of these elements. Transactivation of the TPA response element was also observed in a cell line that stably expresses active c-erbB-2. The active c-erbB-2-induced transactivation of the TPA response element was partially prevented either by down-regulation of protein kinase C or by the protein kinase C inhibitor H7. These results indicate that protein kinase C is partly involved in oncogenic signalling of the active c-erbB-2 protein that leads to Jun/Fos-mediated transcriptional activation in nuclei.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Purification and characterization of a rat liver membrane tyrosine-protein kinase, the possible protooncogene c-yes product, p60c-yes.

A tyrosine-protein kinase was purified more than 270-fold from the rat liver plasma membrane fraction by successive column chromatographies on Sephacryl S-300, wheat germ agglutinin-agarose, casein-Sepharose, and hydroxylapatite, followed by isoelectrofocusing electrophoresis. The enzyme with pI of 6.2 was a 60-kDa single polypeptide which represented 42% of total protein. The enzyme reacted quantitatively with a monoclonal antibody to the amino-terminal sequence (Cys-3 to Ser-66) specific to the human c-yes protein, but not with antibodies to the specific amino-terminal sequences of the c-src, fyn, and lck proteins. The purified enzyme contained almost no phosphotyrosine residue but was autophosphorylated with Mg.ATP exclusively at tyrosine residues with concomitant increase in the kinase activity. The rates of autophosphorylation of the enzyme and phosphorylation of tyrosine-glutamate (1:4) copolymers, catalyzed by the enzyme were proportional to the square of enzyme concentration, suggesting that p60c-yes undergoes autophosphorylation through intermolecular catalysis, resulting in stimulation of the enzyme activity. Although the enzyme reaction showed an essential requirement for Mg2+ or Mn2+ with optimal concentrations of 20 and 3 mM, respectively, autophosphorylation significantly activated the enzyme only in the presence of Mg2+. Autophosphorylation of the enzyme reduced the Km for tyrosine-glutamate copolymers and tubulin, but not for ATP, and increased the Vmax of copolymer and tubulin phosphorylation.

Animals↗

Scintigraphic detection of overexpressed c-erbB-2 protooncogene products by a class-switched murine anti-c-erbB-2 protein monoclonal antibody.

Class-switched monoclonal antibody SV2-61r recognized the extracellular domain of c-erbB-2 protooncogene products separate from the epidermal growth factor receptor. We studied the potential of SV2-61r for evaluating the amplification of c-erbB-2 protooncogene on cancer cells, which has been reported to have prognostic value in adenocarcinoma patients. Radiolabeled SV2-61r specifically bound to various adenocarcinoma cells in addition to c-erbB-2-transfected NIH-3T3 cells (A4) with the affinity constant of 4.4 x 10(8) M-1. SV2-61r injected i.v. localized well to A4 cells xenografted in nude mice. Tumor uptake and localization index of radioiodinated SV2-61r were lower than those of 111In-labeled SV2-61r, probably due to the internalization and dehalogenation of formed antibody-antigen complexes. Biodistribution and specificity of targeting were assessed by comparison among three cells, A4, lung cancer SBC-3 (c-erbB-2 weakly positive) and B-lymphoblastoid Manca cells (c-erbB-2 negative). Tumor:blood ratios, obtained 48 h after injection, were 5.63, 1.45, and 0.68, respectively, indicating the potential of 111In-labeled SV2-61r for evaluating the amplification of c-erbB-2 protooncogene on cancer cells. Because of its close relationship with carcinogenesis and the uniform expression, c-erbB-2 protooncogene products seem to be the optimal target of imaging and therapy of adenocarcinoma patients.

Animals↗

Association of B cell antigen receptor with protein tyrosine kinase Lyn.

Antigen is thought to cross-link membrane-bound immunoglobulins (Igs) of B cells, causing proliferation and differentiation or the inhibition of growth. Protein tyrosine kinases are probably involved in signal transduction for cell proliferation and differentiation. The Src-like protein tyrosine kinase Lyn is expressed preferentially in B cells. The Lyn protein and its kinase activity could be coimmunoprecipitated with IgM from detergent lysates. Cross-linking of membrane-bound IgM induced a rapid increase in tyrosine phosphorylation of at least ten distinct proteins of B cells. Thus, Lyn is physically associated with membrane-bound IgM, and is suggested to participate in antigen-mediated signal transduction.

Animals↗

Ultrastructure of the submandibular gland in the African multimammate rodent, Praomys natalensis.

Praomys natalensis, an African rodent that is phenotypically and cytogenetically intermediate to rats and mice, possesses a submandibular gland that is histologically similar to that in both of these near relatives, but is ultrastructurally unique. Acinar cells, which are seromucous in nature, contain secretory granules that often contain a perfect "bull's eye" inclusion (or some variant of this configuration) suspended in a dense matrix. The Golgi apparatus in these cells has an unusual structure, with the Golgi saccules often being doubled over, so that the outermost saccule also is the innermost. This peculiar architecture apparently arises fairly late in the secretory process, i.e., a Golgi apparatus of conventional structure gives rise to a nascent granule (condensing vacuole), then its saccules secondarily fold over. Intercalated ducts are preceded by a ring of specialized cells that have a number of serous-type granules, the duct cells themselves being devoid of such granules. Granular convoluted tubules (GCT) contain large dense granules that appear to be spontaneously involved in chain exocytosis. These GCT granules probably are the repositories of nerve growth factor, which is particularly abundant in Praomys. Striated ducts for the most part are typical in appearance, but they and, to a lesser extent, GCTs contain prominent, membrane-bound crystalloids with a periodicity of about 15 nm.

Animals↗

Ultrastructure of the sublingual gland in the African multimammate rodent.

The sublingual gland of Praomys natalensis, an African rodent that is phenotypically and cytogenetically intermediate to mice and rats, is a mixed gland, consisting of mucous acini that are capped by serous demilunes, of intercalated ducts, and of some short striated ducts that quickly become excretory ducts. The mucous cells are typical in appearance, with lucent granules that contain an assortment of scattered vermiform or particulate densities. The serous cells display an array of secretory granules with a highly unusual substructure. Rather than a pattern based on the manner in which light and dark regions are disposed in their matrix, these granules contain packets--some furled, some flat--of membranes that exhibit a pronounced axial periodicity of approximately 5 nm. Intercalated ducts are simple in structure, with no obvious morphological specializations. Striated ducts resemble those in the salivary glands of less exotic rodents, but they and the excretory ducts often have clusters of cytoplasmic crystalloids consisting of linear densities that intersect at right angles and that have a periodicity in both directions of approximately 12 nm.

Animals↗

Distribution of c-yes-1 gene product in various cells and tissues.

The distribution and degree of expression of c-yes-1 gene product in a variety of cell lines, human foetal tissues, and adult normal and malignant tissues were examined using immunohistochemical techniques. A murine monoclonal antibody 1B7 raised against a fusion protein consisting of 64 amino acid residues from the N-terminus of the c-yes-1 gene product and bacterial phosphate-binding protein (PBP) was used. At the ultrastructural level, the c-yes-1 gene product recognised by 1B7 was localised in the cytoplasm. Moderate to strong expression of the c-yes-1 gene product was observed in HT10-80 (fibrosarcoma). IN-1 (malignant lymphoma), Marcus (glioblastoma), TIG-1-20 (foetal skin fibroblast), proximal tubules of foetal and adult kidney, one of four breast cancers, one of four colorectal cancers, 14 of 33 head and neck cancers, 13 of 24 renal cancers, three of 19 lung cancers and one of seven stomach cancers. These results were further confirmed by Western blotting. Histological types showing moderate to strong expression of the c-yes-1 gene product were renal cell carcinoma (13/24) and squamous cell carcinoma (15/38). The fact that the c-yes-1 gene product is expressed preferentially in renal cell carcinoma and squamous cell carcinoma may indicate that it plays an important role.

Adult↗

Current comprehensive therapy of habitual abortion.

Habitual abortion is sometimes an incurable pathogenetic state. Even more serious to both the patient and gynecologist is that the incidence of repeated reproductive wastage is higher in subsequent pregnancies. We registered more than 1,000 women with repeated spontaneous abortions in this clinic for 5 years and analyzed their pathogenesis for the wastages by several different approaches. One hundred twenty-four women were diagnosed as having a congenital uterine abnormality. Metroplasty was performed in 50 patients, resulting in 82% successful subsequent pregnancies, whereas more than 98% of the pregnancies had terminated in spontaneous abortion before the operation. By measuring anticardiolipin antibody (ACA) and lupus anticoagulant (LA), the present study diagnosed several cases as antiphospholipid syndrome, and successfully pregnant patients were observed and treated with appropriate medications. Fifty-five partners of 54 couples had either a chromosomal abnormality or normal variants, showing a high incidence of spontaneous abortion in each type of abnormality. In the other 311 cases, female partners were treated by the immunotherapy of the husbands' lymphocytes in pre- and postgestational periods. Among them, 200 women became pregnant, and 147 cases successfully maintained the pregnancy. These studies indicate that early diagnosis through comprehensive examinations is essential for effective treatment of curable fetal loss in human reproduction.

Abortion, Habitual↗