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Biomedical subjects

M Tashiro

Publications and source records attributed to M Tashiro.

At least 19 recordsLinked to original sources

Activation and interaction with protein kinase C of a cytoplasmic tyrosine kinase, Itk/Tsk/Emt, on Fc epsilon RI cross-linking on mast cells.

Cross-linking of the high-affinity IgE receptor (Fc epsilon RI) on mast cells induces rapid phosphorylation on serine, threonine, and tyrosine residues and increases the enzymatic activity, of a Tec subfamily tyrosine kinase, Itk/Tsk/Emt (Emt). The pleckstrin homology domain of Emt at its amino-terminal interacts directly with multiple isoforms of protein kinase C (PKC) in vitro. In addition, a portion of Emt is physically associated with multiple isoforms of PKC in intact mast cells. PKC phosphorylates a bacterial fusion protein containing the pleckstrin homology domain of Emt in vitro. Coexpression of Emt in COS-7 cells with Ca(2+)-dependent PKC isoforms (alpha, beta I, or beta II) induces an enhancement in tyrosine phosphorylation of Emt. In vivo inhibition of PKC expression or activity attenuates tyrosine phosphorylation and enzymatic activity of Emt induced upon Fc epsilon RI cross-linking. These data collectively suggest that PKC phosphorylates Emt and activates its autophosphorylating activity. Alternatively, PKC could activate another tyrosine kinase that phosphorylates Emt, or PKC-mediated phosphorylation of Emt may render it a target for another tyrosine kinase. In any case, PKC appears to play a major role in the activation of Emt induced upon Fc epsilon RI cross-linking.

Animals

Influenza viruses, cell enzymes, and pathogenicity.

Proteolytic cleavage of the influenza virus hemagglutinin glycoprotein (HA) by cellular proteases is a prerequisite for virus infectivity, spread of the virus in the infected organism, tissue tropism, and viral pathogenicity. Production of infectious virus depends upon the structure at the HA cleavage site as well as the substrate specificity and the distribution of appropriate enzymes. Differences exist in the specificities of the endoproteases that recognize the different sequence motifs at the cleavage site. With avian influenza viruses that cause lethal systemic infections, the cleavage site consists of multibasic amino acids. Furin, which activates this type of HA, is a member of the subtilisin family and represents the prototype of ubiquitously occurring membrane-bound proteases. On the other hand, serine proteases secreted from a restricted number of cell types and some bacterial enzymes recognize a monobasic cleavage signal at HA of the mammalian and the apathogenic avian influenza viruses. The limited occurrence of these proteases results in only localized infection. Implementation of these defined conditions for virus activation may represent a novel type of disease control.

Furin

Isolation and characterization of a novel trypsin-like protease found in rat bronchiolar epithelial Clara cells. A possible activator of the viral fusion glycoprotein.

A novel trypsin-like protease associated with rat bronchiolar epithelial Clara cells, named Tryptase Clara, was purified to homogeneity from rat lung by a series of standard chromatographic procedures. The enzyme has apparent molecular masses of 180 +/- 16 kDa on gel filtration and 30 +/- 1.5 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis under reducing conditions. Its isoelectric point is pH 4.75. Studies with model peptide substrates showed that the enzyme preferentially recognizes a single arginine cleavage site, cleaving Boc-Gln-Ala-Arg-4-methylcoumaryl-7-amide most efficiently and having a pH optimum of 7.5 with this substrate. The enzyme is strongly inhibited by aprotinin, diisopropylfluorophosphate, antipain, leupeptin, and Kunitz-type soybean trypsin inhibitor, but inhibited only slightly by Bowman-Birk soybean trypsin inhibitor, benzamidine, and alpha 1-antitrypsin. Immunohistochemical studies indicated that the enzyme is located exclusively in the bronchiolar epithelial Clara cells and colocalized with surfactant. An immunoreactive protein with a molecular mass of 28.5 kDa was also detected in airway secretions by Western blotting analyses, suggesting that the 30-kDa protease in Clara cells is processed before or after its secretion. Proteolytic cleavage of the hemagglutinin of influenza virus is a prerequisite for the virus to become infectious. Tryptase Clara was shown to cleave the hemagglutinin and activate infectivity of influenza A virus in a dose-dependent way. These results suggest that the enzyme is a possible activator of inactive viral fusion glycoprotein in the respiratory tract and thus responsible for pneumopathogenicity of the virus.

Amino Acid Sequence

Stimulation of growth by both androgen and estrogen of the EMP-K1 transplantable tumor with androgen and estrogen receptors from human extramammary Paget's disease in nude mice.

BACKGROUND: Experimental approaches using transplantable human tumors in nude mice have greatly improved studies on their pathogenesis and treatment. PURPOSE: We studied the establishment of a transplantable tumor, EMP-K1, derived from extramammary Paget's disease and the morphology and unique hormone dependence of this tumor. METHODS: Tissue fragments from a metastatic skin tumor of an 80-year-old man with primary genital extramammary Paget's disease were implanted into male nude BALB/c mice. Tissue fragments of the established tumor were implanted into 50 castrated male 8-week-old nude mice, which were given injections of 100 micrograms testosterone propionate (TP), 100 micrograms 5 alpha-dihydrotestosterone (DHT), 10 micrograms diethylstilbestrol (DES), or 1, 10, or 100 micrograms 17 beta-estradiol (E2). All injections were administered intramuscularly once daily, starting from the day of transplantation. The established tumors were examined immunohistochemically and biochemically. RESULTS: A transplantable tumor (EMP-K1) was established in the nude mouse. EMP-K1 tumor cells expressed antigens such as carcinoembryonic antigen and epithelial membrane antigen, cytokeratin, and c-erbB-2 protein and contained androgen, estrogen, and progesterone receptors. The growth of the EMP-K1 tumor was stimulated by TP, DHT, DES, and E2. CONCLUSIONS: These results suggest that both androgen and estrogen may stimulate the growth of the same tumor by both androgen receptor and estrogen receptor pathways. IMPLICATIONS: The EMP-K1 tumor is a useful tool for studies on the biology of extramammary Paget's disease, and further studies using these tumors will provide useful information concerning proper hormone therapy.

Aged

Significance of basolateral domain of polarized MDCK cells for Sendai virus-induced cell fusion.

Fusion (fusion from within) of polarized MDCK monolayer cells grown on porous membranes was examined after infection with Sendai viruses. Wild-type virus, that buds at the apical membrane domain, did not induce cell fusion even when the F glycoprotein expressed at the apical domain was activated with trypsin. On the other hand, a protease activation mutant, F1-R, with F protein in the activated form and that buds bipolarly at the apical and basolateral domains, caused syncytia formation in the absence of exogenous protease. Anti-Sendai virus antibodies added to the basolateral side, but not at the apical side, inhibited cell fusion induced by F1-R. In addition, T-9, a mutant with bipolar budding phenotype of F1-R but with an uncleavable F protein phenotype like wild-type virus, induced cell fusion exclusively when trypsin was added to the basolateral medium. By electron microscopy, cell-to-cell fusion was shown to occur at the lateral domain of the plasma membrane. These results indicate that in addition to proteolytic activation of the F protein, basolateral expression of Sendai virus envelope glycoproteins is required to induce cell fusion.

Animals

Budding site of Sendai virus in polarized epithelial cells is one of the determinants for tropism and pathogenicity in mice.

Wild-type Sendai virus fusion (F) glycoprotein requires trypsin or a trypsin-like protease for cleavage-activation in vitro and in vivo, respectively. The virus is pneumotropic in mice and buds at the apical domain of bronchial epithelial cells. On the other hand, the F protein of the protease-activation host range mutant, F1-R, is cleaved by ubiquitous proteases present in different cell lines and in various organs of mice. F1-R causes a systemic infection in mice and the mutant buds bipolarly at the apical and basolateral domains of infected epithelial cells. The enhanced cleavability of the F protein of F1-R has been shown to be a primary determinant for pantropism. Additionally, it has been postulated that bipolar budding of F1-R is required for the systemic spread of the virus and it has been attributed to mutations in the matrix (M) protein of F1-R (Tashiro et al., Virology 184, 227-234, 1991). In this study protease-activation mutants (KD series) were isolated from wild-type virus. They were revealed to bud at the apical domain, and the F protein was cleaved by ubiquitous proteases in mouse organs. The KD mutants were exclusively pneumotropic in mice following intranasal infection, whereas they caused a generalized infection when inoculated directly into the circulatory system. Comparative nucleotide sequence analysis of the F gene of the KD mutants revealed that the deduced amino acid substitutions responsible for enhanced cleavability of the F protein occurred removed from the cleavage site. Mutations were not at all found in the M gene of the KD mutants analyzed, in support of the role of the M protein of F1-R and of a revertant T-9 derived from the latter in bipolar budding. These results suggest that bipolar budding is necessary for the systemic spread of F1-R from the lungs and that apical budding by wild-type virus and the KD mutants leads to respiratory infections. Differential budding at the primary target of infection, in addition to the cleavage-activation of the F protein in mouse organs, is therefore also a determinant for tropism and pathogenicity of Sendai virus in mice.

Amino Acid Sequence

Differences in HTLV-I integration patterns between skin lesions and peripheral blood lymphocytes of HTLV-I seropositive patients with cutaneous lymphoproliferative disorders.

We examined HTLV-I integration patterns in nine cases of HTLV-I-seropositive patients with cutaneous lymphoproliferative disorders. The Southern blot on EcoRI digests of DNA revealed a discrete band of HTLV-I provirus (monoclonal integration) in either skin lesions or peripheral blood lymphocytes (PBL). Four cases showed the monoclonal integration of HTLV-I provirus only in skin lesions: one case showed only in PBL and two cases showed in both skin and PBL. The Southern blot on PstI digests of DNA revealed a 2.4 Kb band of the internal construct of HTLV-I provirus (polyclonal integration) in the PBL of EcoRI-negative samples. The difference in HTLV-I integration patterns between skin lesions and PBL in these cases suggests that the monoclonal outgrowth of HTLV-I-infected cells in the skin is causatively associated with the pathogenesis of cutaneous ATL.

Aged

Interactions between bacteria and influenza A virus in the development of influenza pneumonia.

Different proteases from various microorganisms present in the respiratory tract were capable of enhancing influenza virus infectivity and pathogenicity in mice by proteolytic activation of hemagglutinin (HA). Aerococcus viridans, isolated from a patient with pneumonia, secreted a protease that could activate HA directly, similarly to some Staphylococcus aureus strains. The protease of Pseudomonas aeruginosa could not activate HA directly, but combined application of P. aeruginosa protease and virus into mice enhanced virus titers and pathogenicity. Generation of trypsin-like activity in bronchoalveolar lavage fluids resulting from this combination treatment may be responsible for HA activation. A similar indirect effect on HA activation was induced by streptokinase and staphylokinase, which are known to generate plasmin by plasminogen activation. It was concluded that plasminogen-activating streptococci and staphylococci facilitate viral replication and pathogenicity of plasmin-sensitive influenza virus strains by amplification of the plasminogen/plasmin system.

Animals

Changes in specific cleavability of the Sendai virus fusion protein: implications for pathogenicity in mice.

Sendai virus mutants, KDe-21 and KDe-62, which had undergone multiple cycles of replication in Madin Darby canine kidney (MDCK) cells in the absence of exogenous proteases were isolated. The fusion (F) protein of the mutants regained proteolytic cleavability in MDCK cells and chick embryos, but the F protein remained non-cleavable in other cell lines. Unlike the F protein of wild-type (wt) virus, the mutant F was resistant to trypsin but was sensitive to elastase and, to a lesser extent, to chymotrypsin. Sequence analyses of the F gene and the F protein revealed an amino acid substitution at the cleavage site, Arg(116) to Ile, which conferred trypsin resistance and enhanced cleavability at Ile(116) by elastase and host proteases present in MDCK cells and in chicken embryos. In contrast to the pneumopathogenicity in mice of wt Sendai virus, the KDe mutants were non-pathogenic; cleavage activation of the F protein did not occur in the lungs and thereby infection was terminated after an initial cycle of replication.

Amino Acid Sequence

Expression of human T-cell lymphotropic virus type-1 gene products in the short-term cultured skin tissues of an adult T-cell leukemia/lymphoma patient with cutaneous manifestations.

Adult T-cell leukemia/lymphoma (ATLL) is recognized as a disease etiologically associated with human T lymphotropic virus type-1 (HTLV-1) infection, but, neither viral replication nor specific virus antigen expression have been detected on ATLL cells distributed in organs, including skin. To examine the latent expression of HTLV-1 in the cutaneous lesions of ATLL patients, we cultured the lesional skin tissues in vitro and applied immunofluorescence staining with mouse monoclonal antibodies Lt-4, GIN-14, and F10, which react with p40tax, p19 and gp21, respectively. We recognized HTLV-1 specific antigens on clustered ATLL cells only in the deeper dermis of the skin after 24 hrs cultivation of the lesional skin tissue from an ATLL patient in RPMI-1640 medium supplemented with 20% fetal calf serum. In the electron microscope, we observed HTLV-1 like particles, 80-140 nm in diameter with envelope and core structures, in the same tissue specimen. These findings suggest that HTLV-1 gene products may be expressed in the skin lesions of ATLL patients and involved in the pathogenesis of skin eruptions in cutaneous type ATLLs. To our knowledge, this is the first report that envisages the potency of intracutaneous HTLV-1 expression in vivo.

Aged

A case of intravascular malignant lymphomatosis (angiotropic large-cell lymphoma) presenting memory T cell phenotype and its expression of adhesion molecules.

A case of intravascular malignant lymphomatosis (angiotropic large cell lymphoma), T cell type was reported. The patient, a 59-year-old woman, had reddish or violaceous indurated macules scattered over the entire body surface. Neither lymphadenopathy nor hepatosplenomegaly was recognized. A chest Roentgenogram, whole body CT scan, and 67Ga-citrate scintigraphy yielded normal findings. Serum anti-HTLV-1 antibody was negative. Histopathologically, lesions showed intravascular large mononuclear cell proliferation associated with occasional fibrin thrombi formation in the dermis to subcutis. Immunohistochemically, the large mononuclear cell immuno-phenotype had a memory T cell character. Also, both lymphocyte function-associated antigen-1s, CD11a and CD18, and intercellular adhesion molecule-1 were demonstrated on the tumor cells and vascular walls in the lesions. To our knowledge, the present case is the fourth case of intravascular malignant lymphomatosis in the T cell lineage.

Cell Adhesion Molecules

Significance of the serum CA125 level in recurrent ovarian cancer.

Thirty-four recurrent cases of 89 patients with ovarian cancer treated in our department between 1985 and 1989 were examined for changes in serum CA125 level. 1) Upon confirmation of recurrence, 17 patients were positive for CA125 and 15 were negative. 2) According to the histopathological type, the rate of CA125 positivity in patients with recurrence was high for serous adenocarcinoma, suggesting that determination of CA125 is useful for detection of recurrence. In contrast, all patients with mucinous adenocarcinoma or endometrioid adenocarcinoma were negative for CA125. 3) The CA125 positivity rate upon confirmation of recurrence was 9% in patients whose CA125 was less than 1,000 U/ml on initial examination, suggesting that close management of such patients is necessary. 4) Elevation of CA125 by 3 steps or more within the normal range (less than 35 U/ml) was useful for predicting recurrence. 5) The cut-off level of CA125 during follow-up should be set at 16 U/ml. 6) It was difficult to evaluate remission with only the serum CA125 level. It is impossible to avoid second look operation at present. These results indicate that pretreatment values and changes of the parameter within the normal range (less than 35 U/ml) have to be considered when using CA125 as a marker of tumor recurrence.

Adenocarcinoma

Tryptase Clara, an activating protease for Sendai virus in rat lungs, is involved in pneumopathogenicity.

Tryptase Clara is an arginine-specific serine protease localized exclusively in and secreted from Clara cells of the bronchial epithelium of rats (H. Kido, Y. Yokogoshi, K. Sakai, M. Tashiro, Y. Kishino, A. Fukutomi, and N. Katunuma, J. Biol. Chem. 267:13573-13579, 1992). The purified protease was shown in vitro to behave similarly to trypsin, cleaving the precursor glycoprotein F of Sendai virus at residue Arg-116 and activating viral infectivity in a dose-dependent manner. Anti-tryptase Clara antibody inhibited viral activation by the protease in vitro in lung block cultures and in vivo in infected rats. When the enzyme-specific antibody was administered intranasally to rats that were also infected intranasally with Sendai virus, activation of progeny virus in the lungs was significantly inhibited. Thus, multiple cycles of viral replication were suppressed, resulting in a reduction in lung lesions and in the mortality rate. These findings indicate that tryptase Clara is an activating protease for Sendai virus in rat lungs and is therefore involved in pulmonary pathogenicity of the virus in rats.

Animals

Increased mitochondrial DNA deletions in the skeletal muscle of myotonic dystrophy.

Mitochondrial abnormality in the skeletal muscles of 13 patients with myotonic dystrophy was analyzed by both histochemical and molecular biologic methods. Nine of 13 patients had ragged-red fibers (50 +/- 116 per 10,000 muscle fibers, mean +/- SD), and 10 patients had cytochrome c oxidase-negative fibers (41 +/- 90 per 10,000 muscle fibers). Southern blot analysis detected no mitochondrial DNA deletions, while PCR revealed multiple mitochondrial DNA deletions in all the specimens. Direct sequencing of one of the deleted mitochondrial DNAs disclosed that the junctional sequence of a 3,460-bp deletion involved a 6-bp directly repeated sequence (5'-TAGAAG-3') flanked by C-rich regions located on the CO3 gene and the ND5 gene. Quantitative analysis of PCR amplified deleted mitochondrial DNAs revealed that the amount of deleted mitochondrial DNAs had positive correlation both with the frequencies of ragged-red fibers and cytochrome c oxidase-negative fibers. Although deleted mitochondrial DNAs were observed even in controls above age 30, the mean amount of deleted mitochondrial DNAs in patients with myotonic dystrophy was significantly higher than in controls. Moreover, the increase of deleted mitochondrial DNAs with aging was more marked in myotonic dystrophy than in controls. These results suggest that increased mitochondrial DNA deletions and consequent impairment of mitochondrial function contribute to the pathophysiology of myotonic dystrophy.

Adolescent

[Quantitative skeletal muscle pathology of aging regarding ragged-red fibers and cytochrome c oxidase-negative fibers].

A statistical analysis of mitochondrial abnormality of aging in human skeletal muscle fibers was performed. Sixty one muscle samples were obtained from patients with acute medical illness autopsied strictly within 2 hours after death, or with orthopedic or surgical diseases biopsied with informed consents. The patients aged from 16 to 89, averaging 58 +/- 21 years in males and 21 to 92, averaging 55 +/- 20 years in females. Sections were stained by modified Gomori's trichrome, succinate dehydrogenase and cytochrome c oxidase-negative [CCO(-)] fibers approximately in 10,000 fibers in each muscle were evaluated. Both RRF and CCO (-) fibers were not observed below the fourth decade, but sequentially increased with age, especially after the seventh decade. The incidence of CCO (-) fibers was higher than that of RRF. RRF did not necessarily correspond to CCO (-) fibers. The present quantitative pathological result is a useful tool to evaluate the mitochondrial function in fresh human skeletal muscles by the age.

Adolescent