Drug eruption caused by nonionic iodinated X-ray contrast media.
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Biomedical subjects
Publications and source records attributed to R Fujisawa.
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Phosphophoryn, the major noncollagenous protein of dentin, was adsorbed on synthetic hydroxyapatite crystals and analyzed by high-resolution solid-state nuclear magnetic resonance (NMR) spectroscopy. Binding of the protein was inhibited by acidic polypeptides, especially by a phosphorylated peptide. After phosphophoryn was incubated with the crystals, the crystals were collected and analyzed by 13C-cross-polarization magic-angle-spinning NMR. Several signals could be assigned to carbons of aspartic acids, taking advantage of the unique amino acid composition of this protein. Chemical shifts of signals of aspartic acids are known to reflect secondary structure of the polypeptide. The chemical shifts obtained from the phosphophoryn indicate that the secondary structure of this protein on the crystal was near to a beta-sheet structure. This result is consistent with the result for poly(Asp) adsorbed on the crystals. The beta-sheet-like structure enables phosphophoryn to extend on the crystal surface and to cover the surface with only a small number of the molecules, resulting in the high inhibitory effect of this protein on crystal growth.
The tempo and intensity of retroviral neuropathogenesis are dependent on the capacity of the virus to invade the central nervous system. For murine leukemia viruses, an important determinant of neuroinvasiveness is the virus-encoded protein glycosylated Gag, the function of which in the virus life cycle is not known. While this protein is dispensable for virus replication, mutations which prevent its expression slow the spread of virus in vivo and restrict virus dissemination to the brain. To further explore the function of this protein, we compared two viruses, CasFrKP (KP) and CasFrKP41 (KP41), which differ dramatically in neurovirulence. KP expresses high early viremia titers, is neuroinvasive, and induces clinical neurologic disease in 100% of neonatally inoculated mice, with an incubation period of 18 to 23 days. In contrast, KP41 expresses early viremia titers 100- fold lower than those of KP, exhibits attenuated neuroinvasiveness, and induces clinical neurologic disease infrequently, with a relatively long incubation period. The genomes of these two viruses differ by only 10 nucleotides, resulting in differences at five residues, all located within the N-terminal cytoplasmic tail of glycosylated Gag. In this study, using KP as the parental virus, we systematically mutated each of the five amino acid residues to those of KP41 and found that substitution mutation of two membrane-proximal residues, E53 and L56, to K and P, respectively produced the greatest effect on early viremia kinetics and neurovirulence. These mutations disrupted the KP sequence E53FLL56, the leucine dipeptide of which suggests the possibility that it may represent a sorting signal for glycosylated Gag. Supporting this idea was the finding that alteration of this sequence motif increased the level of cell surface expression of the protein, which suggests that analysis of the intracellular trafficking of glycosylated Gag may provide further clues to its function.
Bone matrix is composed of collagen and non-collagenous proteins. The collagen is mainly type I collagen. Characteristics of bone collagen are in posttranslational modifications and utilization of transcriptional elements in the promoter. The non-collagenous proteins are acidic Ca-binding proteins: bone Gla protein(BGP), bone sialoprotein (BSP), osteopontin, osteonectin etc. BGP and BSP are specific to bone, and other proteins are present also in non-mineralized tissues. BGP functions in suppression of excessive mineralization. BSP and osteopontin are sialoproteins containing a RGD cell-attachment sequence and poly(acidic amino acid) sequences. BSP is present in sites of bone formation. Osteopontin is involved in attachment of osteoclasts to bone surface.
We report on a father and his son with supernumerary nipples. No male-to-male transmission has previously been described with this trait. This observation confirms that this trait is inherited in an autosomal dominant fashion.
We investigated activity of bone sialoprotein (BSP) to mediate attachment of cells to hydroxyapatite using a model peptide, Glu7-Pro-Arg-Gly-Asp-Thr, which contains a putative hydroxyapatite-binding site (poly-Glu) and a cell-attachment site. The peptide has affinity to hydroxyapatite with a dissociation constant of 13.5 microM. The peptide affected in vitro mineralization in a gel system, indicating interaction between this peptide and calcium phosphate. The osteoblastic cell line MC3T3-E1 was incubated with hydroxyapatite powder coated with the peptide or proteins. Attachment of the cells was observed on the powder coated with BSP, but not on the powder coated with serum albumin. The cells were attached to the powder coated with the peptide. The cells were flattened on the powder, and pseudopods developed. The attachment of the cells was inhibited by an excessive amount of Gly-Arg-Gly-Asp-Ser peptide. In conclusion, BSP mediated attachment of osteoblastic cells to hydroxyapatite, and this activity could be accomplished only by the poly-Glu sequence and the Arg-Gly-Asp sequence.
The neuroinvasiveness of a chimeric murine retrovirus, CasFrKP (KP), is dependent on the expression of glycosylated Gag (gp85gag). This viral protein is the product of alternate translation initiation 88 codons upstream of and in frame with the initiation codon of pr65gag, the precursor of the viral core proteins. Although expression of glycosylated Gag affects virus spread in the spleen, it appears not to affect virus spread in vitro in fibroblast cell lines (J. L. Portis et al., J. Virol. 68:3879-3887, 1994). The differential effects of this protein in vitro and in vivo have not been explained, and its function is unknown. We have here compared the in vitro processing of this molecule with that expressed in spleens of infected mice. In vitro, gp85gag was cleaved near the middle of the molecule, releasing the C-terminal half (containing capsid and nucleocapsid domains of pr65gag) as a secreted glycoprotein. The N-terminal half of the protein was associated with the plasma membrane as a approximately 55-kDa glycoprotein bearing the matrix domain of pr65gag as well as the N-terminal 88 residue L domain. This processing scheme was also observed in vivo, although two differences were seen. There were differences in N-linked glycosylation of the secreted form of the protein expressed in the spleen. In addition, whereas the membrane-associated species assumed the orientation of a type II integral membrane protein (N(cyto) C(exo)) in fibroblasts in vitro, a subpopulation of spleen cells was detected in which the N terminus of the protein was exposed at the cell surface. These results suggest that the differential effects of glycosylated Gag expression in vivo and in vitro may be related to differences in posttranslational processing of the protein.
Friend murine retrovirus complex induces acute and fatal erythroleukemia when inoculated into immunocompetent adult mice. The development of leukemia after inoculation of Friend virus complex is controlled by several host genes. Some of the host genes influence immune responses against the viral antigens. Both CD4-positive T helper cells and CD8-positive cytotoxic T-lymphocytes specific for Friend viral antigens are required for spontaneous resistance against the virally induced leukemia. We have identified two separate T helper cell epitopes in the gp70 envelope glycoprotein encoded by the helper component of Friend virus complex. Immunization of mice with a synthetic peptide that represented one of the two T helper cell epitopes by a single injection with an adjuvant induced potent protective immunity against Friend virus-induced leukemia, even in the absence of CD8-positive T lymphocytes. In the immunized mice, virus-infected erythroid progenitor cells were rapidly eliminated from the spleen within two weeks after inoculation of the Friend virus. These data indicate unexpected importance and efficacy of CD4-positive T helper cells in immunity against retrovirus infections.
Neuroinvasiveness is a property of all neurovirulent murine retroviruses, although the factors which facilitate infection of the CNS are not understood. We previously showed that mutant MuLV which lack expression of an accessory protein, glycosylated gag, had lost neurovirulence, indicating that this protein may be involved in promoting CNS infection. The mutations were located in the "Kozak" consensus sequence of the initiation codon for this protein. Here it is shown that shortly after inoculation of mice with one of these mutant viruses, revertants emerged which had regained expression of glycosylated gag and had also regained the neuroinvasiveness and neurovirulence exhibited by the wild-type virus. The phenotypic revertants retained the mutations in the "Kozak" consensus sequence but exhibited a G-->A mutation 12 codons downstream from the mutated start site, creating a new initiation codon and a glycosylated gag protein, which was truncated at its N-terminus. Using antibodies specific for glycosylated gag it is shown that the frequency of splenic infectious centers expressing revertant virus increased progressively during the 2 months following inoculation of mutant virus until > or = 50% of the virus-producing cells in the spleen expressed revertant virus. In contrast, although phenotypic revertants were detectable at low frequency after cell-free passage in vitro in M. dunni fibroblasts, there was no evidence for selection. These results indicate that glycosylated gag facilitates virus spread within the spleen and to extra-splenic sites, such as the CNS, and suggest that the protein may function through its interaction with the host.
Osteonectin, an acidic noncollagenous protein of bone and dentin, has affinity to hydroxyapatite crystals. Binding sites to hydroxyapatite of this protein were determined by a proteolytic experiment and an in vitro binding experiment using synthetic peptide analogues. Osteonectin was adsorbed on hydroxyapatite crystals and digested with trypsin. A peptide was left adsorbed on the crystal even after the digestion. The peptide was identified as an amino terminal peptide containing glutamic acid-rich sequences, which have been assumed to be possible hydroxyapatite-binding sites. Poly glutamic acid sequences were synthesized as models of the binding sites. Glu6 peptide was bound to the hydroxyapatite with a dissociation constant of 2.4 microM. Peptides containing fewer glutamic acids had lower affinity to the crystal. Effects of these peptides on in vitro mineralization were examined by a gel system in microtiter plates. The Glu6 peptide had a positive effect on the mineralization in this system, whereas Asp6 peptide had a negative effect. These effects indicate the presence of an interaction between these peptides and mineral crystals.
Chondroadherin, which is reported to be synthesized by chondrocytes and to promote their attachment, was purified from bovine bone. It was a minor component of bone organic matrix, and was present in the 4 M guanidine extract of demineralized bone. Chondroadherin promoted attachment of osteoblastic cells to solid-state substrates, and bound to collagen. Binding of chondroadherin to collagen was significantly higher than that of osteonectin or decorin. These findings imply that chondroadherin may play a role in maintaining bone cells on the collagen matrices of bone.
Measles and rubella skin lesions were immunocytochemically compared by the avidin-biotin-peroxidase complex method for detecting viral antigens. Cryostat sections of biopsied specimens of the skin were stained with mouse monoclonal antibodies to P protein of measles virus and to E1 protein of rubella virus. The measles virus antigen was concentrated in the corneal layer and the keratinocytes of the epidermis and in the surface part of the dermis in the biopsy secimens taken within 6 days after the onset of rash. On the other hand, the rubella virus antigen was dispersed in all parts of the dermis and the subcutaneous layer but not in the epidermis in the biopsy specimens taken within 2 days after the onset of rash. The differences in the distribution and density of the viral antigen and in the times of its detection suggest distinct patterns of spread of infection with each virus in the skin.
Non-collagenous proteins of dentin and bone have important effects on mineralization which have been studied by various in vitro systems. We developed an in vitro mineralization system using electrophoretic gels as diffusion media of calcium and phosphate ions. Calcium and phosphate ions were diffused naturally or propelled by electric potential. Calcium phosphate was precipitated in the gel, and the precipitation was affected by proteins in the gel which had been separated by electrophoresis. We applied this system to analysis of non-collagenous proteins of dentin. Among the proteins, phosphophoryns promoted calcium phosphate precipitation in the natural-diffusion system. A non-collagenous protein having a molecular mass of 60 kDa inhibited precipitation. The results were different, however, in the electric-diffusion system, in which phosphophoryns had a negative effect. The present system enabled us to compare the effects of plural proteins rapidly, even using unpurified material.
Synthetic peptide vaccines containing a single Th cell epitope identified in the gp70 envelope glycoprotein of Friend murine leukemia helper virus induced potent protective immunity against Friend virus infection. H-2a/b mice immunized by a single s.c. injection of the CFA emulsion containing a peptide that represented the N-terminal gp70 epitope recovered slowly from initial development of splenomegaly, and most did not develop late leukemia, whereas most of the control mice given an injection of CFA alone showed sustained leukemic splenomegaly after the challenge with Friend virus. The mice of the same genetic background immunized with the C-terminal Th cell epitope by a single injection of a separate synthetic peptide eliminated virus-producing cells from the spleen within 12 days after inoculation of Friend virus complex, and did not develop early splenomegaly or polycythemia. H-2a/a mice were not protected by immunization with either one of the two synthetic peptides. Earlier production and more rapid class switching of virus-neutralizing Abs were observed in H-2a/b mice immunized with the peptide vaccines after the challenge with Friend virus, compared with the responses of the control mice. Detailed kinetic and immunohistopathologic analyses suggested that Th cells might be directly involved in the growth inhibition and elimination of virus-infected erythroid precursor cells.
Bone sialoprotein (BSP) has an affinity to collagen fibrils [25]. A role of carbohydrate chains in the affinity was examined by removing sialic acids of BSP. Neuraminidase treatment of the BSP increased the binding to collagen. Binding sites of BSP on collagen were examined by biochemical and electron-microscopic methods. Purified bovine BSP was labeled with biotin. Collagen alpha chains or CNBr peptides were separated by electrophoresis and transfered to nitrocellulose membranes. The membranes were incubated with the biotin-labeled BSP, and the bound BSP was visualized with avidin conjugated with alkaline phosphatase. The labeled BSP was preferentially bound to the alpha 2 chain, and peptides derived from alpha 2 chain. In another experiment, the labeled BSP was incubated with reconstituted native collagen fibrils. The mixture was put on a copper grid, reacted with avidin conjugated with gold particles, and observed with an electron microscope. The gold particles were seen mainly within hole zones of the fibrils. BSP bound to the alpha 2 chain within the hole zones may regulate the onset of calcification at hole zones and the cell binding to collagen fibrils.
Bone sialoprotein (BSP) containing an Arg-Gly-Asp cell-binding sequence was purified from bovine bone 4 M guanidine-HCl extract after HCl demineralization by a series of chromatographic procedures. When this protein was coated on culture dishes in the presence of type I collagen, it increased both DNA content and alkaline phosphatase (ALP) activity in osteoblast-like MC3T3-E1 cells, and stimulated calcification in the cells, whereas fibronectin, another cell-binding protein, showed a marked increase in the DNA content but had little effect on the ALP activity. These findings suggest that BSP is mitogenic for preosteoblasts and differentiating the cells into osteoblasts, thereby stimulating bone calcification.
Clinical backgrounds of patients with adult-onset xanthogranuloma are somewhat different from those of patients with juvenile xanthogranuloma, but the histologic findings of both forms of the disease are identical. The lesions of the adult form are usually asymmetric. We describe a patient with adult-onset xanthogranuloma that appeared symmetrically on the ear lobes. This case suggests a possible role for mechanical stimuli (e.g., earrings) in the pathogenesis of adult-onset xanthogranuloma.