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Yasunori Higuchi

Publications and source records attributed to Yasunori Higuchi.

10 recordsLinked to original sources

Elevated soluble ADAM8 in bronchoalveolar lavage fluid in patients with eosinophilic pneumonia.

BACKGROUND: ADAM (a disintegrin and metalloprotease) family members, characterized by a metalloprotease and a disintegrin domain, are membrane-anchored glycoproteins involved in proteolysis and cell adhesion. ADAM8 might have an important role in allergic inflammation. It can cleave a variety of substrates and is a sheddase for VCAM-1 and CD23, the low-affinity IgE receptors. METHODS: To evaluate the contribution of ADAM8 to the pathogenesis of eosinophilic pneumonia (EP), we measured the concentrations of soluble ADAM8 (sADAM8) and its substrates, soluble VCAM-1 (sVCAM-1) and soluble CD23 (sCD23), in bronchoalveolar lavage fluid from patients with smoking-induced acute eosinophilic pneumonia (AEP), chronic idiopathic eosinophilic pneumonia (CEP), and drug-induced eosinophilic pneumonia (drug-EP). RESULTS: The sADAM8 and sVCAM-1 concentrations were increased in AEP and CEP. The sCD23 concentration was elevated in AEP. In AEP, but not CEP, the sADAM8 concentration significantly correlated with those of both sVCAM and sCD23. CONCLUSION: The pathogenesis of AEP, CEP, and drug-EP was distinct with regard to ADAM8. Our results are the first to associate ADAM8 with eosinophilic responses and lung inflammation in humans.

ADAM Proteins↗

Role of ADAM8 in experimental asthma.

A disintegrin and metalloprotease (ADAM) family members, characterized by a metalloprotease and a disintegrin domain, are membrane-anchored glycoproteins involved in proteolysis and cell adhesion. ADAM8 is specifically induced in the experimental murine asthmatic lung. To evaluate novel pathways involved in asthma pathogenesis, using ADAM8 transgenic mice (ATMS2) in a murine model of asthma. Massive cellular infiltrates in peribronchovascular and interstitial lesions were observed in control mice, while in ATMS2 mice there were only occasional. Vascular cell adhesion molecule (VCAM-1) is involved in specific eosinophil adhesions via alpha4beta1 integrin. VCAM-1 shedding was mediated by the ADAM8 metalloprotease. Endothelial cell shedding of VCAM-1 was increased in ATMS2-stimulated human umbilical endothelial cells. ADAM8-mediated shedding of VCAM-1 might be important for the suppression of experimental asthma. Our data suggest that ADAM8 is a useful therapeutic target.

ADAM Proteins↗

Roles of CD14 in LPS-induced liver injury and lethality in mice pretreated with Propionibacterium acnes.

The mechanism of the liver damage and lethality in Propionibacterium acnes (P. acnes)-LPS system remains obscure. To examine the role of CD14 in the system, M14M mice, in which CD14 was expressed heterotopically under the control of the metallothionein promoter were used. The production of soluble CD14 (sCD14) was increased by both P. acnes - priming and LPS challenge (1 microg per mouse) in both nontransgenic and M14M mice, although the plasma level was much higher in M14M nontransgenic than mice. The size of granulomas induced by an intraperitoneal administration of P. acnes in M14M mice 7 days after priming was smaller than that in nontransgenic mice. An LPS challenge induced apoptotic and necrotic changes in hepatocytes in nontransgenic mice but not in M14M mice. The challenge dose resulted in almost 90% lethality in nontransgenic mice but not in M14M mice 24h after challenge. TNF-alpha, IFN-gamma, IL-12, IL-18 and inducible nitric oxide synthase (iNOS) mRNA expressions produced by LPS challenge in M14M mice were low compared with those in nontransgenic mice. IL-18 mRNA expression was upregulated in P. acnes-primed nontransgenic mice but not in M14M mice. These results suggest that the high sCD14 concentration may account for less marked liver damage in M14M mice. Increase in the challenge dose of LPS (2 microg per mouse) resulted in increased lethality of M14M mice without liver damage. The levels of endothelial cell leukocyte adhesion molecule (ELAM)-1 mRNA expression in several organs in M14M mice 1-3h after LPS challenge were, however, lower than those in nontransgenic mice. The high sCD14 concentration may stimulate endothelial cell activation, which may account for lethality without liver damage in M14M mice. Thus, CD14 is involved in both the priming and induction phases as well as lethality in P. acnes-LPS system.

Animals↗

The roles of soluble osteopontin using osteopontin-transgenic mice in vivo: proliferation of CD4+ T lymphocytes and the enhancement of cell-mediated immune responses.

We generated transgenic mice expressing osteopontin (OPN) under the control of the alpha(1)-antitrypsin promoter. These mice (OPN-T mice) expressed OPN mRNA in liver and kidney, and released a large amount of plasma OPN, which increased after stimulation with turpentine oil. Before sensitization, the number of CD4+ T cells in lymph nodes was significantly higher in OPN-T than nontransgenic mice, and that in spleen was slightly higher, whereas that of CD8+ T cells was no different between OPN-T and nontransgenic mice. After sensitization, the CD4+ T cell numbers in spleen increased significantly, while there were almost no changes in the CD8+ T cells in lymph nodes and spleen. The intensity of contact hypersensitivity responses to 2,4-dinitrofluorobenzene (DNFB) was obviously enhanced in OPN-T mice. In the delayed-type hypersensitivity (DTH) model elicited by DNFB, the number of CD8+ T cells among DNFB-2,4,6-trinitrobenzenesulfonic acid (TNBS)-peritoneal exudate cells was significantly higher in OPN-T than nontransgenic mice, while there was almost no difference in that of CD4+ T cells. Adoptive transfer experiments revealed that the enhanced reactivity is carried by CD4+ and CD8+ T cells, respectively, although the ability of transferring DTH was significantly lower in CD8+ than in CD4+ T cells. The enhancement of CD8+ T cell migration was observed in OPN-T mice. These results suggest that OPN induces a proliferation of effector CD4+ and CD8+ cells in cell-mediated reactions and plays a role in the migration of CD8+ T cells.

Adoptive Transfer↗

Expression of splice variants of the human ADAM15 gene and strong interaction between the cytoplasmic domain of one variant and Src family proteins Lck and Hck.

OBJECTIVE: The aim of the present study was to show variant species of ADAM15 and unique Src homology 3 (SH3)-binding motifs, which strongly bound Src family proteins compared with ADAM15. METHODS AND RESULTS: RT-PCR using primers for the cytoplasmic domain revealed the presence of different species, designated ADAM15v1 and ADAM15v2, which had characteristic SH3-binding class I and class II motifs. The mRNA of ADAM15v1 and ADAM15v2 was mainly found in peripheral blood mononuclear cells, T lymphocytes and monocytic cell lines. ADAM15v2 protein interacted more strongly with the Src family proteins Lck and Hck than did ADAM15 protein, as examined by pull-down analysis and immunoprecipitation followed by immunoblot analysis. The binding with Lck and Hck was enhanced by the phosphorylation of ADAM15v2 protein. CONCLUSIONS: These results suggest that the cytoplasmic domain of ADAM15v2 strongly interacts with Lck and Hck and regulates leukocyte function.

ADAM Proteins↗

Involvement of CD14 in lipopolysaccharide- induced liver injury in mice pretreated with Propionibacterium acnes.

OBJECTIVE: The aim of this study was to elucidate the role of CD14 in the Propionibacterium acnes-lipopolysaccharide (LPS) system. METHODS AND RESULTS: CD14 transgenic mice (M14M), which expressed heterotopic CD14 and showed decreased responses to LPS in vivo, were used. Seven days after priming, the size of granulomas induced by an intraperitoneal administration of P. acnes in the M14M mice was smaller than that in the nontransgenic mice. The number of CD14-positive cells in granulomas was also decreased in the M14M mice compared to the nontransgenic mice. An LPS challenge induced apoptotic and necrotic changes in hepatocytes in the nontransgenic mice but not in the M14M mice. Seven days after priming, tumor necrosis factor-alpha expression was found in monocytic cells in granulomas and Kupffer cells in the nontransgenic mice and was significantly upregulated after LPS injection, whereas the expression was very weak in these cells in the M14M mice. CONCLUSIONS: CD14 plays a role in the P. acnes-LPS system in both priming and induction phases.

Animals↗

Structure and expression of the murine ADAM 15 gene and its splice variants, and difference of interaction between their cytoplasmic domains and Src family proteins.

The murine cell surface antigen ADAM 15 is a transmembrane glycoprotein that is expressed in a variety of cells including monocytic and T cell lines and consists of a metalloprotease domain, a disintegrin domain, a cysteine-rich domain, and an epidermal growth factor (EGF)-like domain in the extracellular region. The cytoplasmic domain comprises 103 amino acids containing proline-rich endophilin I, Src homology 3 (SH3), and phox homology domain-containing protein (SH3PX1) binding motifs. The ADAM15 gene is composed of 21 exons and 20 introns and spans approximately 10 kb. The transcription initiation site of the ADAM15 gene was defined by an oligonucleotide-capping method. Reverse transcription (RT)-PCR using primers of the cytoplasmic domain of ADAM15 revealed the presence of different ADAM15 species designated ADAM15v1 and ADAM15v2, respectively, that had characteristic SH3-binding class I and/or class II motifs. The ADAM15v1 and ADAM15v2 genes consist of an extra one exon and two exons, respectively, which exist in intron 19 of the ADAM15 gene. The expression of ADAM15v1 and ADAM15v2 mRNA was found in T lymphocyte and monocyte lines. ADAM15v2 protein interacted more strongly with the Src family proteins Lck and Src than ADAM15 protein, when examined by pull-down and immunoprecipitation followed by immunoblot analysis using a T lymphocyte line. Phosphorylation of ADAM15v2 protein markedly enhanced the binding with Lck. These results suggest that the cytoplasmic domain of ADAM15v2 strongly interacts with Lck and plays an important role in T lymphocytes.

ADAM Proteins↗

Possible involvement of toll-like receptor 4 in endothelial cell activation of larger vessels in response to lipopolysaccharide.

Toll-like receptors (TLRs) serve as recognition and signaling elements for bacterial substances. To examine the role of TLRs in endothelial cells of larger vessels in lipopolysaccharide (LPS)-induced signaling, the expression and function of TLRs in human umbilical vein endothelial cells (HUVEC) were analyzed. A high level of TLR4 mRNA expression was found in HUVEC, human peripheral blood mononuclear cells (PBMC) and human monocyte cell line THP-1 cells. Little or no TLR2 mRNA expression was observed in HUVEC. In contrast, strong TLR2 mRNA expression was observed in PBMC and THP-1 cells. Moderate and high levels of TLR1 mRNA expression were found in HUVEC, PBMC and THP-1 cells, respectively. TLR3 mRNA expression was moderate in PBMC but weak in HUVEC and THP-1 cells. Little or no TLR5 and RP105 mRNA expression was observed in HUVEC, whereas a moderate level was detected in PBMC and THP-1 cells. The LPS-induced E-selectin expression in HUVEC was significantly inhibited by pretreatment with an anti-TLR4 mAb. Preincubation of HUVEC with an anti- TLR4 mAb significantly reduced the LPS-induced IL-6 production. LPS induced E-selectin and IL-6 production by HUVEC only in the presence of human serum, suggesting the involvement of soluble CD14. Anti-CD14 mAb strongly inhibited the LPS-induced E-selectin and IL-6 production by HUVEC. The inhibition with the concomitant treatment with anti-TLR4 and anti-CD14 mAbs was stronger than that with anti-CD14 mAb only, although it was slight. These results show that TLR4 in the presence of soluble CD14 plays a major role in the signaling of LPS in endothelial cells of larger vessels.

Blotting, Northern↗

CD156 transgenic mice. Different responses between inflammatory types.

CD156 (ADAM8) is part of the ADAM family of proteins with the catalytic site consensus sequence of metalloprotease and disintegrins. To examine the role of CD156 in vivo, we generated mutant CD156 (eCD156) transgenic mice expressing the ectodomain of CD156 under the control of the alpha1-antitrypsin (AT) promoter. One of the transgenic mice designated ATMS2-TG18 expressed a 1.84 kb mRNA which was predicted to be a truncated CD156. The expression of the transgenic CD156 mRNA in ATMS2-TG18 mice was abundant in the liver and slight in kidney. Turpentine oil (TO) and lipopolysaccharide (LPS) markedly upregulated the expression. Soluble CD156 (sCD156) was produced constitutively, and increased after the treatment with TO. Casein-induced peritoneal leukocyte infiltration was significantly less extensive in ATMS2-TG18 than non-transgenic mice. The expression of L-selectin in neutrophils (PMN) from peripheral blood leukocytes (PBL) was more strongly downregulated in ATMS2-TG18 than non-transgenic mice, suggesting that L-selectin in PMN from ATMS2-TG18 mice was shed by sCD156. In contrast, oxazolone (Ox)-induced contact hypersensitivity reactions (CHR) were more marked in ATMS2-TG18 than non-transgenic mice. The expression of E-selectin mRNA was detected in inflammatory skin sites from ATMS2-TG18, but not non-transgenic mice, suggesting that sCD156 may activate the endothelial cells and lead to the upregulation of E-selectin. These results suggest that CD156 regulates leukocyte infiltration directly or indirectly.

ADAM Proteins↗

Expression of murine N-MYC by insertion of retrovirus sequences in a murine macrophage cell line (RAW264).

RAW264 cells, reported to be originated from Abelson-virus-induced B lymphomas, are widely used as a murine monocyte cell line. We found that RAW264 show enhanced expression of murine N-MYC. Murine cDNA clones associated with N-MYC were separated from (lambda)gt11 cDNA library constructed by using mRNA from the macrophage cell line, RAW264 cells. Sequencing analysis of the longest cDNA clone N-MYCL showed that the length of the coding region was 18 bases shorter than that of the predicted full length N-MYC cDNA, and the 3' untranslated region had the 5' long terminal repeat (LTR) sequence of the Moloney-like proviral sequence, suggesting the expression of N-MYC by insertion of the proviral sequence. This suggests that expression of N-MYC plays a role in the establishment of macrophage cell line RAW264. Integration of LTR and overexpression of the N-MYC gene might have existed in the parental lymphoma cells, playing a role in the development of lymphoma or in the establishment of macrophage cell line.

Amino Acid Sequence↗