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Biomedical subjects

N Taniguchi

Publications and source records attributed to N Taniguchi.

At least 325 records · Page 18Linked to original sources

Gene expression of N-acetylglucosaminyltransferases III and V: a possible implication for liver regeneration.

N-acetylglucosaminyltransferases III and V (GnT-III and -V) are key enzymes in the synthesis of the branches of asparagine-linked oligosaccharides. Although their messenger RNAs (mRNAs) are expressed in various rat tissues, they are not detected in normal rat liver. Expression of the GnT-III and -V mRNAs, however, increased in regenerating liver after two-thirds partial hepatectomy compared with sham-operated rats. The enzymatic activities of GnT-III and -V increased in proportion to mRNA expression. To determine which type of cells in the liver have high activities of these glycosyltransferases, hepatocytes and nonparenchymal cells were separated by means of a two-step collagenase perfusion technique. GnT-III activity was only detected in nonparenchymal cells of normal rat liver. However, during liver regeneration, GnT-III activity increased and thus was also detectable in hepatocytes. GnT-V activity was detected in both types of cells. These data were supported by reverse transcription-polymerase chain reaction results. Although the mechanism underlying the induction of these glycosyltransferases is unknown, lectin blot analysis showed that oligosaccharides in many glycoproteins, including hepatocyte growth factor, a major growth factor associated with liver regeneration, were newly synthesized during liver regeneration. This is the first report on the expression of glycosyltransferases during liver regeneration and suggests that there are different mechanisms involved in regulation of the genes of GnT-III and -V during liver regeneration.

Animals↗

Role of heparin-binding epidermal growth factor-like growth factor as a hepatotrophic factor in rat liver regeneration after partial hepatectomy.

Several growth factors including hepatocyte growth factor (HGF) have been implicated in the regulation of liver regeneration. Recently, we reported that heparin-binding epidermal growth factor (EGF)-like growth factor (HB-EGF) has hepatotrophic effects in vitro. We investigated the role of HB-EGF as a hepatotrophic factor in regenerating rat liver after 70% partial hepatectomy. The level of HB-EGF messenger RNA (mRNA) in regenerating rat liver increased 1.5 hours after partial hepatectomy and reached a maximum (about sevenfold over normal) at 6 hours. In contrast, hepatic HGF mRNA levels increased at 12 hours and achieved maximal expression at 24 hours. HB-EGF protein expression increased about 2.8-fold over normal at 10 hours after partial hepatectomy. The number of EGF receptors, to which HB-EGF binds, decreased 6 hours after partial hepatectomy. HB-EGF mRNA levels increased in nonparenchymal cells (NPCs) at 6 hours after partial hepatectomy but not in hepatocytes. Using the reverse transcription-polymerase chain reaction (RT-PCR), HB-EGF gene expression was increased predominantly in Kupffer cells and sinusoidal endothelial cells but not in lipocytes and hepatocytes. These results indicated that HB-EGF may be an important growth factor, produced in an earlier phase rather than HGF, in the regenerating liver after partial hepatectomy by a paracrine mechanism.

Animals↗

[Physiological significance of superoxide dismutase isozymes].

Superoxide dismutases (SODs) scavenge superoxide anion and participate in an essential role as a defense system against oxidative stress in body. Cu,Zn-SOD is localized at cytoplasm. A defect in the Cu,Zn-SOD gene has been demonstrated in some cases of familial amyotrophic lateral sclerosis. Trisomy of chromosome 21 in Down's syndrome increases the level of this isozyme and causes the disease. Inactivation of Cu,Zn-SOD by glycation under hyperglycemic conditions may also be a critical factor for diabetic complication. The expression of the second isozyme, Mn-SOD localized at mitochondrial matrix, is regulated in a complex manner by many stimulants such as interleukin-1, -6, tumor necrosis factor, lipopolysaccharide, and tumor promoters phorbol ester (TPA) and okadaic acid. This isozyme seems to work as a defense mechanism against damage during inflammatory responses. The third isozyme, extracellular SOD, is highly glycosylated and has affinity for heparin sulfate. This may participate in scavenging superoxide in plasma and, therefore, missense mutation in heparin binding domain increases the serum level of this isozyme, although the physiological role is not clearly understood yet.

Amyotrophic Lateral Sclerosis↗

[Suppression of lung metastasis of B16 mouse melanoma cells by introduction of N-acetylglucosaminyltransferase III gene].

The beta 1-6 structure of N-oligosaccharides, formed by beta 1-6 N-acetylglucosaminyltransferase (GnT-V), is associated with metastatic potential. We established a highly metastatic subclone, B16-hm, from low metastatic B16-F1 murine melanoma cells. Introduction of the gene for beta 1-4 N-acetylglucosaminyltransferase (GnT-III) into B16-hm murine melanoma cells reduced the level of beta 1-6 structure by competing for the substrate, resulting in the suppression of lung metastasis in both syngeneic and nude mice, decreased invasiveness into the matrigel, and inhibition of cell attachment to collagen and laminin without affecting cell growth. The gene transfection altered the N-oligosaccharides of membrane glycoproteins, as measured by L-PHA and E-PHA binding. Our results demonstrated a causative role for beta 1-6 branches in the metastasis by gene transfection.

Animals↗

Localization of superoxide dismutases in Alzheimer's disease and Down's syndrome neocortex and hippocampus.

Abnormalities in the cellular regulation and expression of antioxidant enzymes may have a role in mechanisms of central nervous system aging and neurodegeneration. We therefore examined, using isozyme-specific antibodies and immunohistochemistry, the localization of copper, zinc-superoxide dismutase and manganese-superoxide dismutase in the frontal and temporal neocortices and hippocampi of aged controls and individuals with Alzheimer's disease or Down's syndrome. Two different antibodies to copper, zinc-superoxide dismutase and one antibody to manganese-superoxide dismutase were evaluated by immunoblotting of homogenates of human brain before use in immunohistochemistry. The copper, zinc-superoxide dismutase antibodies recognized a single band of proteins at 16 kd. The manganese-superoxide dismutase antibody detected a single band of proteins at 25 kd. Immunohistochemically, copper, zinc-superoxide dismutase and manganese-superoxide dismutase immunoreactivities were localized predominantly to neocortical and hippocampal pyramidal neurons and scarcely seen in glial cells in controls. In Alzheimer's disease and Down's syndrome, the distributions and intensities of these two forms of superoxide dismutase immunoreactivities were different as compared with controls. Copper, zinc-superoxide dismutase was enriched in pyramidal neurons undergoing degeneration, whereas manganese-superoxide dismutase was more enriched in reactive astrocytes than in neurons. In senile plaques, copper, zinc-superoxide dismutase-positive globular structures were surrounded by astrocytes highly enriched in manganese-superoxide dismutase. By double label immunohistochemistry, some pyramidal neurons coexpressed superoxide dismutases and tau, and a few copper, zinc-superoxide dismutase-positive structures in senile plaques colocalized with tau. Amyloid cores, diffuse plaques, and microglia scarcely showed colocalization with superoxide dismutase-positive structures. The observed changes in the cellular localization of superoxide dismutases in neocortex and hippocampus in cases of Alzheimer's disease and Down's syndrome support a role for oxidative injury in neuronal degeneration and senile plaque formation. The differential localization of copper, zinc-superoxide dismutase and manganese-superoxide dismutase in cerebral sites of degeneration suggests that cellular responses to oxidative stress is antioxidant enzyme specific and cell type specific and that these two forms of superoxide dismutase may have different functions in antioxidant mechanisms.

Adult↗

DNA cleavage induced by glycation of Cu,Zn-superoxide dismutase.

Human Cu,Zn-superoxide dismutase (Cu,Zn-SOD) undergoes site-specific and random fragmentation by non-enzymic glycosylation (glycation). Released Cu2+ from the glycated Cu,Zn-SOD probably facilitates a Fenton reaction to convert H2O2 into hydroxy radical, which then participates in the non-specific fragmentation [Ookawara et al. (1992) J. Biol. Chem. 267, 18505-18510]. In the present study, we investigated the effects of glycated Cu,Zn-SOD on cloned DNA fragments and nuclear DNA and analysed the formation of 8-hydroxydeoxyguanosine (8-OH-dG). Incubation of cloned DNA fragments with Cu,Zn-SOD and reducing sugars resulted in cleavage of the DNA. The extent of the cleavage corresponded to the reducing capacity of the sugar. Metal-chelating reagents, EDTA and bathocuproine, and an H2O2 scavenger, catalase, inhibited the DNA cleavage. Hydroxy radical scavengers and aminoguanidine, an inhibitor of glycation, also inhibited the reaction. Moreover, the glycation of Cu,Zn-SOD caused the substantial formation of 8-OH-dG in DNA. When isolated nuclei were incubated with CuCl2 plus H2O2, nuclear DNA cleavage was observed. Incubation of isolated nuclei with Cu,Zn-SOD that had been pre-incubated with glucose also resulted in nuclear DNA cleavage. These results suggest that hydroxy radical is produced through a Fenton reaction by Cu2+ and H2O2 released from the glycated Cu,Zn-SOD, and participates in nuclear DNA cleavage. This mechanism may partly explain the deterioration of organs under diabetic conditions.

8-Hydroxy-2'-Deoxyguanosine↗

A new variant Cu/Zn superoxide dismutase (Val7-->Glu) deduced from lymphocyte mRNA sequences from Japanese patients with familial amyotrophic lateral sclerosis.

We have identified a new mutant Cu/Zn superoxide dismutase (SOD1) deduced from the nucleotide sequences of peripheral blood lymphocyte mRNA from Japanese patients with familial amyotrophic lateral sclerosis (FALS). Sequence analysis of reverse transcriptase-initiated PCR amplified mRNA revealed a heterozygosity indicative of one normal allele and one variant allele with a T-->A transversion. This base change led to replacement of valine by glutamic acid at position 7 of 153-residue SOD1 molecule, and produced a new restriction site for Alu I in the exon 1. Restriction fragment length polymorphism analysis confirmed the linkage of this mutation with this type of FALS. Both enzymatic activity and protein of the SOD1 were reduced in red blood cells from the patient.

Adult↗

Glycation of human beta 2-microglobulin in patients with hemodialysis-associated amyloidosis: identification of the glycated sites.

beta 2-Microglobulin (beta 2M) is a major component forming amyloid deposits in patients with hemodialysis-associated amyloidosis (HAA), a serious complication of long-term hemodialysis. Recently, we demonstrated that beta 2M modified with the Maillard reaction is a definite constituent of amyloid deposits in patients with HAA. Our further study demonstrated that this modified beta 2M induces not only chemotaxis of monocytes but also secretion of tumor necrosis factor-alpha, interleukin-1 beta, and interleukin-6 from macrophages, suggesting the potential link of glycation of beta 2M by the Maillard reaction to the pathogenesis of HAA. The present study was undertaken to identify the glycated site(s) of beta 2M purified from long-term hemodialysis patients as well as beta 2M incubated with glucose in vitro. Borotritide-treated beta 2M was cleaved by endoproteinase Lys-C, and peptides were isolated by reverse-phase high-performance liquid chromatography, followed by amino acid sequence analysis and fast atom bombardment mass spectrometry to identify the glycated site. The glycated sites of beta 2M formed in vivo were found to be almost the same as those of glycated beta 2M in vitro. The primary glycated site was the alpha-amino group of the amino terminal isoleucine. Other minor sites were the epsilon-amino groups of Lys-19, -41, -48, -58, -91, and -94. Computer graphics of the three-dimensional structure of beta 2M suggested that the high specificity for the glycated site at Ile-1 may be explained by its high solvent accessibility and the nearby imidazole group of His-31 as an acid-base catalyst of the Amadori rearrangement.

Adult↗

Selective suppression of IgG2a subclass in LEC rats during development.

The LEC rat is a mutant strain that has been established as a model of hepatitis and hepatoma. In addition to hepatic disorders, it has been found that this strain has a defect in T cell maturation, and has low levels of serum IgG. Sodium dodecylsulfate polyacrylamide gel electrophoresis (SDS-PAGE) and immunoblot analysis showed that low levels of serum IgG were largely due to reduction of the IgG2a subclass. Quantitative determination of IgG subclasses by enzyme-linked immunosorbent assay (ELISA) using subclass-specific antibodies indicated that IgG2b and IgG2c subclasses were increased during development in this strain, whereas the IgG2a subclass was markedly decreased. These results suggest that dysfunction of some helper T cells in LEC rats selectively suppress synthesis of the IgG2a subclass during development but not affect production of IgG2b and IgG2c.

Animals↗

Differential expression of bcl-2 and susceptibility to anti-Fas-mediated cell death in peripheral blood lymphocytes, monocytes, and neutrophils.

The recently identified Fas antigen (Ag) is a cell surface molecule that can mediate apoptosis. The cytoplasmic product of proto-oncogene bcl-2 has been shown to prolong the cellular survival by inhibiting apoptosis. To elucidate the physiologic significance of expression of both molecules, we examined the expression of Fas Ag and bcl-2 on blood leukocyte populations and evaluated their sensitivity to the cytolytic action of anti-Fas antibody. Although Fas Ag was expressed on a fraction of lymphocytes, both neutrophils and monocytes expressed Fas Ag constitutively. In contrast, there was marked difference among these leukocytes regarding bcl-2 expression. Lymphocytes expressed bcl-2 intensely, but monocytes showed weaker bcl-2 expression, and neutrophils were essentially absent for bcl-2 expression. Seemingly reflecting this lack of bcl-2-expression, neutrophils more easily underwent apoptotic cell death in vitro as compared with monocytes and lymphocytes. We showed that anti-Fas antibody affectively accelerated apoptotic cell death in neutrophils. However, the apoptosis-inducing effect of anti-Fas antibody was minimal on monocytes, and lymphocytes were resistant to this antibody. These results suggest that anti-Fas-mediated cell death may, in part, be determined by bcl-2 expression status in Fas+ lymphoid and hematopoietic cells.

Adult↗

Heparin-binding epidermal growth factor-like growth factor is an autocrine growth factor for human keratinocytes.

Since heparin-binding epidermal growth factor (HB-EGF) is a member of the EGF family and binds to EGF receptor, we tested recombinant HB-EGF for its ability to stimulate human keratinocyte proliferation. The effect of HB-EGF on human keratinocytes was dependent on the cell density. HB-EGF optimally increased the cell number by 1.8-fold at 1.0 ng/ml for a 4-day incubation period under subconfluent culture. In contrast, under confluent culture, 10 ng/ml HB-EGF optimally increased the DNA synthesis 2.1-fold. To examine the production of HB-EGF by human keratinocytes, the analysis of human keratinocyte-conditioned medium was undertaken by a combination of heparin affinity column chromatography, EGF receptor-stimulating assay, immunoblotting, and neutralization. Heparin column chromatography fractionated three activities, peaks 1, 2, and 3, which contained immunoreactive 30- and 27-, 19-, and 14.5-kDa bands, respectively. The anti-HB-EGF-blocking antibody neutralized the activities of peaks 2 and 3 by 38 and 22%, respectively, but did not neutralize the activity of peak 1 at all. The antibody reduced the cell growth by 37% for a 4-day incubation period. Northern blot analysis detected a 2.5-kilobase transcript of HB-EGF. The addition of 1 ng/ml HB-EGF optimally increased the levels of HB-EGF mRNA 5.4-fold at 1 h and TGF-alpha mRNA 3.1-fold at 3 h. Interestingly, the addition of TGF-alpha at 1 ng/ml to keratinocyte cultures enhanced the level of HB-EGF mRNA 10.2-fold at 6 h. 1 ng/ml EGF also increased HB-EGF mRNA levels 10.9-fold at 1 h. These results suggest that HB-EGF is an autocrine growth factor for human keratinocytes, and HB-EGF and TGF-alpha act not only by an autoinductive mechanism but also by mutual amplification.

Cell Division↗

Induction of manganese superoxide dismutase mRNA by okadaic acid and protein synthesis inhibitors.

We have reported that the phorbol ester phorbol 12-myristate 13-acetate (PMA) enhances the expression of manganese superoxide dismutase (Mn-SOD) mRNA [Fujii and Taniguchi (1991) J. Biol. Chem. 266, 23,142-23,146]. Okadaic acid, an inhibitor of type I and type IIa phosphatases, was also found to induce Mn-SOD mRNA at submicromolar concentrations in HeLa cells. Addition of cycloheximide resulted in superinduction of PMA- or tumour necrosis factor-stimulated expression of the mRNA, but not of okadaic acid-stimulated expression. When the effect of cycloheximide on the decay of Mn-SOD mRNA was examined by inhibiting mRNA synthesis with actinomycin D, cycloheximide had virtually no effect on mRNA stability, suggesting that accumulation of the mRNA was caused by activation by this reagent of transcription of the gene. PMA pretreatment of HeLa cells markedly enhanced cycloheximide-dependent superinduction of Mn-SOD mRNA. These data suggest that phosphorylation of several proteins is implicated in the regulation of Mn-SOD gene expression.

Animals↗

Zn-alpha 2-glycoprotein is a novel adhesive protein.

An amino acid sequence (Arg-Gly-Asp-Val) specifically associating with cell adhesion between cells and extracellular matrices was found on the human Zn-alpha 2-glycoprotein (Zn alpha 2gp) molecule. Although other mammalian cell lines such as breast carcinoma and melanoma did not, SMKT R-3 cells (human renal cell carcinoma) but not the kidney cell lines (Vero and COS7) preferentially attached and spread on a tissue culture plate coated with either blood plasma Zn alpha 2gp or seminal plasma Zn alpha 2gp. The spreading of SMKT R-3 cells on Zn alpha 2gp required divalent cations such as Mn2+ and Mg2+, and this spreading was inhibited by synthetic peptides such as RGDS, LRGDV and ELRGDV. These findings suggested that the RGDV region mainly interacted with the cell surface integrins to regulate cell attachment and spreading.

Amino Acid Sequence↗

Suppression of antioxidative enzyme expression by transforming growth factor-beta 1 in rat hepatocytes.

We have investigated the effect of transforming growth factor-beta 1 (TGF-beta 1) and three cytokines on expression of antioxidative enzymes, manganese-superoxide dismutase, copper, zinc-superoxide dismutase, and catalase in cultured hepatocytes of rat. While interleukin-1 beta and interleukin-6 induced manganese-superoxide dismutase gene expression, they slightly suppressed catalase gene expression in rat hepatocytes. TGF-beta 1 suppressed expression of all these antioxidative enzymes in time- and cell density-dependent manners. Furthermore, we examined the effect of TGF-beta 1 on expression of glutathione peroxidase and glutathione-S-transferase, which exhibit glutathione-dependent peroxidase activity in rat hepatocytes. Expression of two major classes of the rat glutathione-S-transferase subunits 1 and 2 was also reduced by TGF-beta 1, although expression of glutathione peroxidase was not affected. Flow cytometric analysis indicated that production of peroxides was increased in hepatocytes treated with TGF-beta 1. These data suggest that augmented production of hydrogen peroxide and its intermediate through suppression of antioxidative enzyme expression may participate in cellular injury or growth inhibition promoted by TGF-beta 1.

Animals↗

Heparin-binding EGF-like growth factor, which acts as the diphtheria toxin receptor, forms a complex with membrane protein DRAP27/CD9, which up-regulates functional receptors and diphtheria toxin sensitivity.

DRAP27, the monkey homolog of human CD9 antigen (DRAP27/CD9) and diphtheria toxin receptor (DTR) were expressed in mouse L cells. L cells transfected transiently with both DRAP27/CD9 and DTR cDNA bound approximately 10 times more diphtheria toxin (DT) than cells transfected with DTR alone. Stable L cell transfectants expressing both DTR and DRAP27/CD9 (LCH-1 cells) had 15 times more cell surface DT-binding sites and were 20 times more sensitive to DT than were stable L cell transfectants expressing DTR alone (LH-1 cells). Increased DT-binding and DT sensitivity were not due to increased DTR transcription or increased cell surface DTR protein. Co-immunoprecipitation of DRAP27/CD9 with DTR and chemical cross-linking suggest a tight association of these membrane-bound proteins. In addition, the identity of DTR and a growth factor (HB-EGF) was established. Immobilized DT specifically adsorbed HB-EGF precursor solubilized from transfected L cells and [125I]DT bound to immobilized recombinant HB-EGF. We conclude that DRAP27/CD9 associates tightly with DTR/HB-EGF and up-regulates the number of functional DTRs and DT sensitivity, and that HB-EGF is identical to DTR.

Amino Acid Sequence↗

Efficient induction of immunoglobulin production in neonatal naive B cells by memory CD4+ T cell subset expressing homing receptor L-selectin.

The humoral response in newborns is mainly restricted to IgM production, which may be attributable to the naive nature of both B and T cells at birth. In light of the current evidence that memory (CD45RO+) CD4+ T cells help B cell differentiation, the present study was undertaken to examine whether a specified population within memory CD4+ T cells could induce the maturation of neonatal naive B cells. In the conventional PWM-stimulated cultures, the generation of IgG- and IgA-producing cells in addition to IgM production by neonatal B cells was significantly enhanced by co-cultures with memory, but not naive, CD4+ T cells. Memory CD4+ T cells were further divided into two populations based on expression of homing receptor L-selectin. These memory CD4+ T cell subpopulations appeared to behave in different fashions concerning help for Ig production by naive (sIgD+) and mature (sIgD-) B cells. L-selectin-negative memory CD4+ T cells exhibited helper function for Ig secretion by mature B cells. Intriguingly, Ig production by neonatal B cells as well as adult naive B cells, although less than that by mature B cells, was efficiently promoted by L-selectin-positive memory CD4+ T cells rather than L-selectin-negative ones. The results suggest that the capability of neonatal naive B cells to secrete IgG and IgA can be elicited by appropriate T-cell signals, especially from the L-selectin-positive population within memory CD4+ T cells, seemingly indicating its possible role for isotype switching in B cells.

Adult↗

A novel mutation in Cu/Zn superoxide dismutase gene in Japanese familial amyotrophic lateral sclerosis.

Recently, several missense mutations in the Cu/Zn superoxide dismutase gene (SOD1) have been reported as a putative cause of chromosome-21q-linked familial amyotrophic lateral sclerosis (FALS). We have discovered a novel missense mutation (substitution of Thr for Ala4) in exon 1 (GCC to ACC) in two FALS patients from one Japanese FALS family. No mutations were found in 17 cases of sporadic ALS. The enzyme activity of recombinant fusion protein containing the Cu/Zn superoxide dismutase (SOD) with the Ala4-to-Thr mutation was significantly reduced in E. coli. On the other hand, in the expression system in insect cells using Baculovirus, the mutant SOD expressed an enzyme activity as high as wild-type SOD. These results suggest that the stability of SOD with the Ala4-to-Thr mutation is disrupted especially in the fusion protein. Autopsy was carried out on one of the two patients, and the pathological findings were typical of FALS with posterior column involvement. These results raise the possibility that mutation of the SOD1 is responsible for FALS with broader pathological involvement.

Amino Acid Sequence↗