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Biomedical subjects

M Hijikata

Publications and source records attributed to M Hijikata.

At least 19 recordsLinked to original sources

Detection of a 5' end subgenome of hepatitis C virus terminating at nucleotide 384 in patients' plasma and liver tissues.

Quadri and Negro [Dig Liver Dis 2001; 33: 480] reported greater distribution of 5' end genomic RNA of hepatitis C virus (HCV) over its 3' end in the liver of patients with recurrent hepatitis C after liver transplantation. We not only confirmed their results by quantifying the 5' end subgenomes in various specimens by using dilution and real-time polymerase chain reaction methods, but also discovered that such subgenomes terminated at nucleotide (nt) 384 of the viral genome or in its immediate upstream. The subgenomes in the plasma uniformly, with a few exceptions, ended at this position, while those in the liver more heterogeneously at various points upstream of nt 384. Subgenome populations ending some points in the downstream of nt 384 were not detected. The amount of the 5' end subgenome, while fluctuating during the clinical course of the patients, exceeded that of the longer sized HCV genomes which included the intact genome, and, when the relative ratio of the 5' end subgenome increased, the amount of longer sized HCV RNA tended to decrease, suggesting a suppressive effect of the 5' end subgenome on viral replication.

Alanine Transaminase↗

Overproduced p73alpha activates a minimal promoter through a mechanism independent of its transcriptional activity.

p73, the gene for a protein related to the tumor suppressor p53, encodes several variants which bear distinct carboxy-terminal structures as a result of alternative splicing. We and others showed that these splicing variants have different transcriptional effects on promoters with a p53-binding consensus sequence (p53BCS). Here we show that when transiently overexpressed, p73alpha but not p73beta activated several minimal promoters without the p53BCS, while p73gamma and p73epsilon activated them to a much lesser extent than p73alpha, and p53 suppressed the promoters without p53BCS as reported previously. Moreover, the results of RNase protection and RNA transfection assays suggested that this activation occurred at the transcriptional level. Deletion analysis of p73alpha revealed that the transactivation domain of p73 was not involved in this activity and the C-terminal region of p73alpha which is a specific structure of this variant was essential, suggesting that this phenomenon occurs independent of the transactivation activity of p73alpha and that the C-terminal extension of p73alpha may affect the basal level of transcription.

Binding Sites↗

Cytoplasmic localization is important for transcription factor nuclear factor-kappa B activation by hepatitis C virus core protein through its amino terminal region.

We previously reported that hepatitis C virus core protein (core) activates the transcription factor nuclear factor-kappa B (NF-kappa B) when expressed transiently. In the present study, we investigated the relationship between the NF-kappa B activation capacity and subcellular localization of the core. By changing the subcellular localization of the C-terminally truncated core from the nucleus to the cytoplasm, NF-kappa B was activated. In addition, NF-kappa B activity was augmented by forcing the mutated core to move to the endoplasmic reticulum. It was also suggested that the region from aa 21 to 80 of the core is involved in the activation of NF-kappa B.

3T3 Cells↗

Transcriptional activities of p73 splicing variants are regulated by inter-variant association.

p73 has been identified as a gene that encodes a protein with significant identity with the tumour suppressor p53. The main structural difference between p73 and p53 is the additional C-terminal region of p73. Six isoforms of p73 with differing C-terminal structures, alpha, beta, gamma, delta, epsilon and xi, have been reported. These variants differ in transcriptional activity on p53-responsive promoters. Here we report a possible mechanism of transcriptional activation by p73 splicing variants. C-terminal deletion mutants of p73 alpha showed a significantly higher level of transcriptional activity than wild-type p73 alpha, suggesting that the C-terminal structure of p73 alpha functions to repress the transcriptional activity of p73 alpha. The results of immunoprecipitation assays and two-hybrid assays in mammalian cells showed that the p73 variants interacted with each other, but not with p53. The transcriptional activity of p73 beta was reduced by co-expression with either p73 alpha or p73 epsilon, which bears an identical C-terminal structure to p73 alpha. Co-expression of the C-terminal portion of p73 alpha or p73 epsilon with p73 beta also resulted in reduced transcriptional activity. Moreover, we observed that the level of endogenous p21 protein induced by p73 beta was decreased by co-expression of full-length p73 epsilon or the C-terminal region of p73 alpha or p73 epsilon. These observations suggest that p73-mediated gene expression is regulated by the interactions of p73 splicing variants in the cell.

Animals↗

p73beta, a variant of p73, enhances Wnt/beta-catenin signaling in Saos-2 cells.

The Wnt/beta-catenin pathway and p53 are very common targets for genetic alterations in colorectal cancer, and relationships between them have been reported. Here, we describe the relation between Wnt/beta-catenin signaling and the p53-related gene p73. p73, but not p53, activated a promoter containing the Tcf-binding sequence in Saos-2 cells, and the degree of activation was positively correlated with that on a p53-responsive promoter. Moreover, p73beta enhanced Wnt/beta-catenin signaling synergistically with Wnt-3a or exogenously expressed beta-catenin, unlike p53, and the enhancement was not caused by the accumulation of beta-catenin. These results show that the effects of p73 on Wnt/beta-catenin signaling differ from those of p53.

Base Sequence↗

Single nucleotide polymorphisms of the mannose-binding lectin are associated with susceptibility to primary biliary cirrhosis.

Although the immunopathogenesis of primary biliary cirrhosis (PBC) remains unknown, familial clustering of patients with PBC suggests an important role for genetic factors. In addition, recent data support the thesis that the mucosal immune response against intraluminal pathogens may be involved with the onset of PBC. Mannose-binding lectin (MBL) is a key factor in innate mucosal defenses and has several key single nucleotide polymorphisms (SNPs). To study whether MBL gene SNPs are associated with susceptibility to PBC, we studied 65 patients with PBC and 218 controls by polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) and sequence specific priming-polymerase chain reaction (SSP-PCR) to examine four polymorphic loci: two (H/L and X/Y) within the promoter region and the other two (P/Q and A/B) within exon-1. We also analyzed serum MBL concentrations. Interestingly, the prevalence of haplotype HYPA, leading to hyper-production of MBL, as well as HYPA/HYPA genotype were significantly increased in PBC compared to controls (0.53 vs. 0.44, P=0.031; 33.9%vs. 17.0%, P=0.003, respectively). Furthermore, individuals homozygous for HYPA had a significantly increased risk for PBC (odds ratio (OR)=2.51, 95% confidence interval (CI)=1.34-4.66). Our results demonstrate that the MBL genotype can be significantly associated with increased risk for PBC, and further, that increased production of MBL plays a critical role in immunopathogenesis.

Carrier Proteins↗

Hepatitis C virus (HCV) genotype 1b sequences from fifteen patients with hepatocellular carcinoma: the 'progression score' revisited.

The genome of hepatitis C virus (HCV) associated with hepatocellular carcinoma (HCC) may have some characteristics which would barely be found in those of HCV from asymptomatic carriers (ASC). We analyzed 15 HCC patients who were infected with HCV genotype 1b (HCV-1b) for complete nucleotide sequences of the viral genomes. Of the 15 isolates, three were sequenced up to the first nucleotide of the 5'UTR, and six were sequenced to encompass the X-tail at the 3' end: sequencing of at least three-quarters of the 5'UTR and entire polyprotein-ORF was accomplished in all 15 isolates. Analyses of these sequences together with those reported previously by Nagayama et al. [Hepatology; 31 (2000) 745] suggested that nine residues (nt 119 of 5'UTR and aa 90, 434, 938, 962, 1176, 1412, 2143, and 2774 of polyprotein) might be useful to discriminate HCC-type sequences from ASC-type ones. The 'progression score' was 1.4+/-0.9 in ASC versus 3.7+/-1.5 in HCC (P=3.87E-07) when calculated with the Nagayama et al.'s seven residues, but was 1.4+/-0.6 versus 4.6+/-1.9 (P=1.33E-09) with our nine residues: a greater difference between HCC and ASC was achieved in the latter system. Further analyses, by increasing the sample size and/or by extending the comparison to include entire 5'UTR and 3'UTR/X-tail, may thus contribute to define the 'progression score' more appropriately.

Journal Article↗

Hepatitis C virus core protein enhances the activation of the transcription factor, Elk1, in response to mitogenic stimuli.

Mitogen-activated protein kinase (MAPK) pathways play key roles in cell proliferation, transformation of mammalian cells, and the stress response. We and other investigators showed that hepatitis C virus (HCV) core protein has an oncogenic potential, but its mechanism has remained unknown. We previously demonstrated that the MAPK-extra-cellular signal-regulated kinase (ERK) kinase (MEK)-ERK pathway and its downstream target, the serum response element (SRE), is activated in BALB/3T3 cells producing HCV core protein. To elucidate the precise mechanism by which HCV core protein activates the MEK-ERK pathway, we transiently expressed HCV core protein in several cell lines and studied the signal transduction of the pathway, using Gal4-Elk1 luciferase assay, in vitro kinas assay of MAPK, and Western blotting analysis. We discovered that, in the presence of mitogenic signal, HCV core protein enhanced Elk1 activation working downstream of MEK without affecting ERK activity and Elk1 phosphorylation. Our data suggest that HCV core protein may activate Elk1 through a pathway alternative to the typical phosphorylation cascade. These findings might give new insights into the role of HCV in hepatocarcinogenesis.

3T3 Cells↗

Effects of mutation in hepatitis C virus nonstructural protein 5A on interferon resistance mediated by inhibition of PKR kinase activity in mammalian cells.

The IFN-induced double-stranded RNA (dsRNA)-activated protein kinase PKR is one of the key molecules in the antiviral effects of IFN. To clarify the effects of hepatitis C virus nonstructural protein 5A (NS5A) on antiviral activity of IFN, in particular on PKR kinase activity, in mammalian cells, we established inducible NS5A-expressing cell lines derived from human osteosarcoma (Saos-2). The cells expressing NS5A derived from an IFN-resistant clone (NS5A-lb) that interacted with endogenous PKR in vitro, showed a suppressive effect on IFN function as determined by interference with vesicular stomatitis virus (VSV) infection, whereas NS5A (NS5A-2a) from an IFN-sensitive clone did not block the antiviral effect of IFN. A mutant with deletion of the IFN sensitivity determining region (ISDR) in NS5A-1b (NS5A-AISDR) also interacted with PKR and suppressed its activity in vitro. However, neither NS5A-2a nor the C-terminal truncated mutant of NS5A-1b (NS5A-deltaC) blocked PKR activity. These observations confirmed the previous report that the inhibitory effect of NS5A on IFN activity is mediated at least in part by the repression of PKR. In addition, we showed that IFN sensitivity was determined not only by the ISDR but that the involvement of the C-terminal region of NS5A-1b is important for the suppression of PKR activity.

Amino Acid Sequence↗

Regulation of Fas-mediated apoptosis by NF-kappaB activity in human hepatocyte derived cell lines.

Nuclear Factor-kappaB (NF-kappaB) is known to be one of the key regulators of genes involved in survival signaling. The purpose of this study is to investigate the role of NF-kappaB activity in signaling events related to cell survival in hepatocytes, which has been supposed to be one of the most sensitive organs against Fas-induced cytotoxicity. The functions of NF-kappaB activity on Fas-mediated apoptosis in different human cell lines were investigated by a magnetic concentration system for cells with exogenous protein production. We demonstrated that the activation of NF-kappaB was triggered by anti-Fas treatment in hepatocyte derived cell lines, HepG2 and Huh-7 cells. Overexpression of kinase-inactive NF-kappaB-inducing kinase (NIK) and IkappaB kinase (IKK) inhibited the activation of NF-kappaB introduced by anti-Fas treatment in these cells. Notably, inactivation of NF-kappaB by the production of IkappaB-alpha protein made these cells more susceptible to apoptosis induced by Fas stimulation. In contrast, transient expression of NIK showed a suppressive effect on Fas-mediated apoptosis in the same cell lines. These findings suggest the involvement of NF-kappaB in suppression of Fas-mediated apoptosis in human hepatocyte derived cell lines, in which concomitant activation of this transcriptional factor was observed through the stimulation of Fas signaling.

Apoptosis↗

Genetic polymorphism of the MxA gene promoter and interferon responsiveness of hepatitis C patients: revisited by analyzing two SNP sites (-123 and -88) in vivo and in vitro.

We have previously reported a single nucleotide polymorphism (SNP) at nucleotide (nt) position -88 (G or T) within an interferon-stimulated response element-like sequence in the promoter region of the MxA gene, which correlated with responsiveness of hepatitis C patients to interferon. Upstream of it, we then identified another SNP (C or A at nt -123) and investigated whether this SNP also correlates with interferon responsiveness. The two SNPs showed a high linkage to each other: all the individuals having G at -88 had C at -123, and 73% of those having T at -88 had A at -123. As was expected from this observation, the SNP at -123 also exhibited a correlation with interferon responsiveness (C/C homozygotes were more frequent among nonresponders than among responders: 65% of 107 vs. 40% of 52, p = 0.0028). These in vivo data from patients were further supported by results from in vitro experiments. The MxA promoter sequence with A at -123 and T at -88 showed about 4-fold higher activity of upregulating the downstream reporter gene than that with C at -123 and G at -88, in a luciferase reporter assay.

GTP-Binding Proteins↗

Cleavage of hepatitis C virus nonstructural protein 5A by a caspase-like protease(s) in mammalian cells.

Nonstructural 5A protein (NS5A) of hepatitis C virus (HCV) is localized in the cytoplasm although it has a functional nuclear localization signal. To clarify the determinant of NS5A cytoplasmic localization, various N- or C-terminal deleted NS5A mutants were generated and their subcellular localization was analyzed in cell lines after transient expression. N-terminal deleted forms of NS5A were localized in the nucleus, and the sequence of the N-terminal 27 amino acids of NS5A had sufficient function to cause retention of a normally nuclear protein in the cytoplasm. These observations indicated that cytoplasmic localization of NS5A is determined primarily by the N-terminal region of the molecule. In addition, we found proteolytic processing of NS5A in transiently expressing cells. In these cells, cleavage occurred at a few sites located in the N- and C-terminal regions of NS5A. This cleavage in cells was enhanced by apoptotic stimuli and was inhibited by the caspase inhibitor Z-VAD-FMK, suggesting that a caspase-like protease(s) contributes to the cleavages of NS5A. Based on the results of mutational analysis of NS5A, we predicted one cleaved form, which had lost both the N- and the C-terminal portions of NS5A, to be composed of amino acid residues 155 to 389. Peptide containing the same amino acid sequence as this cleaved product was localized in the nucleus. Furthermore, we found that a fusion protein consisting of Gal4 DNA-binding domain fused with this cleaved form showed transcriptional activity only when the alpha-catalytic subunit of protein kinase A (PKA) was coproduced, suggesting that the transcriptional activity of this product was regulated by PKA. These results suggested that the cleavage product of NS5A by a caspase-like protease(s) plays a role in transcriptional regulation of the host cell gene(s) in HCV-infected cells.

Amino Acid Sequence↗

CYP2D6 polymorphism and the presence of anti-LKM-1 in patients with chronic hepatitis C.

Anti-LKM-1 autoantibodies are directed mostly at cytochrome P450 2D6 (CYP2D6) autoantigen, whose activity ranges from "complete deficiency" to "extensive metabolism" due to genetic polymorphism. We aimed to find any relevance of CYP2D6 alleles to the presence/absence of anti-LKM-1 in Japanese patients with chronic hepatitis C. The frequency of an extensive metabolizer-type allele (CYP2D6*1) in anti-LKM-1-positive patients was higher than that in anti-LKM-1-negative patients (0.800 vs 0.431; P = 0.0035), while the CYP2D6*10 allele with moderately reduced activity was less frequent in the former than the latter (0.050 vs 0.389; P = 0.0069). Moreover, the rate of homozygosity for CYP2D6*1 showed a striking difference between the two groups (70% vs 19%; P = 0.0021). These findings suggest that a genetic predisposition to produce the enzyme CYP2D6 of extensive metabolizer-type is associated with the induction of anti-LKM-1 in chronic hepatitis C patients.

Alleles↗

Functional impairment of p73 and p51, the p53-related proteins, by the human T-cell leukemia virus type 1 Tax oncoprotein.

We have previously demonstrated that the human T-cell leukemia virus type 1 (HTLV-1) Tax oncoprotein represses the trans-activation function of p53 tumor suppressor protein. Recently, several proteins with sequence homology to p53 have been identified. In this study, we demonstrated that Tax represses the trans-activation functions of p73alpha, p73beta, and p51A, the p53-related proteins, as well as p53. Moreover, a mutant Tax of coactivator CBP-binding site (K88A), which activated NF-kappaB but not CREB pathway, could not repress the p73 nor p51 trans-activation functions, indicating that CBP-binding domain of Tax is essential for the suppression of their functions. Using proteins of Gal4-fused N-terminal region of p73 and p51, we showed that Tax-mediated inactivation of p73 or p51 requires for their N-terminal trans-activation domains. Furthermore, only the putative N-terminal trans-activation domains of them did not have enough transcriptional activities and their adjacent regions are essential for their full trans-activation, suggesting the existence of their second trans-activation subdomains. Thus, HTLV-1 Tax inactivated the p53-related proteins through their N-terminal trans-activation domains.

DNA-Binding Proteins↗

Latent hepatitis B virus infection in healthy individuals with antibodies to hepatitis B core antigen.

Several recent reports have shown that hepatitis B virus (HBV) could be frequently transmitted to the recipients from donors who have antibodies to hepatitis B core antigen (anti-HBc) through liver transplantation. We provide here the molecular evidence of latent HBV infection accompanied with ongoing viral replication in the liver tissue of anti-HBc-positive healthy individuals. HBV DNA was detectable in 13 of 14 healthy donors who were positive for both anti-HBc and antibodies to hepatitis B surface antigen (anti-HBs), but in none of 3 who were positive for anti-HBs alone. The detected HBV genomes from these subjects included covalently closed circular DNA and pregenomic RNA, the replication intermediate of HBV. Notably, 5 of 7 cases tested were predominantly infected with wild type HBV strains without any mutations in the precore and core promoter regions under the presence of circulating antibody to hepatitis B e antigen. Interestingly, a predominant clone detected in one donor showed a 63-nucleotide deletion in the precore region including an encapsidation signal sequence. Our findings indicate that the majority of healthy individuals positive for anti-HBc, which had been assumed to denote a past history of transient HBV infection, were latently infected with the episomal form of HBV accompanied by ongoing viral replication and few nucleotide mutations in the precore and core regions.

Adult↗

TT virus (TTV) genotypes in native and non-native prostitutes of Irian Jaya, Indonesia: implication for non-occupational transmission.

We investigated prostitutes in Irian Jaya, an Indonesian territory of New Guinea, to know whether TT virus (TTV) is sexually transmitted and what genotypes of TTV exist there. An ORF2 region of the TTV genome was analyzed for 44 isolates from prostitutes (19 were Irian Jaya natives but 25 were immigrants from Java or other islands of Indonesia) and 26 isolates from women of child-bearing age in Surabaya as a control. The WX(7)HX(3)CX(1)CX(5)H motif sequence of the ORF2 was compared across the 70 Indonesian isolates with a reference of 47 Japanese isolates (filed in databases) and the prototype TTV isolate TA278. A total of 77 different sequences were generated from the comparison, but a phylogenetic analysis suggested that they could be divided into three categories: group A, group B and others (the third group was highly diverse). Interestingly, most of the Indonesian isolates belonged to group B (74%): this rate was considerably higher than that observed previously in Japanese isolates. Group B isolates were further compared for the N-terminal 95 amino acids of the ORF2, with a result that the natives of Irian Jaya had a different pattern of genotype distribution from other groups. In particular, 9 out of 19 isolates from the Irian Jaya-natives were co-classified under a distinct branch, to which none of the other Indonesian and Japanese isolates belonged. Our data indicate that TTV genotypes reflect the birth place of the infected prostitutes rather than their work environment, and thus suggest that an infection is more likely during the early period of life than through sexual transmission. In addition, the presence of an Irian Jaya-specific genotype is intriguing from an anthropological and viral evolutionary point of view, because Irian Jaya has been isolated from contact with other areas for a long time.

Adolescent↗