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S Okoshi

Publications and source records attributed to S Okoshi.

At least 19 recordsLinked to original sources

Effect of interferon alpha and cell cycle progression on translation mediated by the hepatitis C virus 5' untranslated region: a study using a transgenic mouse model.

The effect of interferon alpha (IFN alpha) and the progression of the cell cycle on translation mediated by the 5' untranslated region (5'UTR) of hepatitis C virus (HCV) was evaluated in a transgenic mouse model containing the beta-galactosidase (beta-gal) gene under the control of the mouse albumin promoter and HCV 5'UTR. The transgene was exclusively expressed in the liver and specifically in hepatocytes around the periportal area. IFN alpha significantly suppressed the expression of both the beta-gal gene product and its enzymatic activity at 6 h after the treatment of the mice. The mRNA level of the transgene and endogenous albumin gene expression were not affected, so this suppression was considered to be specific to 5'UTR-directed translation. Phosphorylation of the Stat1 protein was observed in the liver extract 20 min after the treatment, thus confirming a specific known effect of IFN alpha in vivo. We suggest that suppression of 5'UTR-directed translation may be one of the mechanisms whereby IFN alpha exerts its anti-viral activity. We further investigated whether the restriction of 5'UTR-directed translation in periportal hepatocytes may be explained by the proliferative state of the cell. Transgene expression was slightly enhanced in the liver 48 h after partial hepatectomy when a substantial number of hepatocytes entered cell cycle progression. However, 5'UTR-directed translation could not be detected in hepatocellular carcinoma lesions in transgenic mice that were induced to develop such tumours. We suggest that the state of differentiation of the cell, and not its proliferative capacity, is important for supporting HCV expression. This animal model may be a useful tool to dissect the control of HCV expression and to search for ways to block viral replication.

5' Untranslated Regions↗

High viral loads, serum alanine aminotransferase and gender are predictive factors for the development of hepatocellular carcinoma from viral compensated liver cirrhosis.

BACKGROUND AND AIMS: The aims of the present study were to determine the occurrence rate of hepatocellular carcinoma (HCC) and to assess the risk factors for the development of HCC in compensated viral liver cirrhosis. METHODS: Two hundred and thirty-nine cirrhotic patients (65 hepatitis B surface antigen (HBsAg) positive, 165 hepatitis C virus (HCV) antibody positive (anti-HCV), and nine with both HBsAg and anti-HCV positivity) were studied. The Kaplan-Meier method evaluated by a log-rank test was used to estimate the cumulative probability of HCC development. Independent predictors of HCC development were estimated by using the Cox proportional hazard regression analysis. RESULTS: Dual infection manifested as HBsAg and anti-HCV positive was the highest risk of HCC. Multivariate analysis indicated that anti-HCV positive, HBsAg positive, and lactate dehydrogenase were independent predictors of the development of HCC among individuals with viral cirrhosis. In the HBsAg-positive group, a high-titer of HBV-DNA (more than 3.7 log genome equivalents (LGE)/mL) was most predictive of HCC development. In the anti-HCV-positive group, male gender and a high-titer of HCV-RNA (more than 1.0 Meq/mL) were predictive factors for the development of HCC. CONCLUSIONS: Individuals with high viral loads should be monitored for the development of HCC. Clinical efforts at eradicating or reducing the viral load may reduce the risk for HCC.

Alanine Transaminase↗

Molecular dissection of hepatitis C virus expression.

OBJECTIVE: The 5' untranslated region (5' UTR) of the hepatitis C virus genome is thought to be important for the control of viral gene expression and a likely target for therapeutic interception. A functional role of this viral gene segment was analyzed both in vivo and in vitro. METHODS: Transgenic mice carrying a reporter gene that contains the complete 5' UTR sequence were made. Cellular protein(s) which associate with the 5' UTR were analyzed by gel shift analysis and a following affinity purification. RESULTS: Transgenic mice revealed protein accumulation only in periportal hepatocytes around the portal triad and not in perivenous hepatocytes around the central vein. Gel shift analysis using mouse liver extracts provides further evidence that trans-acting proteins, which recognize a specific cis-acting element with the 5' UTR (an apparent stemmed structure formed by two noncontiguous RNA sequences), are present in adult mice but not in young mice. A similar 5' UTR RNA-protein complex was also detected with human liver extracts. CONCLUSION: The presence of cellular factor(s) which allow HCV 5' UTR to express in tissue and differentiation state-specific manner was suggested.

5' Untranslated Regions↗

Cytokine gene expression on glioma cell lines and specimens.

Expression of the cytokine genes in human glioma cell lines and specimens was studied. Primers for 7 different human cytokine, IL-1 beta, IL-6, IL-8, GM-CSF, TGF-beta 1, TNF-alpha and IFN-gamma were used to analyze messenger RNA transcripts by polymerase chain reaction (PCR). Messenger RNA encoding for IL-1 beta, IL-6, IL-8, GM-CSF and TGF-beta 1 was found to be expressed in some of glioma cell lines. And those showed a proliferative response to IL-1 beta. IL-8 mRNA was found in 2 of 5 low grade gliomas, in 8 of 9 high grade gliomas. TGF-beta 1 mRNA was found in all gliomas, in 1 of 2 normal brains. IL-1 beta mRNA was only found in normal brains. TNF-alpha and IFN-gamma were not found in glioma cell lines and specimens. IL-8 mRNA was apt to be found more frequently among high grade glioma specimens.

Adolescent↗