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M Levrero

Publications and source records attributed to M Levrero.

At least 73 records · Page 4Linked to original sources

In vivo activity of the hepatitis B virus core promoter: tissue specificity and temporal regulation.

The contribution of the hepatitis B virus enhancers I and II in the regulation of the activity of the core and the X promoters was assessed in transgenic mice. Surprisingly, despite the presence of heterologous promoters linked 5' of the X gene, the transgene expression is mostly due to core promoter (Cp) activity present in the X coding sequence. Moreover, the restriction of Cp activity to hepatic tissue required the combined action of both enhancers I and II, whereas the proximity of these two enhancers was insufficient to confer tissue specificity on Xp activity. Furthermore, the liver-specific activity of the Cp was developmentally regulated in an enhancer I-independent manner.

Animals↗

Modulation of intracellular signal transduction pathways by the hepatitis B virus transactivator pX.

The mechanisms by which pX, the transactivator of the hepatitis B virus (HBV), exerts its effects on transcription of viral and cellular genes and affects cell-growth regulation have not yet been fully defined. Previous reports suggested the possibility of a direct interaction of pX, which lacks intrinsic DNA-binding activity, with components of the cellular transcription machinery. More recent investigations support the hypothesis that pX might activate cellular kinases involved in transcriptional regulation and growth control. We characterized the mechanisms of AP-1 transcription factor activation by pX and, in particular, the role of cellular proteins involved in the intracellular signal transduction of growth-factor receptors. The observation that the overexpression of c-fos and c-jun in the cells results in a clear augmentation of the effects of pX on TRE-directed transcription and the induction of the DNA-binding activity of c-jun/c-fos heterodimers by AP1-depleted nuclear extracts from pX-expressing cells strongly supports the involvement of post-translational modifications. In both HeLa and undifferentiated F9 cells, pX was able to increase the activity of exogenous transfected c-jun but not of c-jun mutants bearing mutations in the serine residues located in the amino-terminal transcriptional activation domain. Moreover, by use of Ha-ras and Raf-1 dominant negative mutants, we show that both Ha-ras and Raf-1 are required for pX-induced activation of c-jun transcriptional activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Increased rate of thrombin generation in hepatitis C virus cirrhotic patients. Relationship to venous thrombosis.

BACKGROUND: Venous thrombosis may complicate the clinical course of liver cirrhosis (LC), but the pathogenesis is still uncertain. We have previously demonstrated that antiphospholipid (aPL) antibodies were a risk factor for thrombosis. In the same study it was also evident that there was a higher prevalence of hepatitis C virus (HCV) infection in patients with thrombosis, and an association between anti-HCV positivity and aPL. METHODS: In a case-control study, 18 consecutive patients with LC, who had suffered from splanchnic venous thrombosis (n = 12), or thrombophlebitis (n = 6), were matched for age, sex, and degree of liver failure with 36 LC patients without thrombosis. RESULTS: In comparison to patients without thrombosis, patients with thrombosis had higher prevalence of HCV infection (p = 0.0027), positivity for aPL antibodies (p = 0.0003), and higher values of fragment F1+2, a marker of thrombin generation (p = 0.0083). While F1+2 values were similar in aPL (+) and aPL (-) patients, HCV patients had significantly higher values of F1+2 than patients with hepatitis B virus (HBV) infection and/or alcoholism (2.6 +/- 0.94 vs 1.5 +/- 0.66, p = 0.0001). CONCLUSIONS: These data suggest that in LC, HCV infection may contribute to clotting system activation, thus predisposing patients to venous thrombosis.

Adult↗

Cytotoxic T lymphocyte response to a wild type hepatitis B virus epitope in patients chronically infected by variant viruses carrying substitutions within the epitope.

Mutations that abrogate recognition of a viral epitope by class I-restricted cytotoxic T lymphocyte (CTL) can lead to viral escape if the CTL response against that epitope is crucial for viral clearance. The likelihood of this type of event is low when the CTL response is simultaneously directed against multiple viral epitopes, as has been recently reported for patients with acute self-limited hepatitis B virus (HBV) infection. The CTL response to HBV is usually quite weak, however, during chronic HBV infection, and it is generally acknowledged that this is a major determinant of viral persistence in this disease. If such individuals were to produce a mono- or oligospecific CTL response, however, negative selection of the corresponding mutant viruses might occur. We have recently studied two HLA-A2-positive patients with chronic hepatitis B who, atypically, developed a strong HLA-A2-restricted CTL response against an epitope (FLPSDFFPSV) that contains an HLA-A2-binding motif located between residues 18-27 of the viral nucleocapsid protein, hepatitis B core antigen (HBcAg). These patients failed, however, to respond to any of other HLA-A2-restricted HBV-derived peptides that are generally immunogenic in acutely infected patients who successfully clear the virus. Interestingly, DNA sequence analysis of HBV isolates from these two patients demonstrated alternative residues at position 27 (V --> A and V --> I) and position 21 (S --> N, S --> A, and S --> V) that reduced the HLA and T cell receptor-binding capacities of the variant sequences, respectively. Synthetic peptides containing these alternative sequences were poorly immunogenic compared to the prototype HBc18-27 sequence, and they could not be recognized by CTL clones specific for the prototype peptide. While we do not know if the two patients were originally infected by these variant viruses or if the variants emerged subsequent to infection because of immune selection, the results are most consistent with the latter hypothesis. If this is correct, the data suggest that negative selection of mutant viral genomes might contribute to viral persistence in a subset of patients with chronic HBV infection who express a narrow repertoire of anti-HBV CTL responses.

Acute Disease↗

Natural variants of cytotoxic epitopes are T-cell receptor antagonists for antiviral cytotoxic T cells.

It has been suggested that mutations within immunodominant cytotoxic T-lymphocyte (CTL) epitopes may be exploited by viruses to evade protective immune responses critical for clearance. Viral escape could originate from passive mechanisms, such as mutations within crucial CTL epitopes, either affecting major histocompatibility complex binding or T-cell antigen receptor (TCR) recognition. Additionally, it has recently been shown that substitutions of TCR contact sites can yield analogue peptides that can still interact with the T-cell receptor but be unable to deliver a full stimulatory signal, thus inducing anergy or acting as an antagonist for the TCR. We report here that hepatitis B virus isolates derived from two chronically infected patients display variant epitopes that act as natural TCR antagonists with the capacity to inhibit the CTL response to the wild-type epitope. During natural infection, TCR antagonist mutations of CTL epitopes could contribute to the development of viral persistence, especially if the antiviral CTL response is monospecific or the epitope is strongly immunodominant.

Amino Acid Sequence↗

Intracellular localization of full-length and truncated hepatitis C virus core protein expressed in mammalian cells.

The putative hepatitis C virus core protein has a predicted molecular weight of about 22 kD and contains two carboxy (COOH)-terminal hydrophobic domains. The cleavages generating the hepatitis C virus structural proteins (core, E1 and E2) are catalyzed by host signal peptidases. In the present study, we investigated the processing and intracellular localization of the hepatitis C virus core protein expressed in mammalian cells. Expression vectors encoding the entire core protein or COOH-terminal deletion mutants under the control of SV40 regulatory sequences were transfected in COS cells. Immunofluorescent staining with either polyclonal immunoglobulin or monoclonal anti-core antibodies showed that fragments containing the COOH-terminal hydrophobic stretch were retained in the cytoplasm of transfected cells, whereas truncated core proteins deleted of 28 or more residues were located in the nucleus. Our results suggest that a putative nuclear targeting sequence is contained in the first 40 residues of the core protein.

Amino Acid Sequence↗

Hepatitis B virus X gene product acts as a transactivator in vivo.

It has previously been shown that the hepatitis B virus X gene product, pX, transactivates homologous and heterologous transcriptional regulatory sequences of viruses and various cellular genes in vitro. However, there is no evidence about the reproducibility and the relevance of this phenomenon in vivo. In this study we crossbred transgenic mice expressing the X gene under the control of the human antithrombin III (ATIII) gene regulatory sequences with transgenics carrying either the chloramphenicol acetyl-transferase or the LacZ bacterial reporter genes driven by the HIV1-LTR, which is known to be activated in trans by pX. Expression of pX in the liver stimulates the HIV1-LTR driven expression of both chloramphenicol acetyl-transferase and beta-galactosidase reporter genes in double transgenic mice. No detectable increase in chloramphenicol acetyl-transferase expression was observed in tissues, such as the spleen, brain and heart, that do not express pX. Our results confirm the transactivating properties of pX in vivo for the first time and support the hypothesis that pX might indeed modify gene expression in HBV-infected hepatocytes and influence viral pathogenesis.

Animals↗

Induction of the DNA-binding activity of c-jun/c-fos heterodimers by the hepatitis B virus transactivator pX.

The hepatitis B virus (HBV) X protein (pX) is capable of activating transcription regulated by viral and cellular promoters containing binding sites for different transcription factors, including AP1. In this study we have analyzed the mechanisms of AP1 induction by pX. The hepatitis B virus transactivator was able to activate TRE (12-O-tetradecanoylphorbol-13-acetate response element)-directed transcription in different cell lines, including HepG2, HeLa, CV1, and PLC/PRF/5 cells. pX-induced AP1 activation in HepG2 cells was associated with an increase in the DNA-binding activity of c-Jun/c-Fos heterodimers, which was not dependent either on an increase in the overall amount of c-Fos and c-Jun proteins in the cells or on formation of dimers between pX and the two proteins, thus suggesting the involvement of posttranslational modifications of the transcription factor. The observation that the overexpression of c-Jun and c-Fos in the cells results in a strong augmentation of the effect of pX on TRE-directed transcription is additional evidence indicating the involvement of posttranscriptional modifications of c-Jun/c-Fos heterodimers. The increased AP1 binding observed in the presence of pX was unaffected by the protein kinase C inhibitors calphostin C and sphingosine and by the protein kinase A inhibitor HA1004, while it was almost completely blocked by staurosporine, a potent and nonspecific protein kinase inhibitor, suggesting that protein kinase C- and A-independent phosphorylation events might play a role in the phenomenon. The ability of pX also to increase TRE-directed transcription in cell lines in which AP1-binding activity is not increased (i.e., HeLa, CV1, and PLC/PRF/5 cells) suggests that pX can activate canonical TRE sites by different mechanisms as well.

Alkaloids↗

Ras- and Raf-dependent activation of c-jun transcriptional activity by the hepatitis B virus transactivator pX.

The mechanisms by which pX, the transactivator of the Hepatitis B Virus (HBV), exerts its effects on transcription of viral and cellular genes have not yet been fully clarified. While previous reports suggested the possibility of a direct interaction of pX, which lacks intrinsic DNA-binding activity, with components of the cellular transcription machinery, more recent investigations support the hypothesis that pX might activate cellular kinases involved in transcriptional regulation and growth control. We analysed the mechanisms of c-Jun transcription factor activation by pX and in particular the role of cellular proteins involved in the transduction of mitogenic signals (namely Ha-Ras and Raf-1). In both HeLa and undifferentiated F9 cells pX was able to increase the activity of exogenous transfected c-Jun but not of c-Jun proteins bearing mutations in the serine residues located in the amino-terminal transcriptional activation domain. We show by use of Ha-Ras and Raf-1 dominant negative mutants that both Ha-Ras and Raf-1 are required for pX-induced activation of c-Jun transcriptional activity. In addition we show that pX is able to cooperate with Raf-1 in c-Jun activation. Our results are consistent with the hypothesis that at least one site of action of pX is peripheral and is located upstream of the Ras genes products.

Cell Line↗

Trans-activation of epidermal growth factor receptor gene by the hepatitis B virus X-gene product.

The expression of the cellular gene coding for the epidermal growth factor (EGF) receptor (EGF-R) was assayed in the presence of hepatitis B virus (HBV) gene expression under different experimental conditions in human hepatoma-derived cells. First, transfection experiments of the well-differentiated HepG2 human hepatoma cell line using different expression vectors of the HBV X-region demonstrated that the X-gene product is capable of inducing EGF-R gene overexpression; in addition, by using a stable in vitro expression system for HBV, it was shown that EGF-R gene expression in these cells is greater than in the uninfected parent cells, and that this results in a three-fold increase in 125I-EGF binding. Finally, a CAT-expression assay was performed, indicating that regulatory regions of the EGF-R-gene are target sequences for X-protein trans-activation.

Carcinoma, Hepatocellular↗

Detection of replicative intermediates of viral RNA in peripheral blood mononuclear cells from chronic hepatitis C virus carriers.

Clinical and experimental evidence suggests the possible existence of one or more extrahepatic sites of HCV infection. In order to demonstrate the "in vivo" infection of lymphoid cells by HCV, we applied a nested PCR to total cytoplasmic RNA extracted from fresh or cultured peripheral blood mononuclear cells (PBMCs) of HCV chronically infected patients, using primers derived from the highly conserved 5' untranslated region of the HCV genome. The presence of virions in PBMCs occurs frequently, if not always, and is often accompanied by active viral replication. Moreover, the appearance of replicative intermediates after stimulation of cellular growth with mitogens suggests that latent genomes could undergo replication upon cellular activation and/or proliferation.

Adult↗

The hepatitis B virus X gene product transactivates the HIV-LTR in vivo.

It has previously been shown that the hepatitis B virus (HBV) X gene product, HBx, transactivates homologous and heterologous transcriptional regulatory sequences of viruses, including the human immunodeficiency virus type 1 (HIV1) long terminal repeat (LTR), and various cellular genes in vitro. To evaluate the transactivating function of HBx in vivo, we generated transgenic mice carrying the X open reading frame under the control of the human antithrombin III (ATIII) gene regulatory sequences. These mice express the 16 Kd HBx protein in the liver, as demonstrated by immunoprecipitation studies. Crossbreeding of HBx mice with transgenics carrying either the chloramphenicol acetyl transferase (CAT) bacterial or the lacZ reporter gene driven by the HIV1-LTR allowed us to demonstrate, for the first time, the in vivo transactivating function of HBx protein.

Animals↗

Accumulation of a cellular protein bearing c-myc-like antigenicity in hepatic and non-hepatic delta antigen expressing cells.

Patients with chronic but not acute hepatitis delta virus infection undergo a strong accumulation of a protein of cellular origin which specifically reacts with a panel of anti-c-myc antibodies and which is expressed in the same nuclei that express the delta antigen. In this paper we report on the in vitro characterization of this phenomenon. The delta antigen induced c-myc antigen accumulation can occur in vitro upon transfection of HBsAg positive and negative cell lines with HDAg expression vectors. Using recombinant vaccinia viruses expressing only p24 or p27 we demonstrate that structures common to the two isoforms of HDAg are responsible for the phenomenon, which is not restricted to cells of hepatic origin.

Antigens, Viral↗

Normalization of depressed natural killer activity after interferon-alpha therapy is associated with a low frequency of relapse in patients with chronic hepatitis C.

In the present study, we found that human recombinant interferon-alpha (rIFN-alpha) given at a dose of 3 x 10(6) units thrice weekly for three months, and 1.5 x 10(6) units thrice weekly for the next three months, was able to restore depressed natural-killer (NK) activity to normal values in 12 out of 21 chronic hepatitis C patients positive for anti-HCV antibodies. In all of these patients, NK normalization was still sustained after three months from suspension of therapy. Eighteen patients also showed a normalization of the alanine aminotransferase (ALT) level by the end of treatment (responder patients), independently of changes in NK activity. No significant improvement in either NK activity or aminotransferase levels was seen among 20 untreated patients. In 8 responder patients (1 with normalized and 7 with low NK activity), ALT levels returned to pre-therapy values within three months after suspension of rIFN-alpha administration (relapse). We found that patients who normalized NK activity had a lower frequency of relapse as compared to patients with low NK activity by the end of treatment (p > 0.01). Immunofluorescence analysis of biopsy-derived liver tissue revealed that rIFN-alpha was able to induce strong MHC class I antigen expression on hepatocytes of treated patients, but this was not related to the clinical course.

Adult↗

The hepatitis B virus (HBV) pX transactivates the c-fos promoter through multiple cis-acting elements.

The hepatitis B virus (HBV) X protein (pX) stimulates transcription regulated by cis-acting elements that control many viral and cellular genes, including the c-myc and the c-fos proto-oncogenes. Using several c-fos promoter deletion mutants, we found the serum-responsive element (SRE) located at -315, the modified TPA-responsive element located at -296 (fos-AP-1 binding site, FAP) and the region spanning from nucleotide -220 to -120, which contains an NF1-like site and several stretches of sequence homologous to the AP-2 consensus binding sites, to be responsive to pX. pX does not modify the pattern of the retarded complexes bound to the SRE/FAP region which, in our system, appears to be occupied by SRE-binding factors. The activation of the SRE does not involve complex formation between SRE-binding factors and pX, it is not associated with an increase in serum response factor binding to the SRE and it does not determine changes in SRE mobility-shift pattern.

Animals↗

The hepatitis B virus X protein transactivation of c-fos and c-myc proto-oncogenes is mediated by multiple transcription factors.

We have constructed two expression vectors in order to study the action of the HBV 17 Kd X protein on the c-fos and c-myc promoters. The results show that the promoters contain multiple elements that respond to X protein, suggesting involvement of multiple transcription factors. The exact mechanism of the interaction remains elusive, but our data allow speculation about the factors that may be influenced.

Chloramphenicol O-Acetyltransferase↗