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Kinetic profile of a heterocyclic HCV replicon RNA synthesis inhibitor.

Recently, a benzo-1,2,4-thiadiazine was shown to be a potent, specific inhibitor of the hepatitis C virus (HCV) RNA polymerase [J. Biol. Chem. 277 (2002) 32327]. Herein, we present several lines of evidence to demonstrate that thiadiazine compound 4 (C(21)H(21)N(3)O(4)S) is highly synergistic with interferon-alpha (IFN-alpha) and disrupts HCV replicon RNA synthesis with a distinct kinetic profile. A time course analysis after a single treatment with 5 microM compound 4 showed a loss of viral RNA consistent with replicon RNA half-life, suggesting inhibition of 90% of ongoing or newly initiated replicative intermediates. This finding is consistent with the mechanism of action recently reported for compound 4, an RNA synthesis initiation inhibitor [J. Biol. Chem. 278 (2003) 16602]. Further, unlike IFN-alpha, an immediate reduction of HCV replicon RNA synthesis was apparent upon addition of compound 4. Treatment with IFN-alpha showed a delay of approximately 4h prior to inhibition of viral RNA replication, consistent with its signaling kinetics.

Antiviral Agents↗

Subproteomic study of hepatitis C virus replicon reveals Ras-GTPase-activating protein binding protein 1 as potential HCV RC component.

Hepatitis C virus (HCV) RNA synthesis takes place on a detergent resistant membrane (DRM) structure. To identify potential cellular proteins related to HCV replication complexes (RC), we purified DRMs from HCV subgenomic replicon cells and its parental Huh7 cells. The proteins of DRM fractions were separated by two-dimensional gel electrophoresis and identified by mass spectrometry. Comparing with parental Huh7 cells, 60 proteins were up-regulated while 14 proteins were down-regulated in HCV replicon cells. Ras-GTPase-activating protein binding protein 1 (G3BP1), one of the elevated proteins, was found to be associated with HCV NS5B and knockdown of G3BP1 by siRNA in HCV replicon cells significantly reduced HCV replication, which may indicate it a potential component of HCV RC. These results suggest that HCV viral gene and proteins may regulate the presence of host cellular proteins in DRM, ensure appropriate concentrations of replication components, and hence control the rates or efficiencies of HCV replication.

Amino Acid Sequence↗

In vitro selected Con1 subgenomic replicons resistant to 2'-C-methyl-cytidine or to R1479 show lack of cross resistance.

The HCV polymerase is an attractive target for the development of new and specific anti-HCV drugs. Herein, the characterization of the inhibitory effect of 2'-C-Methyl-Cytidine shows that it is a potent inhibitor of both genotype 1b and 1a HCV replicon replication, both of laboratory-optimized as well as of NS5B clinical isolates-chimera replicons. The corresponding 5'-triphosphate derivative is a potent inhibitor of native HCV replicase isolated from replicon cells and of the recombinant genotype 1b and 1a HCV polymerase-mediated RNA synthesis. Resistance to 2'-C-Methyl-Cytidine was mapped to amino acid substitution S282T in the NS5B coding region. Cross-resistance was observed to 2'-C-Methyl-Adenosine but not to interferon alpha-2a, to non-nucleoside HCV polymerase inhibitors or to R1479, a new and potent nucleoside inhibitor of NS5B polymerase. In vitro studies mapped resistance to R1479 to amino acid substitutions S96T and S96T/N142T of the NS5B polymerase. These mutations did not confer resistance to 2-C-Methyl-Cytidine, thus confirming the lack of cross-resistance between these two HCV inhibitors. These data will allow the optimization of new polymerase inhibitors and their use in combination therapy.

Antiviral Agents↗

Differential amplification efficiency of pMB1 and p15A (ColE1-type) replicons in Escherichia coli stringent and relaxed strains starved for particular amino acids.

It was demonstrated previously that ColE1-type plasmids, the most commonly used vectors in molecular cloning, can be amplified in amino acid-starved relA mutants of Escherichia coli. Subsequent studies demonstrated that replication of at least some plasmids during amino acid starvation depends not only on the host relA allele but also on temperature and on the nature of deprived amino acid. Therefore, we investigated efficiency of amplification of two types of ColE1 plasmids (pMB1- and p15A-derived replicons) in E. coli relA+ and relA- hosts starved for different amino acids at 30 degrees C, 37 degrees C and 43 degrees C. We found differential amplification efficiency of plasmids pBR328 (pMB1-derived replicon) and pACYC184 (p15A-derived replicon) in the relA mutant during starvation for particular amino acids. Although amplification of pBR328 was negligible in the relA+ host, significant increase in pACYC184 content was observed in this strain starved for some (but not all) amino acids. The amplification efficiency of pBR328 and pACYC184 was found to be dependent on temperature. These results indicate that for maximal amplification of particular plasmid appropriate amino acid starvation and optimal temperature should be chosen. Our findings are in agreement with recently proposed model of the regulation of ColE1-type plasmid replication in amino acid-starved E. coli cells.

Amino Acids↗

Gene expression associated with interferon alfa antiviral activity in an HCV replicon cell line.

Interferon alfa (IFN-alpha)-based treatment is the only therapeutic option for chronic hepatitis C viral infection. However, the molecular mechanisms of IFN-alpha antiviral activity are not completely understood. The recent development of an HCV replicon cell culture system provides a feasible experimental model to investigate the molecular details of IFN-induced direct antiviral activity in hepatocytes. In this report, we show that IFN-alpha can effectively inhibit HCV subgenomic RNA replication and suppress viral nonstructural protein synthesis. Using cDNA microarray analysis, we also show that the replicon cells have different gene expression profile compared with the parental hepatoma cells (Huh7). IFN-alpha can induce a number of responsive genes in the replicon cells. One of the genes, 6-16 (G1P3), can enhance IFN-alpha antiviral efficacy. In addition, we demonstrate that IFN-alpha can significantly activate STAT3 in hepatoma cells, suggesting that this pathway plays a role in IFN-alpha signaling. In conclusion, our results indicate that IFN-alpha antiviral activity is associated with activation of STAT3-signaling pathway and intracellular gene activation. Our results also suggest that IFN-alpha-induced target genes may play an important role in IFN-alpha anti-HCV activity.

Antiviral Agents↗

Alphavirus replicon particles as candidate HIV vaccines.

Replicon particles based on Venezuelan equine encephalitis virus (VEE) contain a self-replicating RNA encoding the VEE replicase proteins and expressing a gene of interest in place of the viral structural protein genes. Structural proteins for packaging of replicon RNA into VEE replicon particles (VRPs) are expressed from separate helper RNAs. Aspects of the biology of VEE that are exploited in VRP vaccines include 1) expression of very high levels of immunogen, 2) expression of immunizing proteins in cells in the draining lymph node, and 3) the ability to induce mucosal immunity from a parental inoculation. Results of experiments with VRPs expressing green fluorescent protein or influenza virus hemagglutinin (HA) demonstrated that specific mutations in the VRP envelope glycoproteins affect both targeting in the draining lymph node and efficiency of the immune response in mice. VRPs expressing either the matrix-capsid portion of Gag, the full-length envelope gp160, or the secreted gp140 of cloned SIVsm H-4i were mixed in a cocktail and used to immunize macaques at 0, 1, and 4 months. Neutralizing antibodies against SIVsm H-4 were induced in 6 of 6 vaccinates and CTL in 4 of 6. An intrarectal challenge with the highly pathogenic SIVsm E660 was given at 5 months. A vaccine effect was seen in reduced peak virus loads, reduced virus loads both at set point and at 41 weeks postchallenge, and preserved or increased CD4 counts compared to controls. A candidate VRP HIV vaccine expressing Clade C Gag contains a sequence that is very close to the South African Clade C consensus and was selected from a recent seroconverter in the Durban cohort to represent currently circulating genotypes in South Africa. A GMP lot of this vaccine has been manufactured and tested for a phase I trial in the first months of 2002.

AIDS Vaccines↗

Clusters of replicons that fire simultaneously may be organized into superloops.

To study the relation between replicon initiation and nuclear organization of DNA, mouse erythroleukemia F4N cells were irradiated with 60Co source and the rates of initiation of DNA synthesis were determined by a sensitive assay based on the introduction of Trioxsalen cross-links in DNA in vivo and determination of the amount of short nascent DNA fragments synthesized between the cross-links. In parallel, nuclear organization of DNA was monitored using the nucleoid sedimentation technique. The results show that DNA initiation rate and relative nucleoid sedimentation change sharply and simultaneously at doses of about 1 Gy, which suggests the existence of relationship between them. This suggestion was supported by the finding, that during the after-irradiation period, first DNA organization was restored and only after this process had been completed, the restoration of replicon initiation commenced. When cells were treated with novobiocin, an agent that is known to slow down the recovery of nucleoid sedimentation rate, initiation of DNA synthesis was also postponed. A hypothesis is put forward that replicon clusters represent groups of adjacent DNA loops organized in superloop domains and that the intact superloop domain structure is necessary for activation of the cluster.

Animals↗

DNA replication in Physarum polycephalum: bidirectional replication of DNA within replicons.

The direction of replication of DNA within replicons of Physarum polycephalum was studied by pulse-labelling with 5-bromouracil-deoxyriboside (BrdUrd) and 3H-adenosine deoxyriboside (dAdo), followed by ultraviolet- (UV) -photolysis and analysis of molecular weights of single strand DNA fragments on alkaline sucrose gradients. Newly made DNA within replicons at all stages of completion is split in two equal halves upon UV irradiation when BrdUrd was given at the time of initiation of DNA synthesis. This shows that replication within replicons of Physarum polycephalum starts at an origin located in the center of each unit, proceeding bidirectionally from this origin.

Bromodeoxyuridine↗

Measurement of 2,4-toluenediamine in urine and serum samples from women with Même or Replicon breast implants.

The objective of this matched case-control study was to determine whether women with Même or Replicon polyurethane-covered silicone breast implants are exposed to clinically significant levels of free 2,4-TDA from biodegradation of the polyurethane foam. Urine and serum samples were obtained from 61 patients with Même or Replicon breast implants and 61 controls on two separate occasions separated by 10 +/- 3 days. Free TDA was analyzed by gas chromatography combined with negative chemical ionization mass spectrometry with lower limit of quantitation in both urine and serum of 10 pg/ml. The results were correlated with the length of time since implantation. No patients or controls had detectable free 2,4-TDA in their sera. Thirty patients had quantifiable levels of free 2,4-TDA, and 18 had detectable levels in their urine. Controls had no quantifiable levels, but 7 subjects had detectable levels. The biodegradative half-life of the polyurethane foam was estimated to be 2 years. A risk assessment using the cancer potency estimate calculated by the FDA from rat data and the National Academy of Sciences methodology provided a theoretical lifetime risk of approximately one in one million. It was concluded that the polyurethane foam cover on the Même and Replicon breast implants biodegrades. The risk assessment of approximately one in one million derived from this study strengthens earlier conclusions by the Health Protection Branch (Canada) that there is no significant risk of cancer from exposure to the 2,4-TDA formed from this biodegradation.

Adult↗

Cloning and sequence analysis of a plasmid replicon from Lactococcus lactis subsp. cremoris FG2.

A replication region from one of the Lactococcus lactis subsp. cremoris FG2 plasmids was isolated by cloning of a 4.8-kb XbaI fragment into a replication probe vector and transformation into L. lactis LM0230. A 1.8-kb region within this fragment was sequenced and confirmed by PCR subcloning to encode a functional replicon in LM0230. The replicon consists of an open reading frame encoding a putative replication protein (Rep) of 386 amino acids and a non-coding region (ori) which features several structural motifs typical of other known replication origins, including a 22-bp iteron sequence tandemly repeated three and a half times, a 10-bp direct repeat and two sets of inverted repeats. The ori region could drive replication of its plasmid when supplied with the replication region in-trans. The lack of detectable single-stranded DNA during replication and the existence of extensive homology with other known lactococcal theta replicons strongly suggest that this region encodes a theta-replicating mechanism.

Journal Article↗

RNA-dependent RNA polymerase activity related to the 20S RNA replicon of Saccharomyces cerevisiae.

Saccharomyces cerevisiae contains two double-stranded RNA (dsRNA) viruses (L-A and L-BC) and two different single-stranded (ssRNA) replicons (20S RNA and 23S RNA). Replicase (dsRNA synthesis on a ssRNA template) and transcriptase (ssRNA synthesis on a dsRNA template) activities have been described for L-A and L-BC viruses, but not for 20S or 23S RNA. We report the characterization of a new in vitro RNA replicase activity in S. cerevisiae. This activity is detected after partial purification of a particulate fraction in CsCl gradients where it migrates at the density of free protein. The activity does not require the presence of L-A or L-BC viruses or 23S RNA, and its presence or absence is correlated with the presence or absence of the 20S RNA replicon. Strains lacking both this RNA polymerase activity and 20S RNA acquire this activity when they acquire 20S RNA by cytoduction (cytoplasmic mixing). This polymerase activity converts added ssRNA to dsRNA by synthesis of the complementary strand, but has no specificity for the 3' end or internal template sequence. Although it replicates all tested RNA templates, it has a template size requirement, being unable to replicate templates larger than 1 kb. The replicase makes dsRNA from a ssRNA template, but many single-stranded products due to a terminal transferase activity are also formed. These results suggest that, in contrast to the L-A and L-BC RNA polymerases, dissociation of 20S RNA polymerase from its RNA (or perhaps some cellular factor) makes the enzyme change its specificity.

Nucleotides↗

Proteome analysis demonstrates complex replicon and luteolin interactions in pSyma-cured derivatives of Sinorhizobium meliloti strain 2011.

Sinorhizobium meliloti was studied by proteomic analysis to investigate the contribution made by plasmid-encoded functions on the intracellular regulation of this bacterium. Protein profiles of strain 2011 were compared with those from its mutant strains which were either cured of their pRme2011a (also called pSyma) plasmid (strain 818), or contained an extensive deletion of this plasmid (strain SmA146). Plasmid pSyma contains the nodulation and nitrogen fixation genes and is 1.4 Mbp with an estimated coding potential of 1,400 proteins. However, under the growth conditions used we could detect 60 differences between the parent strain and its pSyma-cured derivative, strain 818. While the majority of these differences were due to regulatory changes, such as up- and downregulation, some proteins were totally missing in some strains. These 60 proteins were classified into 21 subgroups, A to U, based on their measured protein levels when the cells were grown in the presence or absence of luteolin. Comparisons were made between the different strains to assess the possible interactions of the different proteins of the subgroups and plasmid pSyma. These results suggest that pSyma has a role in the regulation of the expression of genes from the other replicons (3.5 Mbp chromosome and the 1.7 Mbp pSymB plasmid) present in the S. meliloti cells. Proteome analysis provides a sensitive tool to examine the functional organisation of the S. meliloti genome and the intracellular gene interactions between replicons and will provide a powerful analytical tool to complement the genome sequencing of strain 1021.

Bacterial Proteins↗

Occurrence of 20S RNA and 23S RNA replicons in industrial yeast strains and their variation under nutritional stress conditions.

We have characterized industrial yeast strains used in the brewing, baking, and winemaking industries for the presence or absence of cytoplasmic single-stranded 20S and 23S RNAs. Furthermore, the variation of intracellular concentrations of these replicons in brewing and laboratory strains under nutritional stress conditions was determined. Our results show a correlation between the relative abundance of these replicons and exposure of yeast to nutritionally stressful conditions, indicating that these RNAs could be employed as molecular probes to evaluate the exposure of 20S(+) and/or 23S(+) yeast strains to stress situations during industrial manipulation. During this study, several 20S(-)23S(+) Saccharomyces cerevisiae strains were isolated and identified. This is the first time that a yeast strain containing only 23S RNA has been reported, demonstrating that 20S RNA is not required for 23S RNA replication.

Blotting, Northern↗

Cointegrase, a naturally occurring, truncated form of IS21 transposase, catalyzes replicon fusion rather than simple insertion of IS21.

The bacterial insertion sequence IS21 contains two genes, istA and istB, which are organized as an operon. IS21 spontaneously forms tandem repeats designated (IS21)2. Plasmids carrying (IS21)2 react efficiently with other replicons, producing cointegrates via a cut-and-paste mechanism. Here we show that transposition of a single IS21 element (simple insertion) and cointegrate formation involving (IS21)2 result from two distinct non-replicative pathways, which are essentially due to two differentiated IstA proteins, transposase and cointegrase. In Escherichia coli, transposase was characterized as the full-length, 46 kDa product of the istA gene, whereas the 45 kDa cointegrase was expressed, in-frame, from a natural internal translation start of istA. The istB gene, which could be experimentally disconnected from istA, provided a helper protein that strongly stimulated the transposase and cointegrase-driven reactions. Site-directed mutagenesis was used to express either cointegrase or transposase from the istA gene. Cointegrase promoted replicon fusion at high frequencies by acting on IS21 ends which were linked by 2, 3, or 4 bp junction sequences in (IS21)2. By contrast, cointegrase poorly catalyzed simple insertion of IS21 elements. Transposase had intermediate, uniform activity in both pathways. The ability of transposase to synapse two widely spaced IS21 ends may reside in the eight N-terminal amino acid residues which are absent from cointegrase. Given the 2 or 3 bp spacing in naturally occurring IS21 tandems and the specialization of cointegrase, the fulminant spread of IS21 via cointegration can now be understood.

Base Sequence↗

Establishment of a new replicon generated from an integrational plasmid and a cryptic pUB110 origin-like region in Bacillus subtilis.

A Bacillus subtilis integrational plasmid pVG4 (7.3 kb) was constructed. It was composed of a part of pBR322 (Ap, OriC), a part of pUB110 (Nm), and a part of the spoOA gene. The origin region of pUB110 had been deleted over 1.4 kb. Surprisingly, the replicative plasmids (8 kb) were generated by transformation of B. subtilis BG83 with pVG4 on selection with Nm. Analysis of the total DNA indicated the presence of repeated DNA and that pVG4 did not appear to integrate at the spoOA locus. The new replicon termed pYV exhibited a quite different restriction pattern from pVG4 due to dramatic DNA rearrangements. Although some components initially present in pVG4 were either present in pYV (Ap, oriC, and Nm) or lost (spoOA), other ones were newly gained such as a chromosomal fragment and a pUB110-type origin-like region. The latter was identified by restriction sites mapping and limited sequence analyses. By PCR amplification, the origin region of pYV was shown to be present as a cryptic sequence in the chromosome of strain BG83. The chromosomal fragment integrated into pYV was at least 0.25 kb long and located in a 19-kb SfiI fragment mapping at 106 degrees. We propose that the establishment of the new replicon pYV is the result of a genetic recombination between the pUB110 part present in the integrational plasmid pVG4 and the cryptic origin region of pUB110 harbored in the chromosome of the recipient strain BG83 in relation with a particular role of neomycin selection.

Bacillus subtilis↗

Replicon typing of plasmids of phytopathogenic xanthomonads.

Replicon types of plasmids of phytopathogenic Xanthomonads have been identified. Plasmids of Xanthomonas oryzae pathovar oryzae belonged to types RepP, RepW, RepY, RepU, and RepF1 and 50% of the plasmids of different isolates of X.o.pv.oryzae belonged to type RepP. X.c.pv.citri contained plasmids belonging to RepF1 and RepF11. Of the 19 replicon probes used, only 9 (repP, repF1, repF11, repY, repQ, repW, repX, and repU) hybridized with various plasmids of Xanthomonas.

Bacterial Typing Techniques↗

Characterization of the replicon from the lactococcal theta-replicating plasmid pJW563.

The replication region of the lactococcal plasmid pJW563 was localized to a 2.3-kb EcoRI fragment. This DNA fragment was sequenced ans a 1155-bp open reading frame, repB563, encoding a putative protein RepB563 of 385 amino acids was found. An AT-rich noncoding region, repA563, was found upstream of repB563. This segment included several direct and inverted repeats. A downstream 591-bp open reading frame, ORF X, which was not necessary for replication, was putatively translationally coupled to repB563, RepB563 supplied in trans could support replication of a plasmid containing repA563 and a truncated repB563. This observation suggests that RepB563 is a trans-acting replication protein, and repA563 the cis-acting origin of replication, repA563, repB563, and the beginning of ORF X showed high homology to similar regions in a family of lactococcal theta-replicating plasmids. The repA DNA sequences and the RepB amino acid sequences of the plasmids were aligned and the consensus sequences generated. The comparison revealed highly conserved areas among this family of plasmids. In addition, variable domains emerged, presumably having a plasmid specific function, pVS40 and pC1305 were plasmids with replication proteins showing high homology to RepB563. Despite this homology, replication from repA563 could not be supported by the pVS40 or pC1305 replication protein supplied in trans. Likewise the pJW563 protein could not support replication from the pVS40 origin. pJW563 was found to be compatible with the pVS40 and pC1305 replicons. The results indicate that pJW563 belongs to the widespread family of lactococcal theta-replicating pladmids. Despite the high homology between their replicons, the interaction between the replication origin and the protein is highly specific in many cases rendering the plasmids compatible.

Amino Acid Sequence↗

Structural and segregational stability of various replicons in Actinobacillus actinomycetemcomitans.

Few vectors suitable for cloning in Actinobacillus actinomycetemcomitans, a periodontal pathogen, have been described. These plasmids were based either on the native A. actinomycetemcomitans replicon, pVT736-1, or derivatives of the IncP and IncQ family of plasmids. Their usefulness as cloning vectors is limited because of instability or size. Therefore, the ability of additional replicons to function in A. actinomycetemcomitans was evaluated. Derivatives of p15A, ColE1/f1, and pWV01 transformed A. actinomycetemcomitans efficiently and exhibited no structural instability in the new host. The stable maintenance of A. actinomycetemcomitans-specific DNA fragments inserted into the p15A derivative, pDMG4, demonstrated the ability of this plasmid to function as a cloning vector. In addition, pVT736-1 was used to clone selectable markers directly into A. actinomycetemcomitans. These constructs were structurally and segregationally stable.

Aggregatibacter actinomycetemcomitans↗