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A complex translational program generates multiple novel proteins from the latently expressed kaposin (K12) locus of Kaposi's sarcoma-associated herpesvirus.

The most abundantly expressed latent transcripts encoded by the Kaposi's sarcoma (KS)-associated herpesvirus derive from the genomic region surrounding open reading frame (ORF) K12 (kaposin A). Here we show that these transcripts, initially described as limited to ORF K12 itself, more frequently encompass upstream sequences spanning two sets of 23-nucleotide GC-rich direct repeats (DRs) (DR1 and DR2). Although the DRs lack AUG codons and were previously presumed to be noncoding, a monoclonal antibody raised to infected cells detected multiple polypeptides encoded by this region. These proteins are expressed during latency and upon induction of lytic viral replication in both primary effusion lymphoma (PEL) cell lines and KS tumors. Biochemical and genetic analyses reveal that these proteins are derived from variant translational initiation at CUG codons. The predominant translation product in the PEL cell line BCBL-1 derives from the 5'-most CUG codon in the transcript, resulting in a protein (termed kaposin B) which is encoded largely by the repeats themselves and which does not include K12 sequences. Other non-AUG codons in alternate reading frames are also used at lower efficiency, including one that initiates translation of a DR-K12 fusion protein (kaposin C) that is predicted to sort to a different subcellular locale than kaposin B. Thus, the products of the K12 region, which is the most abundantly transcribed region in latency, are surprisingly complex and may encompass multiple biological functions.

3T3 Cells↗

Identification of the hepatitis A virus internal ribosome entry site: in vivo and in vitro analysis of bicistronic RNAs containing the HAV 5' noncoding region.

Hepatitis A virus (HAV), a RNA virus of positive polarity, contains a long 5' noncoding region (5'NCR) that lacks the characteristic m7GpppN cap group of most eukaryotic messages. By creating bicistronic constructs that contain the bacterial chloramphenicol acetyltransferase gene followed by the HAV 5'NCR and the luciferase gene we have demonstrated by assaying in vitro and in vivo that ribosome entry for translation initiation occurs via binding to sequences within the HAV 5'NCR. Using mutations created within this region we have identified that the HAV internal ribosome entry site (IRES) is located downstream of nucleotide 45 and including sequences up to nucleotide 734 of the HAV 5'NCR. Translation of a number of mutant constructs both in vitro in a rabbit reticulocyte lysate and in vivo by transfection of the cDNAs into BS-C-1 cells in the presence of the recombinant vaccinia virus, vTF7-3, gave similar results. However, a 4-nucleotide insertion at base 628 showed an increased activity over wild-type when transfected into BS-C-1 cells that was not seen in vitro. This increase in activity correlated with an increase in luciferase gene product as assayed by immunoprecipitations of [35S]methionine radiolabeled cells. Comparison of mono- and bicistronic RNAs that were synthesized with or without a m7GpppG cap group showed a competition for ribosome binding when translated in a rabbit reticulocyte lysate system. The presence of the cap group on the RNA 5'terminus of the RNA led to a greater ability of this RNA to translate than the RNA containing the HAV IRES.

Animals↗

Improved detection of rhinoviruses in clinical samples by using a newly developed nested reverse transcription-PCR assay.

This paper describes the development and evaluation of a new nested reverse transcription (RT)-PCR for the detection of rhinovirus in clinical samples. The nucleotide sequences of the 5' noncoding regions of 39 rhinoviruses were determined in order to map the most conserved subregions. We designed a set of rhinovirus-specific primers and probes directed to these subregions and developed a new nested RT-PCR. The new assay includes an optimal RNA extraction method and amplicon identification with probe hybridization to discriminate between rhinoviruses and the closely related enteroviruses. It proved to be highly sensitive and specific. When tested on a dilution series of cultured viruses, the new PCR protocol scored positive at 10- to 100-fold-higher dilutions than a previously used nested RT-PCR. When tested on a collection of clinical samples obtained from 1,070 acute respiratory disease patients who had consulted their general practitioners, the new assay demonstrated a rhinovirus in 24% of the specimens, including all culture-positive samples, whereas the previously used PCR assay or virus culture detected a rhinovirus in only 3.5 to 6% of the samples. This new assay should help determine the disease burden associated with rhinovirus infections.

Base Sequence↗

Complete nucleotide sequence of the mRNA coding for the N protein of vesicular stomatitis virus (New Jersey serotype).

The nucleotide sequence of the mRNA encoding the nucleocapsid protein of the New Jersey serotype (Ogden strain) of vesicular stomatitis virus (VSV) was determined from two overlapping cDNA clones spanning almost entirely the coding region of the mRNA. The 5'-terminal noncoding sequence present in the mRNA but not in the cDNA clones was determined from a primer extended to the 5' terminus of the mRNA. The mRNA is 1329 nucleotides long (excluding polyadenylic acid) and encodes a protein of 422 amino acids. The nucleotide sequence was compared with the previously determined nucleotide sequence of the nucleocapsid protein of the Indiana serotype. An overall identity of 67.7% was found between the two serotypes. The only place where insertions and/or deletions have occurred during the evolution of the two viral genes from their presumed common ancestor is in the untranslated region. The nonidentical nucleotides are distributed throughout the length of the mRNA although not in an entirely random manner. The predicted amino acid sequence demonstrates that both proteins are initiated from the initiator codon located at the same distance from the 5' end (nucleotides 14 to 16) and contain the same number of amino acids. An overall identity of more than 80% of the amino acid sequence was observed between the two proteins when conservative replacements of amino acids were considered.

Amino Acid Sequence↗

Construction of viable deletion and insertion mutants of the Sabin strain of type 1 poliovirus: function of the 5' noncoding sequence in viral replication.

A number of deletion and insertion sequences were introduced into the 5' noncoding sequence (742 nucleotides long) of the genome of the Sabin strain of type 1 poliovirus by using an infectious cDNA clone of the virus strain. The genomes of all three poliovirus serotypes contained highly homologous sequences (nucleotide positions 509 to 639) as well as highly variable sequences (positions 640 to 742) in the 5' noncoding region. The viability of mutant viruses was tested by transfecting mutant cDNA clones into African green monkey kidney cells and then estimating the plaque sizes displayed on the cells. The results suggested that the highly variable sequence next to the VP4 coding region did not play an important role, at least in the in vitro culture system used, that the loci of highly conserved nucleotide sequences were not always expected to be the genome regions essential for viral replication, that the sequence between positions 564 and 599 carried genetic information to maintain the efficiency of certain steps in viral replication, and that the sequence between positions 551 to 563 might play an essential role in viral replication. Four-base deletion or insertion mutations were introduced into relatively variable sequences in the genome region upstream of position 509. The results suggest that variable sequences do not always indicate that the corresponding genome regions are less important. Apparent revertants (large-plaque variants) were easily generated from one of the viable mutants with the small-plaque phenotype. The determination of nucleotide sequences of the revertant genomes revealed the second mutation site. The results suggested that the different loci at around positions 200 and 500 might specifically interact with each other. This interaction may result in the formation of a functional structure that influences the efficiency of certain steps in the viral replication.

Base Sequence↗

Intrafamilial transmission of hepatitis-C virus among the population of an endemic area of Japan.

OBJECTIVES: To assess the role of intrafamilial transmission of hepatitis C virus (HCV) among general populations. DESIGN AND SETTING: Cross-sectional study in an HCV-endemic area of Japan. PARTICIPANTS: A total of 1122 residents (mean age, 41.7 years; range, 0 to 80 years), including 359 mother-child pairs and 234 pairs of spouses. MAIN OUTCOME MEASURES: Antibody to HCV (anti-HCV) was examined using second-generation anti-HCV testing by passive hemagglutination assay. Hepatitis C virus RNA was detected by polymerase chain reaction with primers deduced from the 5'-noncoding region and HCV genotypes by reaction with type-specific primers deduced from the HCV core gene. RESULTS: Prevalence of anti-HCV was 14.1% (158/1122), and HCV RNA was detected in 82.9% of those who tested positive for anti-HCV. Prevalence of anti-HCV increased with advancing age, but no anti-HCV was found among 312 persons younger than 20 years. Of the 53 children with anti-HCV-positive mothers, three were positive for anti-HCV, all were older than 20 years, and all had a history of surgical treatment. Hepatitis C virus RNA was found in one mother-child pair but with different HCV genotypes. Both spouses were positive for anti-HCV in 17 of 234 pairs. Of the 11 pairs of spouses in whom the HCV genotypes of both were determined, five had different HCV genotypes. CONCLUSIONS: While HCV is highly endemic in this area, neither vertical nor horizontal transmission between spouses seems to play an important role in its spread. The incidence of intrafamilial transmission of HCV seems to be low.

Adolescent↗

Serum hepatitis C virus (HCV)-RNA and response to alpha-interferon in anti-HCV positive chronic hepatitis.

Hepatitis C virus (HCV) replication was assessed before and during alpha-interferon (IFN) treatment in 22 anti-HCV positive patients with posttransfusion or sporadic chronic hepatitis (CH). Eleven patients were "responders" and 11 patients "non-responders" to IFN. Thirteen anti-HCV negative healthy subjects and five anti-HCV negative patients with autoimmune CH served as controls. Serum HCV-RNA was detected by the polymerase chain reaction (PCR) in all untreated anti-HCV positive patients but in none of the anti-HCV negative subjects. PCR primers from the 5'-noncoding (NC) region were more sensitive than primers from a non-structural (NS5) region in detecting HCV-RNA (21/22, 95% vs. 7/22, 32%, respectively). Positive strand HCV-RNA titre and positivity rate for the negative strand were similar in responders and non-responders before IFN treatment, as well as anti-c100-3 titre by enzyme-linked immunosorbent assay (ELISA), and anti-5-1-1, anti-c33c, anti-c22 positivity rate by immunoblot assay (RIBA). HCV-RNA positivity by both NC and NS primers was more frequent before IFN among responders. During IFN treatment, serum HCV-RNA was detectable, mostly at low titres, in 1 (NC positive) of the 11 responders and in 9 (4 NS positive and 5 NC positive) of the 11 non-responders. Among the four non-responders who were NS positive during IFN, three were NC positive before IFN. Serum HCV-RNA was always found in our post-transfusion or sporadic anti-HCV positive patients with CH. Viraemia generally decreased during IFN treatment, but no available HCV markers clearly distinguished responders from non-responders before IFN treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Genome characterization of a Korean isolate of cymbidium mosaic virus.

The complete nucleotide sequence of the genomic RNA of a Korean isolate of cymbidium mosaic virus (CymMV-K2) was determined. The genomic RNA is 6227 nucleotides in length, excluding the poly(A) tail. It contains a 5'-noncoding region (NCR) of 73 nucleotides, five open reading frames (ORFs 1 to 5) which encode proteins with M(r) 160 kDa RNA-dependent RNA polymerase (ORF1), 26 kDa movement protein 1 (ORF2), 13 kDa movement protein 2 (ORF3), 10 kDa movement protein 3 (ORF4), 24 kDa coat protein (OFR5), and a 3' NCR of 76 nucleotides. The 5'-end of the CymMV-K2 genome initiates with GGAAAA which contrasts to GAAAA at the 5'-ends of other potexviruses, including a Singapore isolate of CymMV (CymMV-S2). When compared with CymMV-S2, 171 base substitutions were observed in the CymMV-K2 genome. Substitutions in the overlapping ORFs (ORFs 2 to 4) occurred more frequently than those in 5' NCR, ORF1, and 3' NCR. In addition to substitutions, two single-base deletions, one in the intercistronic region between ORF1 and ORF2 and the other in the ORF2, were found on the CymMV-K2 genome. The deletion in the ORF2 induced a frameshift which altered the C-terminal domain of movement protein 1. ORF3 and ORF4 of the CymMV-K2 genome are partially different from those of another Singapore CymMV genome (CymMV-S1) which has four frameshifts due to nucleotide deletions within these ORFs. Interestingly, the frameshifts resulted in no change in the conserved sequences of the movement proteins but reconstructed their transmembrane domains.

Amino Acid Sequence↗

Sequence analysis of the bovine coronavirus nucleocapsid and matrix protein genes.

The 3' end of the 20-kb genome of the Mebus strain of bovine enteric coronavirus (BCV) was copied into cDNA and cloned into the PstI site of the pUC9 vector. Four clones from the 3' end of the genome were sequenced either completely or in part to determine the sequence of the first 2451 bases. Within this sequence were identified, in order, a 3'-noncoding region of 291 bases, the gene for a 448-amino acid nucleocapsid protein (N) having a molecular weight of 49,379, and the gene for a 230-amino acid matrix protein (M) having a molecular weight of 26,376. A third large open reading frame is contained entirely within the N gene sequence but is positioned in a different reading frame; it potentially encodes a polypeptide of 207 amino acids having a molecular weight of 23,057. A higher degree of amino acid sequence homology was found between the M proteins of BCV and MHV (87%) than between the N proteins (70%). For the M proteins of BCV and MHV, notable differences were found at the amino terminus, the most probable site of O-glycosylation, where the sequence is N-Met-Ser-Ser-Val-Thr-Thr for BCV and N-Met-Ser-Ser-Thr-Thr for MHV. BCV apparently uses two of its six potential O-glycosylation sites.

Amino Acid Sequence↗

trans complementation of cap-independent translation directed by poliovirus 5' noncoding region deletion mutants: evidence for RNA-RNA interactions.

Poliovirus (PV) RNA is translated by a cap-independent mechanism involving the internal entry of ribosomes onto the 5' noncoding region (NCR). Using the vaccinia virus-T7 RNA polymerase transient expression system, we showed previously that deletion of certain individual predicted secondary structures within the PV 5' NCR rendered the element defective in directing internal initiation when assayed alone. However, these defective 5' NCRs were functional when coexpressed within cells with full-length PV cDNA (N. Percy, G. J. Belsham, J. K. Brangwyn, M. Sullivan, D. M. Stone, and J. W. Almond, J. Virol. 66:1695-1701, 1992). We have extended the study to demonstrate that when these predicted secondary structures are deleted in combination, the enhanced activity in the presence of the full-length PV cDNA is still observed. Indeed, a poliovirus 5' NCR devoid of all predicted secondary structures is capable of initiating protein synthesis under these conditions. Surprisingly, we also found that this enhancement of activity requires neither any PV protein nor the inhibition of cap-dependent translation. The results indicate that the defective PV 5' NCR elements can be complemented in trans by functional 5' NCRs in a highly sequence specific manner.

Animals↗

[Study of the 3'noncoding region of Chinese hepatitis C virus genome].

OBJECTIVE: To analyze the 3' noncoding region (3' NCR) of HCV genome from Chinese hepatitis C patients so as to facilitate further study of mechanism of HCV gene replication. METHODS: Two different strategies were employed to amplify the full-length of the 3' noncoding region of HCV genome from sera of HCV infected patients in Shanghai area: one was to amplify the full-length fragment directly by nested PCR and the other amplify two overlapping fragments. The PCR products were further analyzed by sequencing and nucleotide alignments. A HCV genome 3'NCR based RT-PCR was developed and its specificity and sensitivity for HCV RNA detection in sera was compared with the established 5'NCR based RT-PCR. RESULTS: Sequence analysis showed that Chinese HCV genomic 3' NCR consists of three parts: the 5' region, poly (U-UC) tract and the 98-base region. Sequence alignments revealed that, while the 98-base regions were completely conserved in different isolates and were identical to the reported sequences, the poly (U-UC) region shared highly diversities. A high degree of concordance(95%) between the 3'NCR and 5'NCR RT-PCR for detection of HCV RNA in sera was found. CONCLUSION: The high conservation at the 3' NCR(98 bases) of HCV genome among different isolates indicated that this region may be critical for HCV gene replication The 3'NCR based RT-PCR may be a useful addition to available systems to diagnosis HCV infection.

3' Untranslated Regions↗

Past and present hepatitis G virus infections in areas where hepatitis C is highly endemic and those where it is not endemic.

We reported previously on an area in Japan where over 30% of the inhabitants were positive for hepatitis C virus (HCV) antibody. In the present study, clinical features of hepatitis G virus (HGV) infection in this area of high endemicity were compared to those in an area where HCV is not endemic. A total of 400 individuals were selected randomly from those who were medically screened for liver disease in 1993; 200 were from the high-endemicity area, and the other 200 were from the no-endemicity area. HGV RNA was measured by reverse transcription and PCR with primers in the 5' noncoding region. Antibody to HGV envelope protein E2 was measured by an enzyme-linked immunosorbent assay. Prevalence of any HGV marker in the high-endemicity area (32%) was significantly (P < 0.0001) higher than that in the no-endemicity area (6%); similar differences, 32% versus 3% (P < 0.0001), had been observed for HCV markers (HCV RNA and HCV antibody). In areas of both high and no endemicity, HCV markers were significantly more prevalent in individuals with any HGV marker than in those without HGV markers, and age-specific prevalence of HGV markers was distributed similarly to that of any HCV marker. Among possible routes of HGV transmission that were analyzed, folk medicine was significant in the high-endemicity area, but blood transfusion was the major route in the no-endemicity area. The rate of accompanying viremia in HGV infection (15%) was significantly lower than that in HCV infection (78%) (P < 0.0001). In conclusion, HGV infection was highly prevalent in the area of high HCV endemicity and was closely associated with HCV infection. HGV seemed to be transmitted via the practice of folk medicine as well as blood transfusion. HGV resulted in a chronic carrier state less frequently than did HCV.

Adolescent↗

The function of 3' noncoding sequences of hepatitis B surface antigen gene in a non-hepatic cell expression system.

A series of expression vectors containing the hepatitis B surface antigen (HBsAg) gene were constructed in which the promoter region of the HBsAg gene was replaced by the mouse metallothionein promoter. The HBsAg 3' noncoding sequences were modified by various deletions and/or additions of the heterogeneous genetic elements. The expression levels of the derivates were evaluated in a transient expression system using HeLa cells. We found that the enhancer I (EN-I) of hepatitis B virus (HBV) and the polyadenylation (poly A) signal are the most important elements for the expression of HBsAg gene in non-hepatic cells, in addition to the necessity to replace the original promoter of HBsAg gene. The heterogeneous poly A signal in combination with the simian virus (SV40) splicing signal could substitute for the poly A signal of the HBsAg gene, and, moreover, could increase the expression level of the HBsAg gene in HeLa cells. On the contrary, the enhancer II (EN-II) of HBV has no effect on the expression of the HBsAg gene in HeLa cells. These results imply another role of HBV EN-II on the stability of HBsAg transcripts in addition to the demonstrated function of activation the promoter.

DNA Mutational Analysis↗

Molecular analysis of structural protein genes of the Yamagata-1 strain of defective subacute sclerosing panencephalitis virus. II. Nucleotide sequence of a cDNA corresponding to the P plus M dicistronic mRNA.

The nucleotide sequence of a cloned cDNA corresponding to the P + M dicistronic mRNA of a subacute sclerosing panencephalitis (SSPE) virus was determined and compared with data of measles virus (MV). The dicistronic mRNA of the SSPE virus consisted of the 3' proximal 626 nucleotides of P mRNA, intercistronic trinucleotides, a full length of M mRNA, and 75 poly A nucleotides. The part encoding the P protein had a high homology to MV, except at the noncoding region. The terminating consensus sequence of the P gene and the intercistronic trinucleotides of the SSPE virus were CTAC(A)6 and CCT; in MV they are TTAT(A)6 and CTT, respectively. In the M gene, the starting consensus sequence was exactly the same as MV, but at the 5' proximal end, one third of this gene was different: The first ATG codon of the MV M gene signaling opening of the reading frame was changed to ACG in the SSPE virus and one long open reading frame started from the third ATG codon. The stop codon (TAG) of the MV M gene was also changed to CAG in the SSPE virus. Thus, the deduced SSPE-virus M protein lacked 50 amino acids at the amino terminal and had 15 extra amino acids at the carboxyl end when compared with the MV M protein.

Amino Acid Sequence↗

Enterovirus 71 isolated from China is serologically similar to the prototype E71 BrCr strain but differs in the 5'-noncoding region.

Enterovirus 71 H (E71 H), an isolate from an adult patient with hand-food-mouth disease (HFMD) in China, was serologically similar to the prototype strain E71 BrCr, which was isolated from a patient with aseptic meningitis. The study further analyzed the similarity of E71 H to E71 BrCr at the 5'-noncoding region (NCR), a location in genomic RNA that recently was found to be related to neurovirulence in poliovirus and Venezuelan equine encephalitis virus. Using a reverse transcription-polymerase chain reaction (RT-PCR) technique and a unique primer pair I, a 397 bp product was detected from E71 BrCr, Cox A9 (Griggs), Cox A16 (NIH), Cox B1 (HA antigen 201-468), Cox B5 (wild type), and ECHO 11 (Gregory), but not from E71 H, Cox A24 (Joseph), and ECHO 5 (Noyce). However, all of the viruses generated a 154 bp product using a universal enterovirus primer pair II. Further comparative analysis using primer-directed sequencing of both the E71 H and E71 BrCr 154 bp products revealed that they differed by 12 bases. The variations between the two viruses were clustered in two loci, one in the region of nucleotides 43-61 with eight variations, and the other in the region of nucleotides 120-133 with three variations. The differences within the 5'-NCR between the E71 H (HFMD) and the E71 BrCr (aseptic meningitis) viruses might provide a clue to explain why E71 was associated with two different clinical patterns: polio-like disease in the United States. Australia, and Eastern Europe, HFMD in China, Japan, and Singapore.

Adult↗

Prevalence and genotypes of hepatitis C virus infection among drug addicts and blood donors in Thailand.

Hepatitis C virus (HCV) is an infectious agent that has the potential to cause chronic liver disease, cirrhosis and hepatocellular carcinoma. We determined the prevalence and genotypes of HCV infection among groups of drug addicts: intravenous drug users (n = 134), methamphetamine users (n = 100), inhaled-drugs users (n = 19) and alcoholics (n = 50); a group of blood donors acted as a control. The control group consisted of 179 randomly-selected anti-HCV positive samples: these were subjected to HCV RNA screening and genotyping. The anti-HCV test was performed by ELISA: HCV RNA screening was by nested RT-PCR that employed primers from the 5' noncoding region. The genotype assay was based upon analysis of the 5' NCR amplified sequences and RFLP. Hepatitis C virus was highly prevalent among all groups of drug addicts (12-70%). In 2000. among the new blood donors (n = 66,340) at the National Blood Center, Thai Red Cross, anti-HCV prevalence amounted to 0.98%. The HCV genotype distribution showed that the most prevalent genotype was 3a, followed by 1b and 6a. Our data demonstrated the very high prevalence of HCV infection in IVDUs, a finding that is consistent with the blood-borne nature of the virus. In order to curb HCV infection, a determined effort to educate both the general population and high-risk groups is required; such a program of education would address both general and particular methods of transmission, especially the use of non-sterile needles etc.

Alcoholism↗

Infection with GB virus C in patients with chronic liver disease.

Infection with putative non-A to E hepatitis virus, designated GB virus C (GBV-C), was surveyed in 286 patients with chronic liver disease in Japan. RNA of GBV-C was detected, by reverse-transcription polymerase chain reaction with nested primers from the 5'-noncoding region, in 19 patients (6.6%) at a frequency higher (P < 0.001) than in three of 275 (1.1%) normal controls. It was detected in three of 83 (4%) patients with hepatitis B virus infection, 15 of 188 (8%) patients with hepatitis C virus infection, and one of 12 (8%) patients without evidence of ongoing infection with hepatitis B or C virus. GBV-C RNA was detected in nine of 186 (5%) patients with chronic hepatitis aged 51.2 +/- 13.3 years, six of 64 (9%) with liver cirrhosis aged 62.9 +/- 11.4 years, and four of 36 (11%) with hepatocellular carcinoma aged 62.0 +/- 11.1 years. Nucleotide sequences of 100 base pairs in the helicase region of GBV-C isolates from the 19 patients varied up to 21%, while sequences of 33 deduced amino acids were conserved and differed only by up to 6%. These results indicate that infection with GBV-C in patients with non-B, non-C chronic liver disease would not be frequent, although the sensitivity of the detection method could be improved. Coinfection of GBV-C with hepatitis B or C virus, as well as the duration of infection, might accelerate the progression of chronic liver disease.

Amino Acid Sequence↗

A novel assay for viral microRNA function identifies a single nucleotide polymorphism that affects Drosha processing.

MicroRNAs (miRNAs) are a class of approximately 22-nucleotide noncoding RNAs that inhibit the expression of specific target genes at the posttranscriptional level. Recently, 11 miRNAs encoded by the pathogenic human herpesvirus Kaposi's sarcoma-associated herpesvirus (KSHV) were cloned from latently infected cells. While the expression of these miRNAs has been confirmed by Northern analysis, their ability to inhibit target gene expression has not been demonstrated. We have devised a novel assay for miRNA function that uses lentiviral indicator vectors carrying two perfectly complementary target sites for each given miRNA in the 3' untranslated region of the Renilla luciferase gene. This assay allowed us to demonstrate the activity of each viral miRNA upon cotransduction of cells with the Renilla luciferase indicator vector together with a firefly luciferase control vector. In KSHV-infected BC-1 and BCBL-1 cells, but not uninfected control cells, Renilla luciferase expression was selectively reduced up to 10-fold. Interestingly, one of the viral miRNAs (miR-K5) exhibited much higher activity in BC-1 cells than in BCBL-1 cells. Sequence analysis of both viral genomes revealed a single nucleotide polymorphism in the miR-K5 precursor stem-loop, which inhibits the expression of mature miR-K5 in BCBL-1 cells. We show that the primary miR-K5 sequence present in BCBL-1 results in diminished processing by Drosha both in vivo and in vitro. This is the first report of a naturally occurring sequence polymorphism in an miRNA precursor that results in reduced processing and therefore lower levels of mature miRNA expression and function.

Herpesvirus 8, Human↗