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At least 271 records · Page 15Linked to original sources

cis Acting RNA sequences control the gag-pol translation readthrough in murine leukemia virus.

The pol gene of the Moloney murine leukemia virus (M-MuLV) is expressed as a Gag-Pol fusion protein through an in-frame suppression of the UAG termination codon located between the two genes. The role of nucleotide context in suppression was investigated, in a rabbit reticulocyte lysate translation system, using site-directed mutagenesis. The results indicate that the translational readthrough is mediated by at least 50 bases long RNA sequence located 3' to the gag UAG termination codon. Within this sequence a short purine-rich sequence adjacent to the amber codon, highly conserved among different retroviruses, appears essential for M-MuLV suppression. Two alternative putative stem and loop like RNA structures can be drawn at the gag-pol junction, one abutting the gag UAG codon, and the second downstream to it. None of these structures appears to be important to the suppression process.

Animals↗

Number and distribution of polyadenylated RNA sequences in yeast.

The poly(A)-containing RNA, isolated from the budding yeast Saccharomyces cerevisiae, has been characterized with regard to the number and distribution of sequences by a kinetic analysis of RNA-cDNA hybridization. In agreement with results previously obtained on metazoan eucaryotes (Bishop et al., 1974), discrete complexity classes were observed. There exist low, medium, and high complexity classes which contain approximately 20, 400, and 2400 sequences, respectively. This measurements of the number of sequences has been verified by hybridization with single copy DNA. 20% of the single copy fraction of the yeast genome is rendered double-stranded by poly(A)-containing RNA. Assuming asymmetric transcription, this is equivalent to approximately 4000 poly(A)-containing sequences, verifying the results obtained with RNA-cDNA hybridization. In addition, the first-order kinetics of the hybridization with single copy DNA verified the notion that most of the sequence complexity is present at the same intracellular concentration. The same number and distribution of sequences were found in poly(A)-containing polysomal RNA and in total RNA, suggesting that most or all of the sequence complexity is on polysomes and is adenylated. The results indicate that RNA-cDNA hybridization is an accurate method for determining sequence complexity values and that yeast, grown under vegetative conditions, has 3000-4000 different mRNA sequences.

Base Sequence↗

Detection of hepatitis C virus RNA sequences in B-cell non-Hodgkin lymphoma.

Serologic testing shows that hepatitis C virus (HCV) may have a role in the pathogenesis of B-cell non-Hodgkin lymphomas (B-cell NHLs). We tried to demonstrate HCV RNA sequences in paraffin-embedded tissue from B-cell NHLs by reverse-transcription double polymerase chain reaction (RT-PCR) and Southern blotting. We studied 31 consecutive cases of B-cell NHLs; lymph nodes from 32 patients with diseases other than B-cell NHL were negative controls. Positive-strand HCV RNA was tested with primers for the 5' untranslated region. Replicative negative strand HCV RNA was tested with strand-specific RT-PCR for the 5' untranslated region. Immunohistochemical staining for HCV was done using an antibody to HCV core protein. Positive-strand HCV RNA was detected in 8 patients with B-cell NHL; negative-strand HCV RNA was detected in 6 of these cases, indicating viral replication. All control cases were negative for HCV RNA. Immunohistochemistry showed no staining of lymphoma cells for HCV core proteins in any case. HCV and B-cell NHLs may be associated. RT-PCR on paraffin-embedded lymphoma tissue is an alternative method of testing for HCV. The value of immunohistochemistry could not be ascertained. The exact role of HCV in the pathogenesis of B-cell NHL needs to be studied further.

Adolescent↗

Detection of hepatitis C virus RNA sequences in cholangiocarcinomas in Chinese and American patients.

OBJECTIVE: To investigate the role of hepatitis C virus (HCV) in the malignant transformation of bile duct cells. Tissues from 6 Chinese patients and 6 American patients with cholangiocarcinoma were studied. METHODS: RNA was extracted from the selected tumor areas of formalin-fixed, paraffin embedded sections, followed by reverse transcription double polymerase chain reaction (RT-PCR) and Southern blotting. RESULTS: Positive and negative strand HCV RNA sequences were detected in seven out of twelve patients with cholangiocarcinoma. A high positive rate was found in Chinese patients (83%) as compared to US patients (33%). CONCLUSION: Our finding suggests HCV may play a role in the malignant transformation of bile duct cells.

Adult↗

Genomic and replicative hepatitis C virus RNA sequences and histologic activity in chronic hepatitis C.

Hepatitis C virus (HCV) frequently leads to chronic hepatitis, cirrhosis, and hepatocellular carcinoma, but the mechanism of liver injury is unknown. To determine whether replication of HCV is related to liver damage, we studied 17 liver biopsy specimens (six anti-HCV-positive chronic persistent hepatitis specimens, seven anti-HCV-positive chronic active hepatitis specimens, and four anti-HCV-negative controls) by reverse transcription followed by double polymerase chain reaction for the 5' nontranslated regions of the genomic and replicative strands of HCV. The histologic activity index as well as lymphoid aggregates in portal tracts, bile duct damage, and fatty change were assessed semiquantitatively. There was a statistically significant correlation between the presence of HCV RNA sequences in liver tissue and anti-HCV antibody in serum (P < .005). No correlation was detected between the histologic activity index or any individual histologic parameters and the presence of genomic or replicative strands of HCV. These findings suggest that a direct viropathic effect is less important than other mechanisms, such as the host immune response, in the pathogenesis of hepatocyte and bile duct injury in chronic hepatitis.

Adult↗

Nairovirus RNA sequences expressed by a Semliki Forest virus replicon induce RNA interference in tick cells.

We report the successful infection of the cell line ISE6 derived from Ixodes scapularis tick embryos by the tick-borne Hazara virus (HAZV), a nairovirus in the family Bunyaviridae. Using a recombinant Semliki Forest alphavirus replicon that replicates in these cells, we were able to inhibit replication of HAZV, and we showed that this blockage is mediated by the replication of the Semliki Forest alphavirus replicon; the vector containing the HAZV nucleoprotein gene in sense or antisense orientation efficiently inhibited HAZV replication. Moreover, expression of a distantly related nucleoprotein gene from Crimean-Congo hemorrhagic fever nairovirus failed to induce HAZV silencing, indicating that the inhibition is sequence specific. The resistance of these cells to replicate HAZV correlated with the detection of specific RNase activity and 21- to 24-nucleotide-long small interfering RNAs. Altogether, these results strongly suggest that pathogen-derived resistance can be established in the tick cells via a mechanism of RNA interference.

Animals↗

RNA sequences in ribonucleoprotein fragments of the complex formed from ribosomal 23-S RNA and ribosomal protein L24 of Escherichia coli.

Upon digestion of the complex formed from the 23-S ribosomal RNA and the 50-S ribosomal protein L24 of Escherichia coli, two fragments resistant to ribonuclease were recovered; these fragments contained RNA sections belonging to the 480 nucleotides at the 5' end of 23-S RNA. By determining the sequence of 70% of this latter region we were able to localise the sections which, in the presence of the protein, are resistant to ribonuclease. Our results suggest that the region encompassing the 480 nucleotides starting at the 9th nucleotide from the 5' end of 23-S RNA has a compact tertiary structure, which is stabilised by protein L24.

Alkaline Phosphatase↗

E. coli NusA protein binds in vitro to an RNA sequence immediately upstream of the boxA signal of bacteriophage lambda.

The NusA protein of Escherichia coli is a factor which mediates termination of transcription. In this paper, we demonstrate that the NusA protein can bind in vitro to a specific site on the mRNA of bacteriophage lambda. Several RNAs were synthesized by in vitro transcription of truncated lambda DNA templates, and the activity of NusA binding to these RNAs was examined by a Millipore filter-binding assay. RNAs containing the sequence immediately upstream of the boxA site were trapped on the filter by association with the NusA protein, but those lacking the site were not. Anti-NusA antibody inhibits this binding. To determine the binding site precisely, we developed a new method which we have named 'reverse-transcriptase mapping'. The RNA transcribed from the pL promoter was incubated with 32P-labelled DNA primer and NusA, and the primer-extension reaction was started by adding the reverse transcriptase. In this way, the primer extension was blocked at the position G of the boxA RNA sequence (5'CGCUCUUA 3'), indicating that the NusA-protection site is immediately upstream of boxA and includes the 5'-end C. The NusA protein purified from a temperature-sensitive nusA mutant defective in transcription termination showed reduced and thermolabile RNA-binding activity, suggesting that the RNA-binding activity is related to the physiological function of NusA.

Bacterial Proteins↗

Detection of hepatitis C virus RNA sequences in hepatocellular carcinoma and its precursors by microdissection polymerase chain reaction.

OBJECTIVE: Chronic hepatitis C virus (HCV) infection is frequently associated with the development of hepatocellular carcinoma (HCC), but the mechanism of malignant transformation is unknown. To analyze the association of HCV with HCC, we developed a microdissection technique for the detection by polymerase chain reaction of positive (genomic)- and negative (replicative)-strand HCV RNA in histologically confirmed HCC and the surrounding cirrhotic and macroregenerative nodules. MATERIALS AND METHOD: Five HCCs and one macroregenerative nodule and the surrounding cirrhotic liver tissues of all cases were selected for this study. The method entails extraction of RNA from selected areas of formalin-fixed, hematoxylin-stained histologic sections, followed by strand-specific reverse-transcription double polymerase chain reaction and Southern blotting. RESULTS: Positive- and negative-strand HCV RNA sequences were detected in five of six tumors and the surrounding cirrhotic livers. CONCLUSIONS: These results verify the method of polymerase chain reaction detection of HCV RNA from histologically defined, selected lesions. In addition, the findings suggest that HCV RNA persists and replicates in hepatocytes during malignant transformation.

Aged↗

RNA sequence analysis shows that the symbionts in the ciliate Metopus contortus are polymorphs of a single methanogen species.

The polymerase chain reaction was used to amplify and partially sequence the 16S ribosomal RNA genes of symbiotic bacteria within the anaerobic ciliate Metopus contortus. In situ probing with fluorescent oligonucleotides showed that the amplified sequences originated from a single species of archaebacterium which is closely related to Methanocorpusculum parvum. The probed symbionts exhibited a variety of shapes and sizes. These data support the hypothesis, first proposed on the basis of electron microscopy, that the symbionts undergo a morphological transformation as part of the symbiotic process.

Animals↗

Primary structure of rabbit 18S ribosomal RNA determined by direct RNA sequence analysis.

The primary structure of rabbit 18S ribosomal RNA was determined by nucleotide sequence analysis of the RNA directly. The rabbit rRNA was specifically cleaved with T1 ribonuclease, as well as with E. coli RNase H using a Pst 1 DNA linker to generate a specific set of overlapping fragments spanning the entire length of the molecule. Both intact and fragmented 18S rRNA were end-labeled with [32P], base-specifically cleaved enzymatically and chemically and nucleotide sequences determined from long polyacrylamide sequencing gels run in formamide. This approach permitted the detection of both cistron heterogeneities and modified bases. Specific nucleotide sequences within E. coli 16S rRNA previously implicated in polyribosome function, tRNA binding, and subunit association are also conserved within the rabbit 18S rRNA. This conservation suggests the likelihood that these regions have similar functions within the eukaryotic 40S subunit.

Animals↗

Symptom-modulating properties of peanut stunt virus satellite RNA sequence variants.

The symptom-modulating properties of three peanut stunt virus (PSV) satellite RNA (satRNA) sequence variants were studied. The (V)-satRNA did not affect symptom development in tobacco plants infected with PSV. The (G)- or (WC)-satRNA, on the other hand, attenuated the symptoms. In these plants, the symptoms of PSV were restricted primarily to the inoculated leaves, and in some cases, a few leaves above the inoculated leaf showed small chlorotic areas. Northern blot analysis of total nucleic acids from PSV-infected plants containing the (V)-satRNA revealed the presence of both satellite and viral RNAs in inoculated leaves as well as in systemically infected leaves. On the other hand, satellite and viral RNAs were detected in the inoculated but not in the noninoculated leaves from infected plants containing either (G)- or (WC)-satRNA. Although a decrease in the quantities of genomic RNAs 1, 2, and 3 was characteristic of all satRNA-containing plants, this effect was more evident in the case of (G)- and (WC)-satRNAs. The complete nucleotide sequences of the three satRNAs were determined and compared to the published sequence of PSV satRNA. The (V)-satRNA differed from the published sequence at two positions, whereas the (G)- and (WC)-satRNAs differed at six and eight positions, respectively. Comparison of the nucleotide sequence of the satRNA having no effect on PSV-induced symptoms with those reducing virus symptoms suggests that a single nucleotide change or as many as five nucleotide changes may distinguish between attenuating and nonattenuating satRNAs.

Arachis↗

RNA sequences upstream of the 3' splice site repress splicing of mutantyeast ACT1 introns.

A yeast ACT1 intron in which both the first and last intron nucleotides are mutated, the /a-c/ intron, splices 10% as well as wild type. We selected for additional cis-acting mutations that improve the splicing of /a-c/ introns and recovered small deletions upstream of the 3' splice site. For example, deletion of nucleotides -9 and -10 upstream of the 3' splice site increased the splicing activity of the /a-c/ intron to 30% that of the wild-type ACT1 intron. To determine if the increased /a-c/ splicing was due to changes in intron spacing or sequence, we made mutations that mimicked the local sequence of the delta-9, -10 deletion without deleting any nucleotides. These mutants also increased /a-c/ splicing, indicating that the increased splicing activity was due to changes in intron sequence. The delta-9, -10 deletion was not allele specific to the /a-c/ intron, and improved the splicing efficiency of many mutant introns with step II splicing defects. To further define the sequences required for improved splicing of mutant introns, we randomized the region upstream of the ACT1 3' splice site. We found that almost all sequence alterations improved the splicing of the /a-c/ intron. We postulate that this sequence near the 3' end of the intron represses the splicing of mutant introns, perhaps by serving as the binding site for a negative splicing factor.

Alleles↗

Design of the hairpin ribozyme for targeting specific RNA sequences.

The following steps should be taken when designing the hairpin ribozyme to cleave a specific target sequence: 1. Select a target sequence containing BN*GUC where B is C, G, or U. 2. Select the target sequence in areas least likely to have extensive interfering structure. 3. Design the conventional hairpin ribozyme as shown in Fig. 1, such that it can form a 4 bp helix 2 and helix 1 lengths up to 10 bp. 4. Synthesize this ribozyme from single-stranded DNA templates with a double-stranded T7 promoter. 5. Prepare a series of short substrates capable of forming a range of helix 1 lengths of 5-10 bp. 6. Identify these by direct RNA sequencing. 7. Assay the extent of cleavage of each substrate to identify the optimal length of helix 1. 8. Prepare the hairpin tetraloop ribozyme to determine if catalytic efficiency can be improved.

Base Sequence↗

Peanut yellow spot virus is a member of a new serogroup of Tospovirus genus based on small (S) RNA sequence and organization.

Peanut yellow spot virus (PYSV) represents a distinct tospovirus species based on serology and nucleic acid hybridization. THe sequence of the S RNA was 2970 nucleotides with 22 nucleotide long inverted repeats (with three mismatches) at the termini. The coding was ambisense with a long open reading frame (ORF) in each strand. The 5'-large ORF (1,400 nucleotides in the viral sense (v) strand) encoded a protein with a predicted size of 53.2 kDa that was identified as the nonstructural (NSs) protein based on 16-21% sequence identity and 42-48% sequence similarity with other tospoviruses. A 3' ORF (741 nucleotides) in the virus complementary (vc) sense encoded a 28.0 kDa protein that was identified as the nucleocapsid (N) gene based on immuno-blot analysis of the in vitro expressed protein with PYSV polyclonal antiserum. The predicted N protein had 24-28% amino acid sequence identity and 44-51% sequence similarity with the members of other serogroups. In contrast to other tospoviruses, a third ORF (204 nucleotides) occurred in the vc strand, which could encode a protein with a predicted size of 7.5 kDa with two strong hydrophobic regions. The low degree of homology of N and NSs protein sequences with other serogroup members coupled with an additional ORF suggests that PYSV should be classified as a distinct species of the Tospovirus genus. This conclusion also is supported by the absence of serological cross reaction with other serogroups, and biological characteristics including thrips transmission, symptoms and host range.

Amino Acid Sequence↗

A 5'-proximal RNA sequence of murine coronavirus as a potential initiation site for genomic-length mRNA transcription.

Coronavirus transcription is a discontinuous process, involving interactions between a trans-acting leader and the intergenic transcription initiation sequences. A 9-nucleotide (nt) sequence (UUUAUAAAC), which is located immediately downstream of the leader at the 5' terminus of the mouse hepatitis virus (MHV) genomic RNA, contains a sequence resembling the consensus intergenic sequence (UCUAAAC). It has been shown previously that the presence of the 9-nt sequence facilitates leader RNA switching and may enhance subgenomic mRNA transcription. It is unclear how the 9-nt sequence exerts these functions. In this study, we inserted the 9-nt sequence into a defective interfering (DI) RNA reporter system and demonstrated that mRNA transcription could be initiated from the 9-nt sequence almost as efficiently as from the intergenic sequence between genes 6 and 7. Sequence analysis of the mRNAs showed that the 9-nt sequence served as a site of fusion between the leaders and mRNA. The transcription initiation function of the 9-nt sequence could not be substituted by other 5'-terminal sequences. When the entire 5'-terminal sequence, including four copies of the UCUAA sequence plus the 9-nt sequence, was present, transcription could be initiated from any of the UCUAA copies or the 9-nt sequence, resulting in different copy numbers of the UCUAA sequence and the deletion of the 9-nt sequence in some mRNAs. All of these heterogeneous RNA species were also detected from the 5'-terminal region of the viral genomic-length RNA in MHV-infected cells. These results thus suggest tha the heterogeneity of the copy number of UCUAA sequences at the 5' end, the deletion of the 9-nt sequence in viral and DI RNAs, and the leader RNA switching are the results of transcriptional initiation from the 9-nt site. They also show that an mRNA species (mRNA 1) that lacks the 9-nt sequence can be synthesized during MHV infection. Therefore, MHV genomic RNA replication and mRNA 1 transcription may be distinguishable.

Animals↗

Taxonomic position of the human intestinal protozoan parasite Isospora belli as based on ribosomal RNA sequences.

The taxonomic positions of Isospora belli and other members of the genus Isospora are controversial. We determined the small-subunit ribosomal RNA of I. belli and used this sequence in combination with other coccidian RNA sequences for analysis of the taxonomic position of I. belli. The phylogenetic trees we obtained provide molecular evidence for three clades within a monophyletic group that represents the suborder Eimeriina. The clade containing I. belli consists of tissue-cyst-forming coccidia (Toxoplasma and Neospora) and members of the genus Isospora (I. ohioensis, I. suis, I. belli). The second clade, representing a sister clade of that containing the Isospora species, contains members of the genus Sarcocystis. The third one consists of members of the family Eimeriidae, including Eimeria and Cyclospora species. This shows that although I. belli as well as other members of the genus Isospora belong to the suborder Eimeriina, the family to which they belong is not Eimeriidae but rather Sarcocystidae. We suggest that the genus Isospora should be removed from the family Eimeriidae and placed into the family Sarcocystidae within the suborder Eimeriina.

Animals↗