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Conserved dyad symmetry structures at the 3' end of H5 histone genes. Analysis of the duck H5 gene.

The duck H5 histone gene and its flanking DNA have been isolated and sequenced. S1 nuclease mapping reveals that transcription starts 149 nucleotides upstream of the initiation codon and that the site of polyadenylation is located 200 nucleotides downstream of the termination codon. A comparison with the chicken H5 gene demonstrates that the 3' non-translated segment of the polyadenylated H5 mRNA carries two conserved dyad symmetry sequences. The first potential hairpin is located directly after the termination codon of the H5 gene and is highly conserved, whereas the second stem and loop structure maps shortly upstream of the polyadenylation site and shows a homology block at the central part of this inverted DNA repeat.

Amino Acid Sequence↗

Nucleotide sequence and structure of integrated bovine leukemia virus long terminal repeats.

Bovine leukemia virus (BLV) proviruses, harbored by the productively infected fetal lamb kidney (FLK-BLV) cell line, were cloned in bacteriophage lambda L47. The nucleotide sequence of the proviral long terminal repeats (LTR) with flanking cell and virus DNA have been determined. The BLV LTR is 531 bp in length and is bounded by the dinucleotides 5'-TG...CA-3', which are part of a 3-bp inverted repeat. The integrated provirus is flanked by 6-bp direct repeats of cellular DNA. A tRNApro primer binding site is present starting 2 bp downstream of the 5' LTR. In addition to sequencing integrated proviral DNA clones, the nucleotide sequence of a cDNA clone, representing the 3' end of genomic viral RNA, was determined; thus revealing the RNA polyadenylation site and R:U5 boundary within the LTR. Unlike most other retroviruses, a consensus polyadenylation signal, "AATAAA," is not located proximal to the BLV polyadenylation site. The RNA initiation site, defining the U3:R boundary, was located in the BLV LTR by S1 nuclease mapping. This site is approximately 25 bp downstream of an A + T-rich region which probably encompasses a Goldberg-Hogness ("TATAA") box and about 90 bp downstream of a potential "CCAAT" box. The BLV LTR possesses a U3 region of 204 bp, an unusually long R region of 241 bp, and a U5 region of 86 bp.

Base Sequence↗

Structure and evolution of the leucine plasmids carried by the endosymbiont (Buchnera aphidicola) from aphids of the family Aphididae.

In all examined species of the family Aphididae, the bacterial endosymbiont Buchnera aphidicola carries a plasmid encoding the genes leuABCD (involved in leucine biosynthesis) along with repA1, repA2 and ORF1. The gene organisation of the leucine plasmids was conserved, except in Buchnera isolated from Pterocomma populeum, where ORF1 was located in a different position. An inverted repeat (LIR1) located between repA2 and leuA is found in all of the Buchnera leucine plasmids examined. The predicted secondary structure of the LIR1 transcript conforms to a long hairpin loop, suggesting an involvement in transcription termination or messenger stability. Phylogenetic reconstruction based on repA2 sequences suggests that horizontal transfer of Buchnera leucine plasmids has not occurred.

Amino Acid Sequence↗

A human cytomegalovirus early gene has three inducible promoters that are regulated differentially at various times after infection.

The long inverted repeat and the adjacent sequences are major early transcription sites of the human cytomegalovirus genome (M. W. Wathen and M. F. Stinski, J. Virol. 41:462-477, 1982). An early transcription unit which flanks the large terminal repeat was analyzed by RNA mapping at various times after infection. Three unspliced, overlapping RNAs were transcribed from different initiation sites and terminated at the same 3' end. Individual promoters were isolated for all three transcripts. These promoters were activated in trans by viral immediate-early (IE) regulatory proteins after either infection with virus or cotransfection with IE2 alone or IE1 plus IE2 genes. DNA sequence analysis detected TATA and CAAT boxes plus multiple-dyad symmetries in the promoter-regulatory region. Deletion analyses showed that the maximum inducible promoter activity lay in a 230-base-pair region. When in the viral genome, the three promoters were regulated differentially during the course of infection. The upstream promoter was used only at late times after infection. Possible reasons for viral RNAs with multiple 5' ends at different times after infection and the recognition of the upstream promoter at only late times after infection are discussed.

Base Sequence↗

The Drosophila nuclear receptors FTZ-F1 alpha and FTZ-F1 beta compete as monomers for binding to a site in the fushi tarazu gene.

The striped pattern of fushi tarazu (ftz) expression found in the blastoderm of the Drosophila melanogaster embryo is generated largely through complex interactions between multiple transcription factors that bind to the zebra element of the ftz gene. A motif in the zebra element, the FTZ-F1 recognition element (F1RE), has been shown to bind a transcription factor, FTZ-F1 alpha, that is a member of the nuclear receptor family. We recently identified a second, related member of this family, FTZ-F1 beta, that also binds to this motif. To investigate the possibility that FTZ-F1 alpha and FTZ-F1 beta coregulate ftz transcription through the F1RE, we have studied the DNA binding properties of FTZ-F1 alpha and FTZ-F1 beta. We demonstrate that recombinant FTZ-F1 alpha and FTZ-F1 beta proteins produce similar in vitro DNase I footprint patterns on a 14-nucleotide region of the zebra element and bind to this site with similar affinities and sequence specificities. Using wild-type and N-terminally truncated receptors, we have determined that FTZ-F1 alpha and FTZ-F1 beta both bind as monomers to the 9-bp F1RE in the zebra element, as well as to an imperfect inverted F1RE repeat present in the Drosophila alcohol dehydrogenase gene. A polyclonal antibody raised against FTZ-F1 beta identifies a predominant F1RE-binding component in embryonic nuclear extracts. Although FTZ-F1 alpha is also present in these extracts, FTZ-F1 alpha and FTZ-F1 beta do not appear to form heterodimers with each other. Cotransfection assays in mammalian cell culture indicate that both receptors contribute to the net transcriptional activity of a reporter gene through their direct interaction with the F1RE. These data suggest that FTZ-F1 alpha and FTZ-F1 beta likely coregulate common target genes by competition for binding to a 9-bp recognition element.

Animals↗

Nucleotide sequence of the telomeric region of the African swine fever virus genome.

The 4-kb terminal BclI fragment of African swine fever virus (ASFV) DNA, including the inverted terminal repetition (ITR), was cloned and sequenced. The sequence showed that the 2.1-kb ITR is composed of a 301-nucleotide-long unique sequence immediately adjacent to the terminal hairpin loop, a set of 38 tandem direct repeats of a 34-nucleotide degenerate sequence, another unique intervening sequence with no remarkable features, and a set of 5 tandem repeats of a 27-nucleotide unit unrelated in sequence to the 34-nucleotide repeat unit. Several short repeats were found scattered along the most distal unique sequence. The proximal half of the terminal fragment possesses one complete and one interrupted copy of genes belonging to multigene family 360.

African Swine Fever Virus↗

Methionyl-tRNA synthetase from Escherichia coli. Primary structure of the active crystallised tryptic fragment.

A 3300-base segment of Escherichia coli chromosomal DNA, cloned into pBR322, will complement a methionine auxotroph in which the lesion is a defective methionyl-tRNA synthetase with a much reduced affinity for methionine. Crude extracts of these transformants contain elevated levels of a protein which has a subunit molecular weight of 66 000, methionyl-tRNA synthetase aminoacylation activity in vitro and which cross-reacts with anti-(methionyl-tRNA synthetase) antibodies. This polypeptide is very slightly larger than the well-characterised and crystallised tryptic fragment of methionyl-tRNA synthetase. A DNA sequence of 1750 residues at one end of the cloned insert codes for a non-terminated open reading frame in which we can locate a large number of methionyl-tRNA synthetase tryptic and chymotryptic peptides. We have also sequenced 300 nucleotides upstream of this coding segment where we find a large invert repeat in the putative methionyl-tRNA synthetase promoter region.

Amino Acid Sequence↗

A cluster of strong topoisomerase II cleavage sites is located near an integrated human immunodeficiency virus.

The Human Immunodeficiency Virus (HIV) integrates into host cellular DNA as a double strand DNA molecule. Here a previously studied HIV isolate was examined for binding and cleavage by topoisomerase II in vitro within the 5' LTR region and human flanking DNA. A cluster of strong binding and cleavage sites in the human sequences was located approximately 850 bp upstream from the integration site. This region maps to a locus consisting of a complex repeating element, and alternating purine/pyrimidine sequences. Topoisomerase II binding and cleavage sites were also located within the HIV 5' LTR, in particular a site overlying the DNA sequence coding for TAR, another inverted repeat element in the DNA.

Base Sequence↗

Novel non-mecA-containing staphylococcal chromosomal cassette composite island containing pbp4 and tagF genes in a commensal staphylococcal species: a possible reservoir for antibiotic resistance islands in Staphylococcus aureus.

Among methicillin-resistant Staphylococcus aureus isolates, a staphylococcal chromosomal cassette containing the mecA gene (SCCmec) is integrated into the chromosome at a unique site. SCCmec also contains unique ccrAB recombinase genes mediating its integration and excision from the genome and is flanked by characteristic left and right direct- and inverted-repeat sequences. A few non-mecA-containing SCC elements that have the other molecular features described above have recently been described. The origin of these cassettes is not clear. We have identified two new members of the SCC family integrated within orfX in Staphylococcus epidermidis strain ATCC 12228, neither of which carries mecA. One is a 57-kb element flanked by a unique 28-bp SCC direct repeat. It was called the SCC composite island (SCC-CI) because it carries a 19-kb SCC element (SCCpbp4) nested within it. SCCpbp4 contains pbp4 and tagF genes, as well as one pair of ccrAB genes (allotype 2) flanked by classical SCC-specific terminal repeats. External to SCCpbp4, SCC-CI contains a second pair of ccrAB genes (allotype 4), three IS431 elements, and genes mediating resistance to heavy metals. Genes mediating restriction-modification that may facilitate horizontal transfer are also present within SCC-CI, both within and outside SCCpbp4. Several novel arrangements of the SCC direct and inverted repeats were identified. Several long stretches of homology with other SCCs were found within and outside SCCpbp4. In view of the fact that SCC-CI was found in a commensal species, it may represent a reservoir for sequences involved in genetic shuffling between staphylococci and may contribute to the diversity found in SCC elements.

Amino Acid Sequence↗

Structural and functional studies of insertion element IS200.

The nucleotide sequence of the insertion element IS200 has been determined partially, including the junctions between the element and the host chromosome at the insertion site. At most, two bases (A-A) are found repeated at the junctions and could be duplications of host sequences generated by the insertion of the element. No obvious sequence repeats, either direct or inverted, have been detected between the sequences just within the two ends of the element. The element is an extremely strong block to host transcription across the insertion site. A sequence similar to known transcription termination signals was found just within the element near the right end. Removal of less than 50 base-pairs at the right end of the element abolishes the transcription block. The putative terminator sequence is located within this 50 base-pair region. Genetic studies suggest that the element contains a promoter located more than 93 base-pairs from its left end. The proposed promoter and terminator are in proper orientation to form an internal transcription unit.

Autoradiography↗

Nucleotide sequence and properties of the cohesive DNA termini from bacteriophage HP1c1 of Haemophilus influenzae Rd.

The termini of the mature DNA of phage HP1c1 of Haemophilus influenzae Rd have been characterized by DNA ligation, nucleotide sequencing, and deoxynucleotide incorporation experiments. A hybrid plasmid containing the joined phage termini (the cos site) inserted into pBR322 has been constructed. The phage DNA has cohesive termini composed of complementary 5' single-stranded extensions which are seven residues long. The left cohesive terminal extension consists only of pyrimidines and the right only of purines. When the ends of the phage are joined, the terminal sequences constitute the central 7 bp of an 11 bp sequence containing only purines on one strand and pyrimidines on the other strand. This oligopyrimidine/oligopurine sequence does not possess rotational symmetry. A 10-bp sequence and its inverted repeat are located approx. 20 bp to the left and right of the fused ends.

Bacteriophages↗

First-principles electronic transport calculations in finite elongated systems: a divide and conquer approach.

We present a first-principles method for the evaluation of the transmittance probability and the coherent conductance through elongated systems composed of a repeating molecular unit and terminated at both ends. Our method is based on a divide and conquer approach in which the Hamiltonian of the elongated system can be represented by a block tridiagonal matrix, and therefore can be readily inverted. This allows us to evaluate the transmittance and the conductance using first-principles electronic structure methods without explicitly performing calculations involving the entire system. A proof of concept model based on a trans-polyacetylene chain bridging two aluminum leads indicates that our divide and conquer approach is able to capture all the features appearing in the transmittance probability curves obtained by a full scale calculation.

Journal Article↗

The nucleotide sequence of the gene for malF protein, an inner membrane component of the maltose transport system of Escherichia coli. Repeated DNA sequences are found in the malE-malF intercistronic region.

The malF gene product is an inner membrane component of the maltose transport system in Escherichia coli. Some gene fusions between malF and lacZ (encoding the normally cytoplasmic enzyme beta-galactosidase) produce hybrid proteins which are membrane-bound while other fusions produce hybrid proteins which are cytoplasmic (Silhavy, T. J., Casadaban, M. J., Shuman, H. A., and Beckwith, J. R. (1976) Proc. Natl. Acad. Sci. U. S. A. 73, 3423-3427). To further analyze the localization properties of the different classes of fusion proteins and of the intact MalF protein, we have obtained the DNA sequence of 5 malF-lacZ fusions and the wild type malF gene. From the predicted amino acid sequence, MalF protein contains 514 amino acids and has a molecular weight of 56,947. Analysis of the hydropathic character of MalF using the Kyte-Doolittle assignments (Kyte, J., and Doolittle, R. F. (1982) J. Mol. Biol. 157, 105-132), indicates that the protein may have 2 or 3 amino-terminal membrane-spanning segments and 4 or 5 carboxy-terminal membrane-spanning segments separated by a region of 181 hydrophilic residues. Localization properties of the different fusion proteins correspond with degree of hydrophobicity. By sequencing upstream from malF, the malE-malF intercistronic region was found to be 153 base pairs in length and to contain inverted repeats, homologous to intercistronic repeats of many other operons. Further analysis of this region may help in understanding the observed step-down in synthesis of the MalF protein.

ATP-Binding Cassette Transporters↗

Nucleotide sequences of murine intracisternal A-particle gene LTRs have extensive variability within the R region.

Nucleotide sequences of the long terminal repeats (LTRs) of four murine intracisternal A-particle (IAP) genes IAP62, 19, 81 and 14 were determined. Each IAP LTR contains three sequence domains, 5'-U3-R-U5-3', and each is bound by 4 bp imperfect inverted repeats. The transcriptional regulatory sequences, CAAT and TATA, as well as the enhancer core sequence GTGGTAA are conserved and precisely positioned within the U3 region. In the R region, the sequence AATAAA is located twenty base pairs preceding the dinucleotide CA, the polyadenylation site. In IAP19 and IAP81, the 5' and 3' LTRs are flanked by a six nucleotide direct repeat of cellular sequences representing the possible integration sites for these IAP proviruses. Both the size and sequences of different IAP LTRs vary considerably, with the majority of the variation localized within the R regions. The size of R varies from 66 bp in IAP14 to 222 bp in IAP62; in contrast, the U3 and U5 regions are all similar in size. These extra sequences within the R region of large LTRs consist of several unusual directly repeating sequences which account for this variability.

Animals↗

Sequence and uptake specificity of cloned sonicated fragments of Haemophilus influenzae DNA.

Our data support the conclusion that all tight binding of DNA by competent cells of Haemophilus influenzae is due to 9 base pairs (bp) of the 11-bp motif 5'-AAGTGCGGTCA or its inverse complement, TGACCGCACTT. Sonicated chromosomal DNA of H. influenzae was absorbed and extracted from competent cells to prepare a subpopulation of uptake fragments enriched for single uptake (binding) sequences. This DNA was inserted into the plasmid pUC18 and cloned into Escherichia coli. Whole sonicated chromosomal DNA was also cloned in pUC18 as a population of control fragments. Seventy-one plasmids were labeled with 3H and tested for DNA binding, and the inserts of 28 of them were sequenced. The control plasmid pUC18 was absorbed to competent H. influenzae cells at low levels of 5 to 10% of DNA added. The plasmids containing uptake inserts were mostly absorbed at levels of 70 to 80%, but a significant number contained inserts with an intermediate level of binding, 20 to 30%. The inserts of 15 plasmids were excised and tested for DNA uptake to demonstrate good agreement between uptake of these plasmids and their insert fragments. Sequencing of inserts revealed that the presence of 9 bp of the 11-bp motif was associated with tight binding. Some inserts with intermediate levels of binding had no significant similarities to the 9-bp sequence. The 9-bp sequence appeared to account for most of the binding to competent cells, but appreciable binding occurred with fragments without 9-bp homology. About one-third of the 9-bp uptake sequences were found as inverted repeats that could form strong stem-loop structures. It has been suggested by Goodman and Scocca (Proc. Nal. Acad. Sci. USA 85:6982-6986, 1988) that in Neisseria gonorrhoeae, uptake sequences occur as palindromes and act as transcription terminators. Although consistent, the data are insufficient to make this conclusion for uptake sequence palindromes in H. influenzae.

Base Sequence↗

A DNA region recognized by the nitric oxide-responsive transcriptional activator NorR is conserved in beta- and gamma-proteobacteria.

The sigma(54)-dependent regulator NorR activates transcription of target genes in response to nitric oxide (NO) or NO-generating agents. In Ralstonia eutropha H16, NorR activates transcription of the dicistronic norAB operon that encodes NorA, a protein of unknown function, and NorB, a nitric oxide reductase. A constitutively activating NorR derivative (NorR'), in which the N-terminal signaling domain was replaced by MalE, specifically bound to the norAB upstream region as revealed by gel retardation analysis. Within a 73-bp DNA segment protected by MalE-NorR' in a DNase I footprint assay, three conserved inverted repeats, GGT-(N(7))-ACC (where N is any base), that we consider to be NorR-binding boxes were identified. Mutations altering the spacing or the base sequence of these repeats resulted in an 80 to 90% decrease of transcriptional activation by wild-type NorR. Genome database analyses demonstrate that the GT-(N(7))-AC core of the inverted repeat is found in several proteobacteria upstream of gene loci encoding proteins of nitric oxide metabolism, including nitric oxide reductase (NorB), flavorubredoxin (NorV), NO dioxygenase (Hmp), and hybrid cluster protein (Hcp).

Base Sequence↗

Organization of minicircle genes for guide RNAs in Trypanosoma brucei.

We have identified four T. brucei minicircle sequences that are complementary to cytochrome oxidase III (COIII) edited mRNA sequence and have shown the existence of transcripts from three of these minicircle sequences. These minicircle transcripts potentially serve as guide RNAs (gRNAs) for RNA editing of the COIII transcript. These gRNAs range in size from 55 to 70 nucleotides, are heterogeneous in sequence, and have a 5' terminal triphosphate. The genes for these gRNAs are flanked by imperfect 18 bp repeats separated by approximately 110 bp. Transcription initiates at the first purine within a conserved sequence, 5'-RYA-YA-3', 31 or 32 bp from the upstream inverted repeat. We propose that these 18 bp inverted repeats are important for minicircle gRNA expression in T. brucei.

Animals↗

The 3' and 5'-terminal sequences of influenza A, B and C virus RNA segments are highly conserved and show partial inverted complementarity.

The 3'- and 5'-terminal nucleotides of the genome segments of an influenza A, B, and C virus were identified by directly sequencing viral RNA using two different sequencing techniques. A high degree of conservation at the 3' ends as well as at the 5' ends was observed among the genome segments of each virus and among the segments of the three different virus types. A uridine-rich region was observed from positions 17 through 22 at the 5' end of each segment. Moreover, the conserved 3' and 5'-terminal sequences showed partial and inverted complementarity. This feature results in very similar sequences at the 3' ends of the plus and minus strand RNAs and may also enable single-strand RNAs of influenza virus to form "panhandle" structures. Inverted complementary repeats may play an important role in initiation of viral RNA replication.

Base Sequence↗