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Functions of the sequences at the ends of the inverted repeats of pseudorabies virus.

Two mutants were constructed to explore the functions of the sequences at the end of the S terminus of pseudorabies virus (PrV). In mutant vYa, 17 bp from the internal inverted repeat, as well as adjacent sequences from the L component, were deleted. In mutant v135/9, 143 bp from the internal inverted repeat (including sequences with homology to the pac-1 site of herpes simplex virus), as well as adjacent sequences from the L component, were deleted. Our aim in constructing these mutants was to ascertain whether equalization of the terminal regions of the S component would occur, whether genome termini that lack either the terminal 17 or 143 bp would be generated as a result of equalization of the repeats (thereby identifying the terminal nucleotides that may include cleavage signals), and whether inversion of the S component would occur (thereby ascertaining the importance of the deleted sequences in this process). The results obtained show the following (i) The removal of the terminal 17 or 143 bp of the internal S component, including the sequences with homology to the pac-1 site, does not affect the inversion of the Us. (ii) The equalization of both the vYa and the v135/9 inverted repeats occurs at high frequency, the terminal repeats being converted and becoming similar to the mutated internal inverted repeat. (iii) Mutants in which the 17 terminal base pairs (vYa) have been replaced by unrelated sequences are viable. However, the 143 terminal base pairs appear to be essential to virus survival; concatemeric v135/9 DNA with equalized, mutant-type, inverted repeats accumulates, but mature virions with such equalized repeats are not generated at high frequency. Since concatemeric DNA missing the 143 bp at both ends of the S component is not cleaved, the terminal 143 bp that include the sequences with homology to the pac-1 site are necessary for efficient cleavage. (iv) v135/9 intracellular DNA is composed mainly of arrays in which one S component (with two equalized inverted repeats both having the deletion) is bracketed by two L components in opposite orientations and in which two L components are in head-to-head alignment.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

A transposon-like sequence with short terminal inverted repeats in the nuclear genome of Chlamydomonas reinhardtii.

A 1.2 kb DNA sequence, flanked by a potential seven base target-site duplication, was found inserted into a TOC1 transposable element from Chlamydomonas reinhardtii. The insertion sequence, named TOC2, is a member of a family of repeated DNA sequences that is present in all the C. reinhardtii strains tested. It resembles class II transposable elements: it possesses short 14 bp imperfect terminal repeats that begin AGGAGGGT, and sub-terminal direct repeats located within 250 bp of the termini. No large open reading frames were found. The terminal bases and length of target-site duplication are important in classifying transposable elements. On this basis TOC2 does not fall readily into existing families of class II transposable elements found in plants.

Animals↗

Mapping of Marek's disease virus genome: identification of junction sequences between unique and inverted repeat regions.

Polymerase chain reaction (PCR) to amplify MDV DNA and subsequent sequencing identified the junction of TRL/UL, UL/IRL, IRS/US, and US/TRS. The TRL/UL junction is located 192 bp downstream of the last EcoRI site in the TRL region, while the UL/IRL junction is located 192 bp upstream of the first EcoRI restriction enzyme site in the IRL region. The IRS/US junction is located 950 bp downstream of the second EcoRI site in the IRS region, while the US/TRS junction is located 950 bp upstream of the first EcoRI restriction enzyme site in the TRS region. BamHI restriction enzyme mapping of one of the PCR products identified two novel DNA subfragments, BamHI-U2 and -P4, upstream of the US/TRS junction of the MDV genome. Sequencing of the BamHI-D fragment revealed a novel open reading frame (ORF) encoding a 155 amino acid protein. The TRL/UL junction is located in this ORF. The N-terminal 65 amino acids of this protein is homologous to the N-terminal region of the previously reported pp38, which is located in the UL/IRL region. Computer-assisted analysis indicated that both are transmembrane proteins and that they share an antigenic domain.

Amino Acid Sequence↗

Tn5053, a mercury resistance transposon with integron's ends.

We describe a novel type of mercury resistance transposon, Tn5053, which was found in the chromosome of a mercury-resistant Xanthomonas strain isolated from a mercury mine. An 8400 base-pair Tn5053 is bracketed by 25 base-pair inverted repeats that have no sequence homology with inverted repeats of classical mercury resistance transposons Tn501 and Tn21. Instead they show high homology with inverted repeats bracketing the antibiotic resistance segment of Tn21 (integron In2). A 38 base-pair element, which is highly homologous to the inverted repeats of classical mercury resistance transposons has been found within Tn5053 near one of its ends. This internal inverted repeat is fused to the mer operon of Tn5053 in exactly the same way as in the Tn501 mercury resistance transposon. This finding suggests that the mer operon was integrated into the Tn5053 transposition module not through integron-specific pathway but rather via insertion of a classical mercury resistance transposon.

Base Sequence↗

The nuclear factor SP8BF binds to the 5'-upstream regions of three different genes coding for major proteins of sweet potato tuberous roots.

Sporamin and beta-amylase are two major proteins of tuberous roots of sweet potato, and expression of genes coding for sporamin and beta-amylase is induced concomitantly in leaves with the petioles attached by exogenous supply of sucrose or polygalacturonic acid. We have used a DNase I footprinting assay to characterize nuclear factors that bind to the 5'-upstream regions of gSPO-A1, gSPO-B1 and g beta-Amy genes that encode A-type sporamin, B-type sporamin and the subunit of beta-amylase, respectively. Nuclear extracts from sucrose-treated petioles protected a region around -155 relative to the transcription start site of gSPO-A1 and a region around -880 of g beta-Amy from DNase I digestion on both strands. These two protected regions both contained the sequence ACTGTGTA, designated SP8a, in opposite orientation with respect to the direction of transcription. A gel mobility shift assay with SP8a oligonucleotide and competition experiments indicated that a common factor SP8BF binds to the SP8a sequence in gSPO-A1 and g beta-Amy. Binding of SP8BF to the SP8a oligonucleotide was abolished by mutation within the SP8a sequence. Fragments of the 5'-upstream region of gSPO-B1 also competed for the binding of SP8BF to the SP8a oligonucleotide, and the DNase I footprinting assay revealed three binding sites for SP8BF in the 5'-upstream region of gSPO-B1. These three sites in gSPO-B1 all contained the sequence TACTATT, designated SP8b, which shared 4 nucleotides at identical positions with the SP8a sequence. An inverted repeat of the SP8b sequence was also present at one protected site in the 5'-upstream region of g beta-Amy. In addition to sucrose-treated petioles, SP8BF activity was also present in tuberous roots and untreated fresh petioles of sweet potato. Furthermore, the activity was also detected in stems of tobacco plantlets, suggesting that SP8BF is an ubiquitous factor.

Base Sequence↗

Structural characterization of exon 6 of the rat IGF-I gene.

In rat liver, insulin-like growth factor I (IGF-I) mRNAs exist as two major size classes of 7.5-7.0 kb and 1.2-0.9 kb. The 7.5- to 7.0-kb IGF-I mRNAs predominate in some nonhepatic tissues of the rat. Because the previously reported sequences of rat IGF-I cDNAs and genomic clones account for only 2.1 kb of sequence, the majority of the sequence of 7.5- to 7.0-kb rat IGF-I mRNAs was unknown. Using a combination of nucleotide sequencing of genomic DNA and cDNA clones and Northern hybridization and RNase protection, we have characterized a 6,354-base-long 3' exon (exon 6) of the rat IGF-I gene. The sequence of exon 6 establishes the previously unknown sequence of the 3' end of the 7.5- to 7.0-kb rat IGF-I mRNAs, comprised predominantly of an unusually long 3' untranslated sequence (3'UT). The long 3'UT contains multiple ATTTA, A(T)nA, and (T)nA sequences, as well as inverted repeats. These sequences may contribute to the shorter half-life of the 7.5- to 7.0-kb rat IGF-I mRNAs relative to the 1.2- to 0.9-kb forms that have been demonstrated previously in vitro and in vivo. We also demonstrate that the 7.5- to 7.0-kb rat IGF-I mRNAs are localized to the cytoplasm of rat liver, providing indirect evidence that they are mature and functional mRNAs.

Animals↗

Repetitive DNA sequences in the human corticotropin-beta-lipotrophin precursor gene region: Alu family members.

Repetitive DNA sequences in the human corticotropin-beta-lipotropin precursor gene region have been studied by blot hybridization analysis and DNA sequencing. Six repetitive sequences are present in this gene region; five of them are Alu family members with an approximate length of 300 base pairs, and the other consists of a portion of an Alu family sequence. Two of these Alu family members are located in the 5'-flanking region of the gene, and the remaining four within the intervening sequences. These Alu family sequences constitute inverted repeats in the intervening sequences as well as in the 5'-flanking region of the gene.

Adrenocorticotropic Hormone↗

[Relation between changes in the palindromic fraction and DNA replication during early stages of sea urchin development].

Inverted repeat DNA sequences during embryogenesis were tested by comparing the bulk inverted repeat taken from Strongylocentrotus intermedius sea urchin embryos at different stages of development. This fraction exhibited quantitative and qualitative changes. A reversible quantitative decrease was associated with the 16-cell embryo and blastula stages. Sizing on 1.5% agarose gel indicated that the length of the palindromic sequences at the early blastula stage was predominantly about 200 b. p., and at the pluteus stage 240 b. p. Sensitivity of the palindromic sequences to S1 nuclease digestion at the blastula and gastrula stages was different. It was shown that a specific set of the inverted repeats was included in fragments of DNA--comparising the origin of replication. The results suggest that the change of inverted repeats may be determined by replication processes.

Animals↗

Polydnavirus DNA is integrated in the DNA of its parasitoid wasp host.

The polydnavirus Campoletis sonorensis virus (CsV) is present in the oviducts of all adult C. sonorensis female wasps and appears to be required for these wasps to parasitize hosts successfully. Physical mapping, Southern blot analysis, and nucleotide sequence analysis demonstrate that the viral DNA B-specific sequences in cloned wasp DNA are colinear with viral genomic segment DNA B from nucleocapsids and are covalently linked to nonviral wasp sequences. Integrated DNA B terminates in 59-nucleotide imperfect direct repeats, but a single repeat exists in the extrachromosomal superhelical viral DNA B. Sequences near each junction form imperfect inverted repeats with sequences near the ends of an internal viral 540-base-pair repeat element gene. CsV appears to be the first documented integrated, nonretroviral DNA virus of insects and probably is vertically transmitted as a provirus.

Animals↗

Sequence of 1019 nucleotides encompassing one of the inverted repeats from the yeast 2 micrometer plasmid.

A sequence of 1019 nucleotides encompassing one of the 600 base inverted repeats and non-repeated flanking regions has been determined in the type A yeast 2 micrometers plasmid cloned in pMB9. Methods are described for applying the Maxam-Gilbert sequencing procedure to DNA fragments labelled at the 3'-end using a T4-polymerase exchange/repair reaction and for sequencing 5'-end labelled fragments using dideoxy-nucleotides as chain terminators in the presence of E. coli DNA polymerase (nach Klenow). A notable feature of the sequence is its unusual content of symmetry elements. In one region of 140 nucleotides, 137 are involved in a complex arrangement of direct and inverted repeats linked by palindromic sequences.

Base Sequence↗

Topography of variola smallpox virus inverted terminal repeats.

We examined the nucleotide sequences of the inverted terminal repeat (ITR) regions adjacent to the covalently closed hairpin end sequences of three variola major and four minor strains from smallpox outbreaks in Europe, Asia, Africa, and South America. The ITR regions ranged in size from 581 to 1051 base pairs (bp) and contained no apparent open reading frames. Two nonrepetitive sequence elements, NR1 and NR2, were conserved and resembled nonrepetitive elements in the ITRs of other orthopoxviruses. Depending on strain, the terminally positioned NR1 and the more internal NR2 flanked a direct repeat region containing from none to four copies of a 69-bp sequence and one copy of a 54-bp related sequence partial repeat. A distinctive pattern of ITR topography of NR1 and NR2 flanking a single copy of the 69-bp unit characterized each of three examined alastrim variola minor strains. A nonalastrim African minor strain from the last natural case of smallpox in Somalia in 1977 showed the largest ITR region of the examined viruses because of a second direct repeat cluster following NR2.

Africa↗

Unusual structure of the FB family of transposable elements in Drosophila.

We have analyzed the construction of the members of the foldback (FB) family of transposable elements in Drosophila by detailed restriction analysis, cross hybridization, electron microscopy, in situ hybridization and nucleotide sequence determination. The members are heterogeneous, with both the inverted terminal repeats and the total element sizes extremely variable. Nevertheless, the ends of the inverted repeats represent closely conserved sequences, similar for all members. Sequence analysis of one of the FB elements revealed an unusual constriction. There are scattered multiple copies of a 10 bp sequence near the inverted repeat termini; 300 bp from the end this sequence is expanded to a 20 bp repeat, and 500 bp from the end it is again expanded to a 31 bp repeat. A large part of the inverted repeats consists of contiguous tandem repeats of this 31 bp sequence. We also find two differences between the two copies of the inverted repeat, one of which involves an intact copy of the 10 bp sequence mentioned above. Sequence analysis of a corresponding DNA segment without this transposable element shows that insertion generates a 9 bp duplication at the target site. In situ hybridizations to polytene chromosomes show about 30 widely scattered positions with homology. Comparison of the hybridization patterns for three strains shows significant interstrain and intrastrain differences in chromosomal locations.

Animals↗

Multiple reiteration of a 40-bp nucleotide sequence in the inverted terminal repeat of the genome of a canine adenovirus.

The DNA of a vaccine strain of canine adenovirus type 1 [ICHV vaccine; Connaught Laboratories, Ltd.; CAV-1(CLL)] has been cloned in plasmid pAT153 in the form of subgenomic BamHI digestion fragments. Analysis of the nucleotide sequences of cloned terminal fragments has revealed an inverted terminal repeat (ITR) with a minimum length of 198 nucleotides, including a tandem reiteration of the 40-bp nucleotide sequence from positions 14 to 53. The ITRs had the 5'-CATCATCAAT ... sequence typical of adenoviruses and the highly conserved sequence ATAATATAC (nucleotides 9-17) of human strains. Additionally, one BamHI A clone (left terminus) contained three sequential copies of the 40-bp sequence, and two BamHI C clones (right terminus) contained at least seven. These did not appear to be artifacts of cloning, since evidence was obtained that the multiple reiterations also occurred in DNA isolated from intact virus. By analogy with human adenoviruses, the repetitive sequence in the CAV-1(CLL) genome encompasses the entire nuclear factor I (NFI) binding site of the origin of DNA replication. Additionally, the 40-bp nucleotide sequence was found to contain the sequence AGG(N)4GCCTAA (nucleotides 27-39), which closely resembles the concensus sequence of the human adenovirus NFI binding site [TGG(N)6-7GCCAA; nucleotides 25-38]. It appears, therefore, that the Connaught CAV-1 vaccine contains reiterated copies of an essential part of the adenoviral origin of DNA replication. A mechanism is proposed for the generation of multiple reiterations of sequences in the right ITR, given an initial single tandem repeat in the left ITR.

Adenoviridae↗

Pogo transposase contains a putative helix-turn-helix DNA binding domain that recognises a 12 bp sequence within the terminal inverted repeats.

Pogo is a transposable element with short terminal inverted repeats. It contains two open reading frames that are joined by splicing and code for the putative pogo transposase, the sequence of which indicates that it is related to the transposases of members of the Tc1/mariner family as well as proteins that have no known transposase activity including the centromere binding protein CENP-B. We have shown that the N-terminal region of pogo transposase binds in a sequence-specific manner to the ends of pogo and have identified residues essential for this. The results are consistent with a prediction that DNA binding is due to a helix-turn-helix motif within this region. The transposase recognises a 12 bp sequence, two copies of which are present at each end of pogo DNA. The outer two copies occur as inverted repeats 14 nucleotides from each end of the element, and contain a single base mismatch and indicate the inverted repeats of pogo are 26 nucleotides long. The inner copies occur as direct repeats, also with a single mismatch.

Amino Acid Sequence↗

Anatomy of bovine mammillitis DNA II. Size and arrangements of the deoxynucleotide sequences.

We previously reported that bovine mammillitis virus (BMV) DNA consists of two covalently linked components designated L and S and estimated to be 71.5 x 10(6) and 15.7 x 10(6) in molecular weight, respectively; the components invert relative to each other, giving rise to four equimolar populations differing soley in the relative orientation of the two components. We now report that (i) BMV DNA has a contour length corresponding to a molecular weight of 89 x 10(6). (ii) Component L consists of a unique sequence (Ul) bracketed by sequences ab and its inverted repeat b'a', estimated to be of molecular weights 66.1 x 10(6), 2.7 x 10(6), and 2.7 x 10(6), respectively. (iii) Component S consists of a unique sequence (Us) bracketed be sequence ca and its inverted repeat a'c', estimated to be of molecular weights 8.3 x 10(6), 3.7 x 10(6), and 3.7 x 10(6), respectively. (iv) The a sequences present at the termini of a complete linear molecule (abUlb'a'a'c'Usca) are arranged in tandem so that the DNA can circularize after limited digestion with arranged in tandem so that the DNA can circularize after limited digestion with lambda 5'-exonuclease. The size of the a sequences was estimated to be 0.7 x 10(6) in molecular weight. (v) At least portions of the a sequences are repeated in an inverted orientation immediately adjacent to or near the a sequence. Thus, BMV DNA mimics herpes simplex virus type 1 DNA with respect to the arrangement but not size of deoxynucleotide sequences. The evolutionary relationship of BMV DNA relative to other herpesvirus DNAs is discussed.

Base Sequence↗

Maize Activator transposase has a bipartite DNA binding domain that recognizes subterminal sequences and the terminal inverted repeats.

The mobility of maize transposable element Activator (Ac) is dependent on the 11-bp terminal inverted repeats (IRs) and approximately 250 subterminal nucleotides at each end. These sequences flank the coding region for the transposase (TPase) protein, which is required for the transposition reaction. Here we show that Ac TPase has a bipartite DNA binding domain, and recognizes the IRs and subterminal sequences in the Ac ends. TPase binds cooperatively to repetitive ACG and TCG sequences, of which 25 copies are found in the 5' and 20 copies in the 3' subterminal regions. TPase affinity is highest when these sites are flanked on the 3' side by an additional G residue (A/TCGG), which is found at 75% of binding sites. Moreover, TPase binds specifically to the Ac IRs, albeit with much lower affinity. Two mutations within the IRs that immobilize Ac abolish TPase binding completely. The basic DNA binding domain of TPase is split into two subdomains. Binding to the subterminal motifs is accomplished by the C-terminal subdomain alone, whereas recognition of the IRs requires the N-terminal subdomain in addition. Furthermore, TPase is extremely flexible in DNA binding. Two direct or inverted binding sites are bound equally well, and sites that are five to twelve bases apart are similarly well bound. The consequences of these findings for the Ac transposition reaction are discussed.

Base Sequence↗

Inverted repeat structure and homologous sequences in the LD1 amplicons of Leishmania spp.

In the parasitic trypanosomatids of the genus Leishmania, novel circular (CD) and linear (LD) multicopy genetic elements arise de novo either spontaneously or as a result of drug selection. We report that the LD1 minichromosomes of L. donovani, L. major and L. mexicana (ranging in size from 180 to 230 kb) have an inverted repeat structure and contain homologous sequences located at similar distances from the telomere; one half of the chromosome being the mirror image of the other. They must therefore have originated from a unique conserved source chromosome; the size polymorphism being generated by the point at which inversion occurs. The circular CD1 elements appear to be circularised segments of the LD1 elements. These observations lead to a unified concept of how minichromosomes LD1 and circular CD1 genetic elements emerge within the Leishmania and contribute to evolution of karyotype.

Animals↗

Enzymatic methylation of inverted DNA repeats in the vicinity of the mouse beta-major globin gene.

This paper examines the extent of enzymatic methylation in 5'-CCGG sequences of inverted repeats in DNA isolated from adult liver and bone marrow of DBA/2 mice, with special attention to the methylation of such sequences in the vicinity of the beta-major globin gene. Two thirds of inverted repeats contain 5'-AGCT and 5'-CCGG sequences, as found by a method based on the capability of inverted repeats of forming intramolecular duplexes under the conditions of "zero-time" reassociation. Methylation in internal cytosines of 5'-CCGG sequences of inverted DNA repeats differs between bone marrow and liver tissues. The beta-major globin gene was found in DNA covalently linked to inverted repeats. The enzymatic methylation of inverted repeats neighbouring the beta-major globin gene differs at HpaII recognition sites; the DNA of bone marrow tissue, in which this gene is expressed, is less methylated at such sites as compared to liver DNA.

Animals↗