scholarly article | Q13442814 |
P356 | DOI | 10.1111/J.1365-2958.1990.TB00555.X |
P698 | PubMed publication ID | 1963920 |
P2093 | author name string | Chandler M | |
Fayet O | |||
Prère MF | |||
Ramond P | |||
Polard P | |||
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Tnt1, a mobile retroviral-like transposable element of tobacco isolated by plant cell genetics | Q42641200 | ||
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ISR1, a transposable DNA sequence resident in Rhizobium class IV strains, shows structural characteristics of classical insertion elements | Q42641709 | ||
Characterization of an efficient coronavirus ribosomal frameshifting signal: requirement for an RNA pseudoknot | Q42646008 | ||
Secondary structural analysis of retrovirus integrase: characterization by circular dichroism and empirical prediction methods | Q44630774 | ||
Role of genes 46 and 47 in bacteriophage T4 reproduction. II. Formation of gaps on parental DNA of polynucleotide ligase defective mutants | Q44758296 | ||
The DNA intermediate in yeast Ty1 element transposition copurifies with virus-like particles: cell-free Ty1 transposition | Q45841053 | ||
Characterization of ribosomal frameshifting in HIV-1 gag-pol expression | Q46573916 | ||
P433 | issue | 10 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 1771-1777 | |
P577 | publication date | 1990-10-01 | |
P1433 | published in | Molecular Microbiology | Q6895967 |
P1476 | title | Functional similarities between retroviruses and the IS3 family of bacterial insertion sequences? | |
P478 | volume | 4 |
Q37697577 | A domain sharing model for active site assembly within the Mu A tetramer during transposition: the enhancer may specify domain contributions. |
Q24564003 | A proposed superfamily of transposase genes: transposon-like elements in ciliated protozoa and a common "D35E" motif |
Q40039424 | Activities of the feline immunodeficiency virus integrase protein produced in Escherichia coli. |
Q44629893 | An extended signal involved in eukaryotic -1 frameshifting operates through modification of the E site tRNA. |
Q34058098 | An in vivo transposase-catalyzed single-stranded DNA circularization reaction |
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Q34108194 | Athila4 of Arabidopsis and Calypso of soybean define a lineage of endogenous plant retroviruses |
Q38185470 | Bacterial insertion sequences: their genomic impact and diversity |
Q33237569 | Bacterial repetitive extragenic palindromic sequences are DNA targets for Insertion Sequence elements |
Q40522244 | Characterization of the minimal DNA-binding domain of the HIV integrase protein |
Q39839452 | Characterization of transposon Tn5469 from the cyanobacterium Fremyella diplosiphon |
Q40873688 | Complementation between HIV integrase proteins mutated in different domains |
Q36540575 | Complete genome sequence of the mosquitocidal bacterium Bacillus sphaericus C3-41 and comparison with those of closely related Bacillus species |
Q41978633 | Crystal structure of the specific DNA-binding domain of Tc3 transposase of C.elegans in complex with transposon DNA. |
Q33742307 | Cyanobacterial transposons Tn5469 and Tn5541 represent a novel noncomposite transposon family. |
Q44059665 | DIRS retroelements in arthropods: identification of the recently active TcDirs1 element in the red flour beetle Tribolium castaneum |
Q38301026 | DNA binding activities of the Caenorhabditis elegans Tc3 transposase |
Q39936049 | DNA sequence of IS91 and identification of the transposase gene |
Q42619820 | Description and characterization of IS994, a putative IS3 family insertion sequence from the salmon pathogen, Renibacterium salmoninarum |
Q30175843 | Dissecting the role of the N-terminal domain of human immunodeficiency virus integrase by trans-complementation analysis |
Q36243985 | Domains of the integrase protein of human immunodeficiency virus type 1 responsible for polynucleotidyl transfer and zinc binding |
Q39952961 | Effects of varying the spacing within the D,D-35-E motif in the catalytic region of retroviral integrase |
Q71817895 | Enhancer-independent variants of phage Mu transposase: enhancer-specific stimulation of catalytic activity by a partner transposase |
Q35667531 | Evolutionary Trends of the Transposase-Encoding Open Reading Frames A and B (orfA and orfB) of the Mycobacterial IS6110 Insertion Sequence |
Q34288663 | Evolutionary reshuffling in the Errantivirus lineage Elbe within the Beta vulgaris genome |
Q40522224 | Formation of a stable complex between the human immunodeficiency virus integrase protein and viral DNA. |
Q36629409 | Genetic analysis of the human immunodeficiency virus type 1 integrase protein. |
Q33717273 | Ginger DNA transposons in eukaryotes and their evolutionary relationships with long terminal repeat retrotransposons |
Q67802014 | HIV-1 DNA integration: Mechanism of viral DNA cleavage and DNA strand transfer |
Q37945176 | HIV-1 Integrase-DNA Recognition Mechanisms |
Q40506127 | High-level ribosomal frameshifting directs the synthesis of IS150gene products |
Q81369112 | Host-dependent activation of IS1203v excision in Shiga toxin-producing Escherichia coli |
Q40564727 | IS231 and other Bacillus thuringiensis transposable elements: a review |
Q39642579 | ISD1, an insertion element from the sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough: structure, transposition, and distribution. |
Q42625474 | Identification and characterization of the linear IS3 molecules generated by staggered breaks |
Q28378737 | Identification of a hexapeptide inhibitor of the human immunodeficiency virus integrase protein by using a combinatorial chemical library |
Q40519774 | Identification of amino acids in HIV-2 integrase involved in site-specific hydrolysis and alcoholysis of viral DNA termini |
Q36684957 | Identification of conserved amino acid residues critical for human immunodeficiency virus type 1 integrase function in vitro |
Q35589106 | Identification of residues in the Mu transposase essential for catalysis |
Q38320766 | Identification of the catalytic and DNA-binding region of the human immunodeficiency virus type I integrase protein |
Q29617579 | Insertion sequences |
Q35023166 | Integrating prokaryotes and eukaryotes: DNA transposases in light of structure. |
Q39897773 | Isolation of a novel IS3 group insertion element and construction of an integration vector for Lactobacillus spp. |
Q34437364 | Metal binding by the D,DX35E motif of human immunodeficiency virus type 1 integrase: selective rescue of Cys substitutions by Mn2+ in vitro |
Q40868886 | Molecular mechanisms in retrovirus DNA integration |
Q71032193 | Mu transpositional recombination: donor DNA cleavage and strand transfer in trans by the Mu transposase |
Q35838477 | Multiple effects of mutations in human immunodeficiency virus type 1 integrase on viral replication |
Q35593721 | Mutagenesis of the IS1 transposase: importance of a His-Arg-Tyr triad for activity |
Q37245763 | Mutational analysis of the integrase protein of human immunodeficiency virus type 2 |
Q39548812 | Mutations in nonconserved domains of Ty3 integrase affect multiple stages of the Ty3 life cycle |
Q42672750 | Phylogenetic analysis reveals stowaway-like elements may represent a fourth family of the IS630-Tc1-mariner superfamily |
Q56898582 | PpRT1: the first complete gypsy-like retrotransposon isolated in Pinus pinaster |
Q34842642 | Presence of a characteristic D-D-E motif in IS1 transposase |
Q43872401 | Programmed translational frameshifting and initiation at an AUU codon in gene expression of bacterial insertion sequence IS911 |
Q39485440 | Reactivation of insertionally inactivated Shiga toxin 2 genes of Escherichia coli O157:H7 caused by nonreplicative transposition of the insertion sequence |
Q71141599 | Relationships between transposable elements based upon the integrase-transposase domains: is there a common ancestor? |
Q40062287 | Requirement of active human immunodeficiency virus type 1 integrase enzyme for productive infection of human T-lymphoid cells |
Q36815395 | Residues critical for retroviral integrative recombination in a region that is highly conserved among retroviral/retrotransposon integrases and bacterial insertion sequence transposases |
Q34668065 | Retroviral Integrase Structure and DNA Recombination Mechanism |
Q37263470 | Revised nomenclature for transposable genetic elements |
Q34770002 | Role of the non-homologous DNA end joining pathway in the early steps of retroviral infection |
Q38296174 | Role of the nonspecific DNA-binding region and alpha helices within the core domain of retroviral integrase in selecting target DNA sites for integration |
Q40040015 | Rous sarcoma virus integrase protein: mapping functions for catalysis and substrate binding |
Q35584896 | Sequence and distribution of IS1312: evidence for horizontal DNA transfer from Rhizobium meliloti to Agrobacterium tumefaciens |
Q58884351 | Sequences and Phylogenies of Plant Pararetroviruses, Viruses, and Transposable Elements |
Q35606338 | Site-specific insertion of IS1301 and distribution in Neisseria meningitidis strains |
Q30408688 | Soluble expression, purification and characterization of the full length IS2 Transposase |
Q72465900 | Step-arrest mutants of phage Mu transposase. Implications in DNA-protein assembly, Mu end cleavage, and strand transfer |
Q30175939 | Structural determinants of metal-induced conformational changes in HIV-1 integrase |
Q39580599 | Structure-based mutational analysis of the C-terminal DNA-binding domain of human immunodeficiency virus type 1 integrase: critical residues for protein oligomerization and DNA binding |
Q35050390 | Targeting HIV-1 integrase |
Q40794335 | Tc1 transposase of Caenorhabditis elegans is an endonuclease with a bipartite DNA binding domain |
Q47697186 | Tdr2, a new zebrafish transposon of the Tc1 family |
Q43750077 | The HIV integrase catalytic core |
Q41078625 | The Tn7 transposase is a heteromeric complex in which DNA breakage and joining activities are distributed between different gene products. |
Q34069694 | The application of a homologous recombination assay revealed amino acid residues in an LTR-retrotransposon that were critical for integration. |
Q36635228 | The core and carboxyl-terminal domains of the integrase protein of human immunodeficiency virus type 1 each contribute to nonspecific DNA binding. |
Q35610259 | The integrons In0, In2, and In5 are defective transposon derivatives |
Q35096049 | The interplay of mRNA stimulatory signals required for AUU-mediated initiation and programmed -1 ribosomal frameshifting in decoding of transposable element IS911. |
Q71032186 | The interwoven architecture of the Mu transposase couples DNA synapsis to catalysis |
Q39799740 | The lactose transporter in Leuconostoc lactis is a new member of the LacS subfamily of galactoside-pentose-hexuronide translocators |
Q38362666 | The metal ion-induced cooperative binding of HIV-1 integrase to DNA exhibits a marked preference for Mn(II) rather than Mg(II). |
Q40805432 | Tn552 transposase purification and in vitro activities. |
Q39840722 | Transcription start sites for syrM and nodD3 flank an insertion sequence relic in Rhizobium meliloti |
Q39645933 | Transient promoter formation: a new feedback mechanism for regulation of IS911 transposition |
Q40039451 | Translational frameshifting at the gag-pol junction of human immunodeficiency virus type 1 is not increased in infected T-lymphoid cells. |
Q33969288 | Transposase-induced excision and circularization of the bacterial insertion sequence IS911 |
Q39915743 | Transposition in Lactobacillus sake and its abolition of lactocin S production by insertion of IS1163, a new member of the IS3 family |
Q38987106 | Transposition mechanism, molecular characterization and evolution of IS6110, the specific evolutionary marker of Mycobacterium tuberculosis complex |
Q33728768 | Transposon Tn21, flagship of the floating genome |
Q39932101 | Transposon Tn5090 of plasmid R751, which carries an integron, is related to Tn7, Mu, and the retroelements |
Q37293068 | Transposon tools hopping in vertebrates. |
Q35922636 | Zinc folds the N-terminal domain of HIV-1 integrase, promotes multimerization, and enhances catalytic activity |
Q38360583 | maT--a clade of transposons intermediate between mariner and Tc1. |
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