Home LiteratureArticle Details
PMID: 1848178 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Translational control of transposition activity of the bacterial insertion sequence IS1.

The EMBO journal ·Vol. 10 ·No. 3 ·1991-03-00 ·Pages 705-12

Escoubas JM, Prère MF, Fayet O, Salvignol I, Galas D, Zerbib D, Chandler M

Abstract

The experiments reported here provide strong evidence indicating that the transposition frequency of the bacterial insertion sequence IS1 is determined principally by two IS1-specified proteins. The first, InsA, was previously shown to bind to the ends of the element and to act as a repressor. We present both physical and genetic evidence which reveals that the second, the InsAB' transposase, is a fusion of InsA with the product of a downstream reading frame, InsB'. Synthesis of this protein occurs by a -1 frameshift between the insA and insB' frames. It requires the presence of an intact retroviral-like frameshift signal composed of an A6C motif and a downstream region able to form several alternative secondary structures. In vivo studies show that IS1 transposition activity depends on the relative rather than on the absolute levels of InsA and InsAB'. The ratio is determined primarily at the translational level by frameshifting and appears to be relatively insensitive to large variations in levels of transcription. This novel homeostatic control could therefore protect IS1 from activation as a consequence of insertion into active transcription units.

MeSH Terms
Base Composition Base Sequence Cloning, Molecular DNA Transposable Elements Escherichia coli/genetics Escherichia coli Proteins Frameshift Mutation Molecular Sequence Data Nucleic Acid Conformation Oligonucleotide Probes Plasmids Promoter Regions, Genetic Protein Biosynthesis Recombinant Fusion Proteins/biosynthesis Repressor Proteins/biosynthesis,genetics Transcription, Genetic beta-Galactosidase/biosynthesis,genetics
Chemicals
DNA Transposable Elements Escherichia coli Proteins Oligonucleotide Probes Recombinant Fusion Proteins Repressor Proteins insA1 protein, E coli beta-Galactosidase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Escoubas J M
Centre de Recherche de Biochimie et Génétique Cellulaire du CNRS, Toulouse, France.
Prère M F
Fayet O
Salvignol I
Galas D
Zerbib D
Chandler M
References (34)
34 references, click to expand
  1. Insertion element IS1 encodes two structural genes required for its transposition.
    J Mol Biol. 1984 Aug 5;177(2):229-45 PMID: 6086942
  2. Both inverted repeat sequences located at the ends of IS1 provide promoter functions.
    J Mol Biol. 1984 Aug 5;177(2):247-67 PMID: 6086943
  3. Improved plasmid vectors with a thermoinducible expression and temperature-regulated runaway replication.
    Gene. 1983 Apr;22(1):103-13 PMID: 6305768
  4. Protein-DNA recognition.
    Annu Rev Biochem. 1984;53:293-321 PMID: 6236744
  5. Purification, structure, and properties of hybrid beta-galactosidase proteins.
    J Biol Chem. 1983 Dec 10;258(23):14354-8 PMID: 6417139
  6. Analysis of gene control signals by DNA fusion and cloning in Escherichia coli.
    J Mol Biol. 1980 Apr;138(2):179-207 PMID: 6997493
  7. Construction and characterization of amplifiable multicopy DNA cloning vehicles derived from the P15A cryptic miniplasmid.
    J Bacteriol. 1978 Jun;134(3):1141-56 PMID: 149110
  8. Nucleotide sequence of an insertion element, IS1.
    Proc Natl Acad Sci U S A. 1978 Feb;75(2):615-9 PMID: 273224
  9. Cleavage of structural proteins during the assembly of the head of bacteriophage T4.
    Nature. 1970 Aug 15;227(5259):680-5 PMID: 5432063
  10. Acetylornithinase of Escherichia coli: partial purification and some properties.
    J Biol Chem. 1956 Jan;218(1):97-106 PMID: 13278318
  11. E. coli ribosomes re-phase on retroviral frameshift signals at rates ranging from 2 to 50 percent.
    New Biol. 1989 Nov;1(2):159-69 PMID: 2562219
  12. Functional organization of the ends of IS1: specific binding site for an IS 1-encoded protein.
    Mol Microbiol. 1990 Sep;4(9):1477-86 PMID: 1962838
  13. Frameshifting is required for production of the transposase encoded by insertion sequence 1.
    Proc Natl Acad Sci U S A. 1989 Jun;86(12):4609-13 PMID: 2543983
  14. Regulation of IS1 transposition by the insA gene product.
    J Mol Biol. 1989 Aug 20;208(4):567-74 PMID: 2553980
  15. Mutational analysis of the open reading frames in the transposable element IS1.
    Genetics. 1988 Sep;120(1):47-55 PMID: 2851480
  16. Artificial transposable elements in the study of the ends of IS1.
    Gene. 1987;61(1):91-101 PMID: 2832256
  17. Interposon mutagenesis of soil and water bacteria: a family of DNA fragments designed for in vitro insertional mutagenesis of gram-negative bacteria.
    Gene. 1987;52(2-3):147-54 PMID: 3038679
  18. Escherichia coli integration host factor binds specifically to the ends of the insertion sequence IS1 and to its major insertion hot-spot in pBR322.
    J Mol Biol. 1987 May 20;195(2):261-72 PMID: 2821273
  19. Expression of proteins essential for IS1 transposition: specific binding of InsA to the ends of IS1.
    EMBO J. 1987 Oct;6(10):3163-9 PMID: 2826132
  20. A transcriptional terminator sequence in the prokaryotic transposable element IS1.
    Mol Gen Genet. 1987 Mar;206(3):485-90 PMID: 3035345
  21. Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genes.
    J Mol Biol. 1986 May 5;189(1):113-30 PMID: 3537305
  22. Signals for ribosomal frameshifting in the Rous sarcoma virus gag-pol region.
    Cell. 1988 Nov 4;55(3):447-58 PMID: 2846182
  23. Identification and sequence of gene dicB: translation of the division inhibitor from an in-phase internal start.
    Nucleic Acids Res. 1988 Jul 25;16(14A):6327-38 PMID: 3041373
  24. RNA pseudoknots that interact with components of the translation apparatus.
    Cell. 1989 Jul 14;58(1):9-12 PMID: 2473840
  25. Characterization of an efficient coronavirus ribosomal frameshifting signal: requirement for an RNA pseudoknot.
    Cell. 1989 May 19;57(4):537-47 PMID: 2720781
  26. In vitro insertional mutagenesis with a selectable DNA fragment.
    Gene. 1984 Sep;29(3):303-13 PMID: 6237955
  27. Evidence for a role of translational frameshifting in the expression of transposition activity of the bacterial insertion element IS1.
    Gene. 1990 Mar 30;88(1):15-20 PMID: 2160405
  28. Use of T7 RNA polymerase to direct expression of cloned genes.
    Methods Enzymol. 1990;185:60-89 PMID: 2199796
  29. The regulatory role of the IS1-encoded InsA protein in transposition.
    Mol Microbiol. 1990 Mar;4(3):471-7 PMID: 2162466
  30. Improved detection of helix-turn-helix DNA-binding motifs in protein sequences.
    Nucleic Acids Res. 1990 Sep 11;18(17):5019-26 PMID: 2402433
  31. Structure and stability of Tn9-mediated cointegrates. Evidence for two pathways of transposition.
    J Mol Biol. 1982 Jan 15;154(2):245-72 PMID: 6281440
  32. Mapping of RNA polymerase binding sites in R12 derived plasmids carrying the replication-incompatibility region and the insertion element IS1.
    Nucleic Acids Res. 1982 Nov 25;10(22):7295-311 PMID: 6296771
  33. Cointegrate formation mediated by Tn9. II. Activity of IS1 is modulated by external DNA sequences.
    J Mol Biol. 1983 Oct 15;170(1):61-91 PMID: 6313938
  34. Complete nucleotide sequence of bacteriophage T7 DNA and the locations of T7 genetic elements.
    J Mol Biol. 1983 Jun 5;166(4):477-535 PMID: 6864790
Article Info
Journal
The EMBO journal
Abbr.
EMBO J
ISSN
0261-4189
Published
1991-03-00
Pages
705-12
Language
English
Region
England
NLM ID
8208664
PMCID
PMC452705
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]