DNA Binding Specificity and Cleavage Activity of Pacmmar Transposase
Mariner-like elements (MLEs) are members of the Tc1/mariner superfamily of transposable elements which transpose by a “cut and paste” mechanism. Most of the MLEs characterized to date are transpositionally inactive due to the accumulation of mutations in their transposase gene. Here, we report the b...
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Published in: | Biochemistry (Easton) Vol. 48; no. 30; pp. 7279 - 7286 |
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Abstract | Mariner-like elements (MLEs) are members of the Tc1/mariner superfamily of transposable elements which transpose by a “cut and paste” mechanism. Most of the MLEs characterized to date are transpositionally inactive due to the accumulation of mutations in their transposase gene. Here, we report the biochemical study of two copies of the Pacmmar element (Pacmmar1.1 and Pacmmar1.2), isolated from the coastal crab Pachygrapsus marmoratus. These two copies present an open reading frame encoding a putative active transposase. Using an in vitro transposition assay, we show that Pacmmar transposases are unable to perform by themselves the transposition reaction. However, we demonstrate by an electrophoretic mobility shift assay that both transposases bind specifically to the inverted terminal repeat of the Pacmmar element. Moreover, an in vitro cleavage assay showed that both transposases have the capacity to cleave the transposon. The in vitro cleavage activity of Pacmmar transposases appears imprecise, suggesting the requirement of specific host factors or the presence of mutations which have modified the cleavage specificity of the enzyme. |
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AbstractList | Mariner-like elements (MLEs) are members of the Tc1/mariner superfamily of transposable elements which transpose by a "cut and paste" mechanism. Most of the MLEs characterized to date are transpositionally inactive due to the accumulation of mutations in their transposase gene. Here, we report the biochemical study of two copies of the Pacmmar element (Pacmmar1.1 and Pacmmar1.2), isolated from the coastal crab Pachygrapsus marmoratus. These two copies present an open reading frame encoding a putative active transposase. Using an in vitro transposition assay, we show that Pacmmar transposases are unable to perform by themselves the transposition reaction. However, we demonstrate by an electrophoretic mobility shift assay that both transposases bind specifically to the inverted terminal repeat of the Pacmmar element. Moreover, an in vitro cleavage assay showed that both transposases have the capacity to cleave the transposon. The in vitro cleavage activity of Pacmmar transposases appears imprecise, suggesting the requirement of specific host factors or the presence of mutations which have modified the cleavage specificity of the enzyme. |
Author | Hardivillier, Yann Casse, Nathalie Pradier, Elisabeth Renault, Sylvaine Delaurière, Laurence Chénais, Benoît |
Author_xml | – sequence: 1 givenname: Laurence surname: Delaurière fullname: Delaurière, Laurence – sequence: 2 givenname: Benoît surname: Chénais fullname: Chénais, Benoît email: bchenais@univ-lemans.fr – sequence: 3 givenname: Elisabeth surname: Pradier fullname: Pradier, Elisabeth – sequence: 4 givenname: Yann surname: Hardivillier fullname: Hardivillier, Yann – sequence: 5 givenname: Sylvaine surname: Renault fullname: Renault, Sylvaine – sequence: 6 givenname: Nathalie surname: Casse fullname: Casse, Nathalie |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/19530701$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_aaf_2018_12_007 crossref_primary_10_1074_jbc_M113_533216 crossref_primary_10_1016_j_gene_2009_08_009 crossref_primary_10_1021_bi901957p crossref_primary_10_1002_cphc_201200885 crossref_primary_10_1038_srep27101 |
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Snippet | Mariner-like elements (MLEs) are members of the Tc1/mariner superfamily of transposable elements which transpose by a “cut and paste” mechanism. Most of the... Mariner-like elements (MLEs) are members of the Tc1/mariner superfamily of transposable elements which transpose by a "cut and paste" mechanism. Most of the... |
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SubjectTerms | Amino Acid Sequence Animals Crustacea - genetics Crustacea - metabolism DNA - metabolism DNA Transposable Elements - genetics Molecular Sequence Data Open Reading Frames Protein Binding Substrate Specificity - genetics Terminal Repeat Sequences Transposases - genetics Transposases - metabolism |
Title | DNA Binding Specificity and Cleavage Activity of Pacmmar Transposase |
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