2000Proceedings of the National Academy of SciencesRequires access

Insertion site preferences of the P transposable element in Drosophila melanogaster

G.-c. Liao

Open publisher page 26 citations

Abstract

We determined the genomic sequence at the site of insertion in 2,266 unselected P element insertion events.Estimating physical properties of the genomic DNA at these insertion sites-such as base composition, bendability, A-philicity, protein-induced deformability, and B-DNA twist-revealed that they differ significantly from average chromosomal DNA.By examining potential hydrogen bonding sites in the major groove, we identified a 14-bp palindromic pattern centered on the 8-bp target site duplication that is generated by P element insertion.Our results suggest that the P-element transposition mechanism has a two-fold dyad symmetry and recognizes a structural feature at insertion sites, rather than a specific sequence motif.

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What this paper is about

We determined the genomic sequence at the site of insertion in 2,266 unselected P element insertion events.Estimating physical properties of the genomic DNA at these insertion sites-such as base composition, bendability, A-philicity, protein-induced deformability, and B-DNA twist-revealed that they differ significantly from average chromosomal DNA.By examining potential hydrogen bonding sites in the major groove, we identified a 14-bp palindromic pattern centered on the 8-bp target site duplication that is generated by P element insertion.Our results suggest that the P-element transposition mechanism has a two-fold dyad symmetry and recognizes a structural feature at insertion sites, rather than a specific sequence motif.

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Available abstract

We determined the genomic sequence at the site of insertion in 2,266 unselected P element insertion events.Estimating physical properties of the genomic DNA at these insertion sites-such as base composition, bendability, A-philicity, protein-induced deformability, and B-DNA twist-revealed that they differ significantly from average chromosomal DNA.By examining potential hydrogen bonding sites in the major groove, we identified a 14-bp palindromic pattern centered on the 8-bp target site duplication that is generated by P element insertion.Our results suggest that the P-element transposition mechanism has a two-fold dyad symmetry and recognizes a structural feature at insertion sites, rather than a specific sequence motif.

Key concepts: Transposable element, Drosophila melanogaster, DNA Transposable Elements, Genetics, P element, Biology, Drosophila (subgenus), Genome

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