Abstract
MITEs (miniature inverted-repeated transposable elements) are a particular class of defective DNA transposons usually present within genomes as high copy number populations of highly homogeneous elements. Although an active MITE, the mPing element, has recently been characterized in rice, the transposition mechanism of MITEs remains unknown. It has been proposed that transposases of related transposons could mobilize MITEs in trans. Moreover, it has also been proposed that the presence of conserved terminal inverted-repeated (TIR) sequences could be the only requirement of MITEs for mobilization, allowing divergent or unrelated elements to be mobilized by a particular transposase. We present here evidence for a recent mobility of the Arabidopsis Emigrant MITE and we report on the capacity of the proteins encoded by the related Lemi1 transposon, a pogo-related element, to specifically bind Emigrant elements. This suggests that Lemi1 could mobilize Emigrant elements and makes the Lemi1/Emigrant couple an ideal system to study the transposition mechanism of MITEs. Our results show that Lemi1 proteins bind Emigrant TIRs but also bind cooperatively to subterminal repeated motifs. The requirement of internal sequences for the formation of proper DNA/protein structure could affect the capacity of divergent MITEs to be mobilized by distantly related transposases.
MeSH Terms
Arabidopsis/enzymology,genetics
Arabidopsis Proteins/metabolism
Base Sequence
Binding Sites
DNA Transposable Elements
DNA, Plant/chemistry,metabolism
Molecular Sequence Data
Protein Binding
Terminal Repeat Sequences
Transposases/metabolism
Chemicals
Arabidopsis Proteins
DNA Transposable Elements
DNA, Plant
Transposases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Loot Céline
Departament de Genètica Molecular, Laboratori de Genètica Molecular Vegetal, CSIC-IRTA, Jordi Girona 18, 08034 Barcelona, Spain.
Santiago Néstor
Sanz Alicia
Casacuberta Josep M
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