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PMID: 11290726 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Regulation of activator/dissociation transposition by replication and DNA methylation.

Genetics ·Vol. 157 ·No. 4 ·2001-04-00 ·Pages 1723-33

Ros F, Kunze R

Abstract

In maize the transposable elements Activator/Dissociation (Ac/Ds) transpose shortly after replication from one of the two resulting chromatids ("chromatid selectivity"). A model has been suggested that explains this phenomenon as a consequence of different affinity for Ac transposase binding to holo-, hemi-, and unmethylated transposon ends. Here we demonstrate that in petunia cells a holomethylated Ds is unable to excise from a nonreplicating vector and that replication restores excision. A Ds element hemi-methylated on one DNA strand transposes in the absence of replication, whereas hemi-methylation of the complementary strand causes a >6.3-fold inhibition of Ds excision. Consistently in the active hemi-methylated state, the Ds ends have a high binding affinity for the transposase, whereas binding to inactive ends is strongly reduced. These results provide strong evidence for the above-mentioned model. Moreover, in the absence of DNA methylation, replication enhances Ds transposition in petunia protoplasts >8-fold and promotes formation of a predominant excision footprint. Accordingly, replication also has a methylation-independent regulatory effect on transposition.

MeSH Terms
DNA Damage DNA Footprinting DNA Methylation DNA Replication DNA Transposable Elements DNA, Plant Transposases Zea mays/genetics
Chemicals
DNA Transposable Elements DNA, Plant Transposases
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ros F
Institut für Genetik und Mikrobiologie, Universität München, 80638 Munich, Germany.
Kunze R
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34 references, click to expand
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Article Info
Journal
Genetics
Abbr.
Genetics
ISSN
0016-6731
Published
2001-04-00
Pages
1723-33
Language
English
Region
United States
NLM ID
0374636
PMCID
PMC1461610
Subset
IM
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