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PMID: 1313335 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

P element transposition in vitro proceeds by a cut-and-paste mechanism and uses GTP as a cofactor.

Cell ·Vol. 69 ·No. 1 ·1992-04-03 ·Pages 27-39

Kaufman PD, Rio DC

Abstract

We have developed an in vitro reaction system for Drosophila P element transposition. Transposition products were recovered by selection in E. coli, and contained simple P element insertions flanked by 8 bp target site duplications as observed in vivo. Transposition required Mg+2 and partially purified P element transposase. Unlike other DNA rearrangement reactions, P element transposition in vitro used GTP as a cofactor; deoxyGTP, dideoxyGTP, or the nonhydrolyzable GTP analogs GMP-PNP or GMP-PCP were also used. Transposon DNA molecules cleaved at the P element termini were able to transpose, but those lacking 3'-hydroxyl groups were inactive. These biochemical data are consistent with genetic data suggesting that P element transposition occurs via a "cut-and-paste" mechanism.

MeSH Terms
Animals Base Sequence Cell Line DNA Transposable Elements/physiology Drosophila melanogaster/genetics Escherichia coli/genetics Guanosine Triphosphate/metabolism Magnesium/metabolism Molecular Sequence Data Nucleotidyltransferases/metabolism Plasmids/genetics Temperature Transposases
Chemicals
DNA Transposable Elements Guanosine Triphosphate Nucleotidyltransferases Transposases Magnesium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kaufman P D
Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142.
Rio D C
Article Info
Journal
Cell
Abbr.
Cell
ISSN
0092-8674
Published
1992-04-03
Pages
27-39
Language
English
Region
United States
NLM ID
0413066
Subset
IM
Grants
NIGMS NIH HHS · GM47394 · United States
NICHD NIH HHS · HD22857 · United States
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