J Bacteriol. 1993 November; 175(21): 6932-6938
Characterization of the Tn5 transposase and inhibitor proteins: a model for the inhibition of transposition.
N B de la Cruz,
M D Weinreich,
T W Wiegand,
M P Krebs and
W S Reznikoff
Department of Biochemistry, University of Wisconsin, Madison 53706.
ABSTRACT
Tn5 is a composite transposon consisting of two IS50 sequences in inverted orientation with respect to a unique, central region encoding several antibiotic resistances. The IS50R element encodes two proteins in the same reading frame which regulate the transposition reaction: the transposase (Tnp), which is required for transposition, and an inhibitor of transposition (Inh). The inhibitor is a naturally occurring deletion variant of Tnp which lacks the N-terminal 55 amino acids. In this report, we present the purification of both the Tnp and Inh proteins and an analysis of their DNA binding properties. Purified Tnp, but not Inh, was found to bind specifically to the outside end of Tn5. Inh, however, stimulated the binding activity of Tnp to outside-end DNA and was shown to be present with Tnp in these bound complexes. Inh was also found to exist as a dimer in solution. These results indicate that the N-terminal 55 amino acids of Tnp are required for sequence-specific binding. They also suggest that Inh inhibits transposition by forming mixed oligomers with Tnp which still bind to the ends of the transposon but are defective for later stages of the transposition reaction.
J Bacteriol. 1993 November; 175(21): 6932-6938
This article has been cited by other articles:
-
Gradman, R. J., Reznikoff, W. S.
(2008). Tn5 Synaptic Complex Formation: Role of Transposase Residue W450. J. Bacteriol.
190: 1484-1487
[Abstract]
[Full Text]
-
Piazzolla, D., Cali, S., Spoldi, E., Forti, F., Sala, C., Magnoni, F., Deho, G., Ghisotti, D.
(2006). Expression of phage P4 integrase is regulated negatively by both Int and Vis.. J. Gen. Virol.
87: 2423-2431
[Abstract]
[Full Text]
-
Tosi, L. R. O., Beverley, S. M.
(2000). cis and trans factors affecting Mos1 mariner evolution and transposition in vitro, and its potential for functional genomics. Nucleic Acids Res
28: 784-790
[Abstract]
[Full Text]
-
Davies, D. R., Braam, L. M., Reznikoff, W. S., Rayment, I.
(1999). The Three-dimensional Structure of a Tn5 Transposase-related Protein Determined to 2.9-A Resolution. J. Biol. Chem.
274: 11904-11913
[Abstract]
[Full Text]
-
Braam, L. A. M., Goryshin, I. Y., Reznikoff, W. S.
(1999). A Mechanism for Tn5 Inhibition. CARBOXYL-TERMINAL DIMERIZATION. J. Biol. Chem.
274: 86-92
[Abstract]
[Full Text]
-
Braam, L. A. M., Reznikoff, W. S.
(1998). Functional Characterization of the Tn5 Transposase by Limited Proteolysis. J. Biol. Chem.
273: 10908-10913
[Abstract]
[Full Text]
-
Goryshin, I. Y., Reznikoff, W. S.
(1998). Tn5 in Vitro Transposition. J. Biol. Chem.
273: 7367-7374
[Abstract]
[Full Text]
-
Weinreich, M D, Gasch, A, Reznikoff, W S
(1994). Evidence that the cis preference of the Tn5 transposase is caused by nonproductive multimerization.. Genes Dev.
8: 2363-2374
[Abstract]
-
Steiniger-White, M., Reznikoff, W. S.
(2000). The C-terminal alpha Helix of Tn5 Transposase Is Required for Synaptic Complex Formation. J. Biol. Chem.
275: 23127-23133
[Abstract]
[Full Text]
Copyright © 1993 by the American Society for Microbiology. All rights reserved.