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Journal of Bacteriology, January 2001, p. 28-35, Vol. 183, No. 1
Department of Microbiology, University of
Washington, Seattle, Washington 98195
Received 25 February 2000/Accepted 4 October 2000
A previous genetic screen was designed to separate Hin recombinase
mutants into distinct classes based on the stage in the recombination
reaction at which they are blocked (O. Nanassy, Zoltan, and K. T. Hughes, Genetics 149:1649-1663, 1998). One class of DNA
binding-proficient, recombination-deficient mutants was predicted by
genetic classification to be defective in the step prior to invertasome
formation. Based on the genetic criteria, mutants from this class were
also inferred to be defective in interactions with Fis. In order to
understand how the genetic classification relates to individual
biochemical steps in the recombination reaction these mutants, R123Q,
T124I, and A126T, were purified and characterized for DNA cleavage and
recombination activities. Both the T124I and A126T mutants were
partially active, whereas the R123Q mutant was inactive. The A126T
mutant was not as defective for recombination as the T124I allele and
could be partially rescued for recombination both in vivo and in vitro by increasing the concentration of Fis protein. Rescue of the A126T
allele required the Fis protein to be DNA binding proficient. A model
for a postsynaptic role for Fis in the inversion reaction is presented.
0021-9193/01/$04.00+0 DOI: 10.1128/JB.183.1.28-35.2001
Copyright © 2001, American Society for Microbiology. All rights reserved.
Hin Recombinase Mutants Functionally Disrupted in
Interactions with Fis
and
*
Corresponding author. Mailing address: Department of
Microbiology, Box 357242, University of Washington, Seattle, WA
98195. Phone: (206) 543-0129. Fax: (206) 543-8297. E-mail:
hughes{at}u.washington.edu.
Present address: Harvard University, Department of Molecular and
Cellular Biology, Cambridge, MA 02138.
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