Site-specific Photo-cross-linking between λ Integrase and Its DNA Recombination Target
The site-specific recombinase (Int) of bacteriophage λ is a heterobivalent DNA-binding protein and is composed of three domains as follows: an amino-terminal domain that binds with high affinity to âarm-typeâ sequences within the recombination target DNA ( att sites), a carboxyl-terminal domain...
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Veröffentlicht in: | The Journal of biological chemistry 2002-04, Vol.277 (17), p.14530 |
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Sprache: | eng |
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Zusammenfassung: | The site-specific recombinase (Int) of bacteriophage λ is a heterobivalent DNA-binding protein and is composed of three domains
as follows: an amino-terminal domain that binds with high affinity to âarm-typeâ sequences within the recombination target
DNA ( att sites), a carboxyl-terminal domain that contains all of the catalytic functions, and a central domain that contributes significantly
to DNA binding at the âcore-typeâ sequences where DNA cleavage and ligation are executed. We constructed a family of core-type
DNA oligonucleotides, each of which contained the photoreactive analog 4-thiodeoxythymidine (4-thioT) at a different position.
When tested for their respective abilities to promote covalent cross-links with Int after irradiation with UV light at 366
nm, one oligonucleotide stood out dramatically. The 4-thioT substitution on the DNA strand opposite the site of Int cleavage
led to photo-induced cross-linking efficiencies of â¼20%. The efficiency and specificity of Int binding and cleavage at this
4-thioT-substituted core site was shown to be largely uncompromised, and its ability to participate in a full site-specific
recombination reaction was reduced only slightly. Identification of the photo-cross-linked residue as Lys-141 in the central
domain provides, along with other results, several insights about the nature of core-type DNA recognition by the bivalent
recombinases of the λ Int family. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M108197200 |