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Spatially directed assembly of a heterotetrameric Cre-Lox synapse restricts recombination specificity
Authors:Gelato Kathy A  Martin Shelley S  Liu Patty H  Saunders April A  Baldwin Enoch P
Institution:1 Biochemistry and Molecular Biology Graduate Group, University of California, Davis, Davis, CA 95616, USA
2 Department of Molecular and Cellular Biology, University of California, Davis, Davis, CA 95616, USA
3 Chemistry Department, University of California, Davis, Davis, CA 95616, USA
Abstract:The pseudo-fourfold homotetrameric synapse formed by Cre protein and target DNA restricts site-specific recombination to sequences containing dyad-symmetric Cre-binding repeats. Mixtures of engineered altered-specificity Cre monomers can form heterotetramers that recombine nonidentical asymmetric sequences, allowing greater flexibility for target site selection in the genome of interest. However, the variety of tetramers allowed by random subunit association increases the chances of unintended reactivity at nontarget sites. This problem can be circumvented by specifying a unique spatial arrangement of heterotetramer subunits. By reconfiguring intersubunit protein-protein contacts, we directed the assembly of two different Cre monomers, each having a distinct DNA sequence specificity, in an alternating (ABAB) configuration. This designed heterotetramer preferentially recombined a particular pair of asymmetric Lox sites over other pairs, whereas a mixture of freely associating subunits showed little bias. Alone, the engineered monomers had reduced reactivity towards both dyad-symmetric and asymmetric sites. Specificity arose because the organization of Cre-binding repeats of the preferred substrate matched the programmed arrangement of the subunits in the heterotetrameric synapse. When this “spatial matching” principle is applied, Cre-mediated recombination can be directed to asymmetric DNA sequences with greater fidelity.
Keywords:HJ  Holliday junction  CTH  C-terminal helix  CTD  C-terminal domain  YSSR  tyrosine site-specific recombinase  CreWT  wild-type Cre recombinase with a Met-His6 N-terminal tag fused to Ser2  CreALSHG  CreWT with five substitutions  Ile174Ala  Thr258Leu  Arg259Ser  Glu262His  and Glu266Gly  CreAAF  CreWT with three substitutions  Met299Ala  Val304Ala  and Ala334Phe  CreAA  CreWT split-interface mutant with two substitutions  Met299Ala and Val304Ala  ALSHG-F  CreALSHG split-interface mutant with an additional substitution  Ala334Phe  LoxP  natural Cre recombinase recognition site  LoxM7  LoxP variant that is the preferred substrate of CreALSHG  containing T7C  C8T  and G9A left arm 13-bp repeat and the dyad-related C26T  G27A  and A28G right arm 13-bp repeat substitutions  LoxPM7  chimeric Lox site with a LoxP left arm 13-bp repeat and a LoxM7 right arm 13-bp repeat  LoxM7P  chimeric Lox site with a LoxM7 left arm 13-bp repeat and a LoxP right arm 13-bp repeat
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