Action Mechanism of Escherichia coli DNA Photolyase

نویسندگان

  • Gwendolyn B. Sancar
  • Ralph Reid
  • Gillian Payne
  • Michael Levy
  • Aziz Sancar
چکیده

Escherichia coli DNA photolyase (photoreactivating enzyme) is a flavoprotein. The enzyme binds to DNA containing pyrimidine dimers in a light-independent step and, upon illumination with 300-600 nm radiation, catalyzes the photosensitized cleavage of the cyclobutane ring thus restoring the integrity of the DNA. We have studied the binding reaction using the techniques of nitrocellulose filter binding and flash photolysis. The enzyme binds to dimer-containing DNA with an association rate constant kl estimated by two different methods to be 1.4 % 10' to 4.2 x 10' M-' s-'. The dissociation of the enzyme from dimer-containing DNA displays biphasic kinetics; for the rapidly dissociating class of complexes = 2-3 % s-l, while for the more slowly dissociating class k2 = 1.3 X to 6 X s-'. The equilibrium association constant Ka, as determined by the nitrocellulose filter binding assay and the flash photolysis assay, was 4.7 % lo7 to 6 X lo7 M", in reasonable agreement with the values predicted from kl and kz. From the dependence of the association constant on ionic strength we conclude that the enzyme contacts no more than two phosphodiester bonds upon binding; this strongly suggests that the pyrimidine dimer is the main structural determinant of specific photolyase-DNA interaction and that nonspecific ionic interactions do not contribute significantly to substrate binding.

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تاریخ انتشار 2001