Abstract

Escherichia coli ABC excinuclease initiates the removal of dodecanucleotides from damaged DNA in an ATP-dependent reaction. Using a synthetic DNA fragment containing a psoralen adduct at a defined position we have investigated the interaction of the components of the enzyme with substrate by DNase I footprinting. We find that the UvrA subunit binds to DNA specifically in the absence of cofactors and that the binding affinity is stimulated about 4-fold by ATP and only marginally inhibited by ADP. The UvrA.DNA complexes formed in the absence of co-factors or in the presence of either ATP or ADP are remarkably similar. In contrast, adenosine 5'-O-(thiotriphosphate) increases nonspecific binding and completely abolishes the UvrA footprint. The UvrB subunit can associate with the UvrA subunit on DNA in the absence of ATP, but this ternary UvrA.UvrB.DNA complex is qualitatively different from that formed in the presence of ATP. The UvrC subunit elicits no additional change in the UvrA-UvrB footprint. Helicase II (UvrD protein) does not alter the UvrA-UvrB footprint but does appear to interact at the 5'-incision site of the postincision complex. DNA polymerase I fills in the excision gap in the presence or absence of helicase II and apparently releases the ABC excinuclease from the repaired DNA. Nearly 90% of the repair patches are 12 nucleotides long, and this length is not affected by helicase II. We see no evidence by DNase I footprinting for the formation of a multiprotein complex encompassing the UvrA, -B, -C, and -D proteins and DNA polymerase I.

Highlights

  • Escherichia coli ABC excinuclease initiates the re- (Sancar and Rupp, 1983)

  • In this paper we have addressed three issues regarding the mechanism of nucleotide excision in E. coli: the function of ATP in the assembly and function of ABC excinuclease, the role of helicase in repair synthesis, and the exact size of the repair patch

  • We find that ATP hydrolysis by UvrA molecules bound to DNA does not induce a significant conformational change in the DNA substrate

Read more

Summary

Introduction

Escherichia coli ABC excinuclease initiates the re- (Sancar and Rupp, 1983). This enzyme is composed of the moval of dodecanucleotides from damagedDNA in an UvrA, UvrB, and UvrC proteins, which assemble on DNA at ATP-dependent reaction. DNA polymerase I fills in the excision hydrolysis of ATP appears to be essential for the nicking gap in thepresence or absence of helicase I1 and apparently releases the ABC excinuclease from the repaired DNA.

Results
Conclusion
Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.