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The mutagenesis protein MucB interacts with single strand DNA binding protein and induces a major conformational
1Department of Biological Chemistry, Faculty of Biochemistry, The Weizmann Institute of Science, Rehovot 76100, Israel.
Abstract:
The MucA and MucB proteins are plasmid-encoded homologues of the Escherichia coli UmuD and UmuC proteins, respectively. These proteins are required for SOS mutagenesis, although their mechanism of action is unknown. By using the yeast two-hybrid system we have discovered that MucB interacts with SSB, the single strand DNA binding protein (SSB) of E. coli. To examine the interaction at the protein level, the MucA, MucA', and MucB proteins were overproduced, purified in denatured state, and refolded. Purified MucA and MucA' each formed homodimers, whereas MucB was a monomer under native conditions. RecA promoted the cleavage of MucA to MucA', and MucB was found to bind single-stranded DNA (ssDNA), similarly to the properties of the homologous UmuD and UmuC proteins. Purified MucB caused a shift in the migration of SSB in a sucrose density gradient, consistent with an interaction between these proteins. Addition of MucB to SSB-coated ssDNA caused increased electrophoretic mobility of the nucleoprotein complex and increased staining of the DNA by ethidium bromide. Analysis of radiolabeled SSB in the complexes revealed that only a marginal release of SSB occurred upon addition of MucB. These results suggest that MucB induces a major conformational change in the SSB.ssDNA complex but does not promote massive release of SSB from the DNA. The interaction with SSB might be related to the role of MucB in SOS-regulated mutagenesis.
Insights
The MucB protein interacts with single-stranded DNA binding protein (SSB) and alters its conformation. This interaction is crucial for SOS mutagenesis, a DNA repair mechanism.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- MucA and MucB proteins are plasmid-encoded, homologous to E. coli UmuD and UmuC.
- These proteins are essential for SOS mutagenesis, but their mechanism remains unclear.
Purpose of the Study:
- To investigate the interaction between MucB and E. coli single-stranded DNA binding protein (SSB).
- To elucidate the role of this interaction in SOS-regulated mutagenesis.
Main Methods:
- Yeast two-hybrid system to detect protein-protein interactions.
- Protein overproduction, purification, and refolding.
- Sucrose density gradient centrifugation and electrophoretic mobility assays.
Main Results:
- MucB interacts with SSB, confirmed by yeast two-hybrid and biochemical assays.
- MucB binds single-stranded DNA (ssDNA) and induces a conformational change in the SSB-ssDNA complex.
- This conformational change does not involve significant release of SSB from the DNA.
Conclusions:
- MucB's interaction with SSB and its effect on SSB conformation are key to its function in SOS mutagenesis.
- The findings provide insights into the molecular mechanism of plasmid-mediated mutagenesis.