Single stranded binding protein: Difference between revisions

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It is believed that Gly-15 may play an important role in binding the RecA protein. Mutations in Gly-15 have extreme effects on recombinational repair. SSB has also been thought to bind with exonuclease I, DNA polymerase II, and a protein n, which is used to help synthesize RNA primers for the lagging strand.  
It is believed that Gly-15 may play an important role in binding the RecA protein. Mutations in Gly-15 have extreme effects on recombinational repair. SSB has also been thought to bind with exonuclease I, DNA polymerase II, and a protein n, which is used to help synthesize RNA primers for the lagging strand.  


<StructureSection load='1kaw' size='500' side='right' frame='true' caption='Structure of Single Stranded DNA-Binding Protein bound to ssDNA (PDB entry [[1kaw]])' scene=''>
<StructureSection load='2vw9' size='500' side='right' frame='true' caption='Structure of Single Stranded DNA-Binding Protein bound to ssDNA (PDB entry [[2vw9]])' scene=''>
</StructureSection>
</StructureSection>