Single stranded binding protein: Difference between revisions

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====Binding Interactions in the Active Site====
====Binding Interactions in the Active Site====


ssDNA can interact with binding proteins through hydrogen bonds, stacking, or electronegative interactions.  
ssDNA can interact with binding proteins through hydrogen bonds, stacking, or electronegative interactions. Most interactions between SSB and ssDNA happen through the OB fold. OB stands for oligosaccharide/oligonucleotide binding site. This fold consists of a 5-stranded β barrel that ends in an α-helix.  
<scene name='56/566528/Labeled_phe/1'>Phe56</scene> is an important DNA binding site. It has been shown to be the site for cross-linking.
<scene name='56/566528/Labeled_phe/1'>Phe56</scene> is an important DNA binding site. It has been shown to be the site for cross-linking.
Tryptophan and Lysine residues are important in binding as well. Treatments resulting in  
Tryptophan and Lysine residues are important in binding as well. Treatments resulting in  

Revision as of 19:40, 2 November 2013

Sandbox Single Stranded DNA-Binding Protein (SSB)

Single-stranded DNA-binding protein, or SSB, binds to single-stranded regions of DNA in order to prevent premature annealing, to protect the single-stranded DNA from being digested by nucleases, and to remove secondary structure from the DNA to allow other enzymes to function effectively upon it. Single-stranded DNA is produced during all aspects of DNA metabolism: replication, recombination and repair. As well as stabilizing this single-stranded DNA, SSB proteins bind to and modulate the function of numerous proteins involved in all of these processes.

Overview

Structure of Single Stranded DNA-Binding Protein bound to ssDNA (PDB entry 1eyg)

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Structure

Structure of Single Stranded DNA-Binding Protein from Helicobacter Pylori bound to ssDNA (PDB entry 2vw9)

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Binding Interactions between DNA and SSB of E. coli

Structure of Single Stranded DNA-Binding Protein from E. coli (PDB entry 1qvc)

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See Also

References

Proteopedia Page Contributors and Editors (what is this?)

Rachel Craig, Refayat Ahsen, Michal Harel, Alexander Berchansky