Replication Termination Protein: Difference between revisions

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== Function ==
== Function ==
[[Image:RTP.png|200px|left|thumb| Diagram of RTP monomer with secondary structure highlighted.]]
[[Image:RTP.png|200px|left|thumb| Diagram of RTP monomer with secondary structure highlighted.]]
The '''replication termination protein''' or '''replication terminator protein''' (RTP) is one of only two well-defined proteins known to be involved in arresting DNA replication forks, the other being a protein known as '''Tus''' ('''termination utilisation substance''' or '''DNA replication terminus site-binding protein''') from ''E. coli'' <ref> Kamada K, Horiuchi T, Ohsumi K, Shimamoto N, Morkikawa K, (1996) Structure of a replication-terminator protein complexed with DNA.  Nature, 383:598-603 </ref>. RTP was discovered in ''Bacillus subtilis''  and has been identified as a DNA binding protein of the winged helix family that forms a dimer of 29kDa. This dimeric form has been shown to have an exceptionally high affinity for its cognate binding sites( Kd ~10-11M-1)<ref> Wilce et. al. (2001) Structure of the RTP−DNA complex and the mechanism of polar replication fork arrest. Nature Structural Biology, 8:206-210 </ref>, otherwise known as Termination sites (Ter sites). These Ter sites are found in multiple locations in the ''B. subtilis'' genome <ref> Gautam A. et.al. (2001) A single domain of the replication termination protein of ''Bacillus subtilis'' is involved in arresting both DnaB helicase and RNA polymerase. Journal of Biological Chemistry, 276:23471-23479</ref>.  For more details see:<br />
The '''replication termination protein''' or '''replication terminator protein''' (RTP) is one of only two well-defined proteins known to be involved in arresting DNA replication forks, the other being a protein known as '''Tus''' ('''termination utilisation substance''' or '''DNA replication terminus site-binding protein''' or '''ter-binding protein)''' from ''E. coli'' <ref> Kamada K, Horiuchi T, Ohsumi K, Shimamoto N, Morkikawa K, (1996) Structure of a replication-terminator protein complexed with DNA.  Nature, 383:598-603 </ref>. RTP was discovered in ''Bacillus subtilis''  and has been identified as a DNA binding protein of the winged helix family that forms a dimer of 29kDa. This dimeric form has been shown to have an exceptionally high affinity for its cognate binding sites( Kd ~10-11M-1)<ref> Wilce et. al. (2001) Structure of the RTP−DNA complex and the mechanism of polar replication fork arrest. Nature Structural Biology, 8:206-210 </ref>, otherwise known as Termination sites (Ter sites). These Ter sites are found in multiple locations in the ''B. subtilis'' genome <ref> Gautam A. et.al. (2001) A single domain of the replication termination protein of ''Bacillus subtilis'' is involved in arresting both DnaB helicase and RNA polymerase. Journal of Biological Chemistry, 276:23471-23479</ref>.  For more details see:<br />
*[[RTP and Tus]]<br />
*[[RTP and Tus]]<br />
*[[Rtp and Tus DNA Binding]]<br />
*[[Rtp and Tus DNA Binding]]<br />

Revision as of 08:28, 13 February 2022

Assymetric RTP dimer bound to the B site in a Ter region (PDB code 2dpd)

Drag the structure with the mouse to rotate

3D structures of replication termination protein

Updated on 13-February-2022

RTP and Tus – BsRTP – Bacillus subtilis
Rtp and Tus DNA Binding, Bacterial Replication Termination - BsRTP (mutant)
2dpd - BsRTP + DNA
1f4k, 2dpu, 2efw – BsRTP (mutant) + DNA
1ecr – Tus + DNA – Escherichia coli

References

Proteopedia Page Contributors and Editors (what is this?)

Craig Mooney, Michal Harel, Joel L. Sussman, Alexander Berchansky