Sandbox Reserved 1458

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The <scene name='79/799586/Activesite/1'>active site</scene> is pictured here and has the key amino acids highlighted. Those key amino acids are W156, D223, N155 and IIe. W156 is involved in shaping the S2 subsite for a glycine, D223 and N155 help form the pocket and shape active site. IIe replaces T302 which obstructs the placement of the side chain of lysine residue causing BL1 to be moved creating a larger pocket.
The <scene name='79/799586/Activesite/1'>active site</scene> is pictured here and has the key amino acids highlighted. Those key amino acids are W156, D223, N155 and IIe. W156 is involved in shaping the S2 subsite for a glycine, D223 and N155 help form the pocket and shape active site. IIe replaces T302 which obstructs the placement of the side chain of lysine residue causing BL1 to be moved creating a larger pocket.
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Additional structural features include the region around <scene name='79/799586/Bl2/1'>BL2</scene>, the the region between the <scene name='79/799586/Bl2b/2'>finger and palm region</scene> of the PLpro that binds the beta barrel of ubiquitin or the viral peptide substrate, and the region behind <scene name='79/799586/Bl2b/1'>BL2</scene> that holds the part of the peptide downstream of the cleavage site. These regions are important because they govern the substrate selection.
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Additional structural features include the region around <scene name='79/799586/Bl2/1'>BL2</scene>, the the region between the <scene name='79/799586/Bl2b/2'>finger and palm region</scene> of the PLpro that binds the beta barrel of ubiquitin or the viral peptide substrate, and the region behind <scene name='79/799586/Bl2b/1'>BL2</scene> that holds the part of the peptide downstream of the cleavage site. These regions are important because they govern the substrate selection. In the BL2 image, the black region is the protein and the teal is specifically the BL2 domain. The finger and palm domain are show the palm region in pink and yellow and the darker green is the finger region. In the last image of the region right behind BL2 there is
== Kinetic Data ==
== Kinetic Data ==

Revision as of 05:15, 3 December 2018

This Sandbox is Reserved from October 22, 2018 through April 30, 2019 for use in the course Biochemistry taught by Bonnie Hall at the Grand View University, Des Moines, IA USA. This reservation includes Sandbox Reserved 1456 through Sandbox Reserved 1470.
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Structure of PLpro

PLpro

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References

[1] [2]

  1. Kong L, Shaw N, Yan L, Lou Z, Rao Z. Structural View and Substrate Specificity of Papain-like Protease from Avian Infectious Bronchitis Virus. J Biol Chem. 2015 Mar 13;290(11):7160-8. doi: 10.1074/jbc.M114.628636. Epub 2015 , Jan 21. PMID:25609249 doi:http://dx.doi.org/10.1074/jbc.M114.628636
  2. Lei J, Hilgenfeld R. Structural and mutational analysis of the interaction between the Middle-East respiratory syndrome coronavirus (MERS-CoV) papain-like protease and human ubiquitin. Virol Sin. 2016 May 30. PMID:27245450 doi:http://dx.doi.org/10.1007/s12250-016-3742-4
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