Sandbox Reserved 1098: Difference between revisions

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The protein <scene name='82/829351/Parg/1'>PARG</scene> folds into an ADP-ribose-binding macro domain with an N-terminal extension. It also consists of a diphosphate-binding loop on one side of an ADP-ribose binding cavity. On the other side there are several amino acids matching to the specific PARG signature sequence.  
The protein <scene name='82/829351/Parg/1'>PARG</scene> folds into an ADP-ribose-binding macro domain with an N-terminal extension. It also consists of a diphosphate-binding loop on one side of an ADP-ribose binding cavity. On the other side there are several amino acids matching to the specific PARG signature sequence.  
In the macro domain fold, a loop is inserted to welcome the Glu115 side chain protecting the active site of the PARG protein. This loop gives PARG the ability to hydrolyze PAR.
In the macro domain fold, a loop is inserted to welcome the Glu115 side chain protecting the active site of the PARG protein. This loop gives PARG the ability to hydrolyze PAR. The  <scene name='82/829351/Parg_active_site/1'>hydrolysis of PAR happens in PARG catalytic domain</scene>. (PAR is represented here in pink).
Concerning the ligand pairing with the PARG protein only a small difference can be observed for the amino acids Val226 and Phe227 <ref>PMID: 21892188</ref>.
Concerning the ligand pairing with the PARG protein only a small difference can be observed for the amino acids Val226 and Phe227 <ref>PMID: 21892188</ref>.



Revision as of 20:40, 11 January 2022

This Sandbox is Reserved from 25/11/2019, through 30/9/2020 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1091 through Sandbox Reserved 1115.
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