User:Davion Murray/Sandbox1: Difference between revisions

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==Binding site/Ligands==
==Binding site/Ligands==
The AAA+ ATPase and protease domains of each polypeptide interacts with the substrate proteins in an open/close spiral staircase conformation (3).  There are six active sites for proteolytic function inside the chamber made by the conformation. The six long helix regions protrude from the ring overlapping with three long helix regions to make a triangular shaped region. This region positions the six N-terminus domains to surround a central tri-tyrosine pore where substrate entry can occur. These N-terminus domains are flexible and are often thought to be involved with mediating substrate recognition (1).  
The AAA+ ATPase and protease domains of each polypeptide interacts with the substrate proteins in an open/close spiral staircase conformation (3).  There are six active sites for proteolytic function inside the chamber made by the conformation. The six long helix regions protrude from the ring overlapping with three long helix regions to make a triangular shaped region. This region positions the six N-terminus domains to surround a central tri-tyrosine pore where substrate entry can occur. These N-terminus domains are flexible and are often thought to be involved with mediating substrate recognition (1). In this assembly the <scene name='11/1106429/Lara_binding_sites/1'>LarA C-terminal His89 residue</scene> acts a binding site to C-terminal region of Lon NTDs (aa 197-205)(1)


==Current Research==
==Current Research==

Revision as of 12:40, 9 May 2026

==Your Heading Here (maybe something like 'Structure')== Protopedia Page Sandbox-Davion Murray

Caption for this structure

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References

1. Wang, HJ., Kuan, YE., Ho, MR. et al. Structural basis for the allosteric activation of Lon by the heat shock protein LarA. Nat Commun 16, 2212 (2025). https://doi.org/10.1038/s41467-025-57482-6

2. Robert T. Sauer, Eyal Gur, Recognition of misfolded proteins by Lon, a AAA+ protease, doi:10.1101/gad.1670908 Genes & Dev. 2008. 22: 2267-2277 3. Mia Shin et al.,Structural basis for distinct operational modes and protease activation in AAA+ protease Lon.Sci. Adv.6,eaba8404(2020).DOI:10.1126/sciadv.aba8404

4. Omnus, D.J., Fink, M.J., Kallazhi, A. et al. The heat shock protein LarA activates the Lon protease in response to proteotoxic stress. Nat Commun 14, 7636 (2023). https://doi.org/10.1038/s41467-023-43385-x

5. Rigas S, Daras G, Tsitsekian D, Alatzas A and Hatzopoulos P (2014) Evolution and significance of the Lon gene family in Arabidopsis organelle biogenesis and energy metabolism. Front. Plant Sci. 5:145. doi: 10.3389/fpls.2014.00145


Proteopedia Page Contributors and Editors (what is this?)

Davion Murray