User:Kaitlyn Roberts/Sandbox 2
From Proteopedia
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=== Active Site === | === Active Site === | ||
- | The active site of this enzyme has 3 main residues that are essential for the catalytic activity of SOAT. H460, W420, and N421 work to stabilize the substrates as well as serve other roles in the mechanism of action. Many acyl transferases utilize histidine as the catalytic base. The conserved H460 is crucial for SOAT activity and is the putative catalytic residue. A single point mutation of the histidine at position 460 to alanine resulted in the complete abolition of enzymatic activity indicating its essential role in the mechanism. Along with H460, there are several other residues in the central cavity that are important for SOAT function. Most residues aligning the interior of the reaction chamber are highly conserved indicating that the local environment in the central cavity is important for the catalytic reaction. | + | The <scene name='87/877559/Active_site_overview/1'>active site</scene> of this enzyme has 3 main residues that are essential for the catalytic activity of SOAT. <scene name='87/877559/Residues_and_inhibitor/17'>H460, W420, and N421</scene> work to stabilize the substrates as well as serve other roles in the mechanism of action. Many acyl transferases utilize histidine as the catalytic base. The conserved H460 is crucial for SOAT activity and is the putative catalytic residue. A single point mutation of the histidine at position 460 to alanine resulted in the complete abolition of enzymatic activity indicating its essential role in the mechanism. Along with H460, there are several other residues in the central cavity that are important for SOAT function. Most residues aligning the interior of the reaction chamber are highly conserved indicating that the local environment in the central cavity is important for the catalytic reaction. |
=== Tunnel System === | === Tunnel System === |
Revision as of 13:05, 6 April 2021
Human Sterol O-acyltransferase
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References
- ↑ Guan C, Niu Y, Chen SC, Kang Y, Wu JX, Nishi K, Chang CCY, Chang TY, Luo T, Chen L. Structural insights into the inhibition mechanism of human sterol O-acyltransferase 1 by a competitive inhibitor. Nat Commun. 2020 May 18;11(1):2478. doi: 10.1038/s41467-020-16288-4. PMID:32424158 doi:http://dx.doi.org/10.1038/s41467-020-16288-4
Student Contributors
- Kylie Pfifer
- Stepahnie Pellegrino
- Kaitlyn Roberts