User:Caitlin Marie Gaich/Sandbox1

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==Ligand Active Site==
==Ligand Active Site==
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The acetyl-CoA HAT1 active site is parallel to the C-terminal domain of the HAT1 protein. Acetyl-CoA fits structurally into the small binding site due to the kinked pantetheine group giving the molecule a bent confirmation. Once bound, most of the acetyl-CoA molecule is <scene name='81/811717/Tight_protein-ligand_intxn/1'>buried in the protein</scene> (~60%). Hydrophobic contacts, hydrogen bonds, and salt bridges help to stabilize the protein-ligand interaction. HAT1 protein-ligand contact is concentrated in three areas: C-terminal end of helix alpha 7, C terminal end of strand beta-14/loop Beta15-Alpha9, and N-terminal half of helix alpha 9 <ref name=”Dutnall”>PMID:10384314</ref>.
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[[Image:Binding interface.png|400 px|left|thumb|Figure 1. Acetyl-CoA in the binding pocket of HAT1 (Chain A)]]
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The acetyl-CoA HAT1 active site is parallel to the C-terminal domain of the HAT1 protein. Acetyl-CoA fits structurally into the small binding site due to the kinked pantetheine group giving the molecule a bent confirmation. Once bound, most of the acetyl-CoA molecule is buried in the protein, around 60% (Figure 1). Hydrophobic contacts, hydrogen bonds, and salt bridges help to stabilize the protein-ligand interaction. HAT1 protein-ligand contact is concentrated in three areas: C-terminal end of helix alpha 7, C terminal end of strand beta-14/loop Beta15-Alpha9, and N-terminal half of helix alpha 9 <ref name=”Dutnall”>PMID:10384314</ref>.
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The &beta;-methyl of the acetyl group interactions in the hydrophobic pocket formed by the side chain of residues: <scene name='81/811717/Hydrophobic_pocket/2'>Ile-217,Pro-257, Phe-261</scene>. The <scene name='81/811717/Phe_interaction/2'>carbonyl oxygen of the acetyl group hydrogen bonds with the aminde of the main chain Phe-220</scene> and the <scene name='81/811717/Asn_ligand_interaction/1'>sulfur of the acetyl-group interacts, as a hydrogen bond, with Asn-258</scene>. These interactions keep acetyl-CoA in the correct position of the active site for the transfer of the acetyl-group.
 
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The &beta;-methyl of the acetyl group interactions in the hydrophobic pocket formed by the side chain of residues: <scene name='81/811717/Hydrophobic_pocket/2'>Ile-217,Pro-257, Phe-261</scene>. The <scene name='81/811717/Phe_interaction/2'>carbonyl oxygen of the acetyl group hydrogen bonds with the aminde of the main chain Phe-220</scene> and the <scene name='81/811717/Asn_ligand_interaction/1'>sulfur of the acetyl-group interacts, as a hydrogen bond, with Asn-258</scene>. These interactions keep acetyl-CoA in the correct position of the active site for the transfer of the acetyl-group.
= Mechanism =
= Mechanism =

Revision as of 01:35, 13 April 2019

Histone Acetyltransferase HAT1/HAT2 Complex, Saccharomyces cerevisiae

HAT1/HAT2 Complex pdb: 4PSW

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Caitlin Marie Gaich

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