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= Mechanism =
= Mechanism =
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Of the five classes of HAT enzymes, the catalytic mechanisms for two of those enzymes, HAT1 and Rtt109, remains unclear. A structural overlay of HAT1 and Gcn5, a better-understood HAT enzyme, found a conserved glutamate residue in the active site of both molecules. Previous studies found that a mutation at the active site glutamate residue greatly alters the catalytic ability of HAT1, proving it to be structurally important. <ref> DOI:10.1101/gad.240531.114 </ref> Using this information and structural information from the crystallized structure of the HAT1/HAT2 complex regarding the proximity of potentially catalytic residues, the most plausible mechanism for histone acetylation involves the following relevant residues and cofactor: <scene name='81/811713/Mechanism_glu_lys_coa/1'>Glu255, Lys14, and AcetylCoA</scene>.
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Of the five classes of HAT enzymes, the catalytic mechanisms for two of those enzymes, HAT1 and Rtt109, remains unclear. A structural overlay of HAT1 and Gcn5, a better-understood HAT enzyme, found a conserved glutamate residue in the active site of both molecules. Previous studies found that a mutation at the active site glutamate residue greatly alters the catalytic ability of HAT1, proving it to be structurally important. <ref> DOI:10.1101/gad.240531.114 </ref> Using this information and structural information from the crystallized structure of the HAT1/HAT2 complex regarding the proximity of potentially catalytic residues, the most plausible mechanism for histone acetylation involves the following relevant residues and cofactor: <scene name='81/811713/Mechanism_glu_lys_coa/1'>Glu255, H4Lys14, and Acetyl-CoA</scene>.
[[Image:HAT1_Mechanism.jpg|400px|right|thumb|Figure 4: HAT1 Arrow-Pushing Mechanism]]
[[Image:HAT1_Mechanism.jpg|400px|right|thumb|Figure 4: HAT1 Arrow-Pushing Mechanism]]

Revision as of 16:16, 25 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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