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5CG9

NgTET1 in complex with 5mC DNA in space group P3221

Summary for 5CG9
Entry DOI10.2210/pdb5cg9/pdb
Related5CG8
DescriptorTet-like dioxygenase, DNA (5'-D(P*CP*AP*TP*GP*CP*GP*CP*TP*GP*AP*C)-3'), DNA (5'-D(*TP*GP*TP*CP*AP*GP*(5CM)P*GP*CP*AP*TP*GP*G)-3'), ... (8 entities in total)
Functional Keywordsdioxygenase, 5-methylcytosine, ngtet1, oxidoreductase-dna complex, oxidoreductase/dna
Biological sourceNaegleria gruberi (Amoeba)
More
Total number of polymer chains6
Total formula weight76977.57
Authors
Hashimoto, H.,Pais, J.E.,Dai, N.,Zhang, X.,Zheng, Y.,Cheng, X. (deposition date: 2015-07-09, release date: 2015-09-09, Last modification date: 2023-09-27)
Primary citationHashimoto, H.,Pais, J.E.,Dai, N.,Correa, I.R.,Zhang, X.,Zheng, Y.,Cheng, X.
Structure of Naegleria Tet-like dioxygenase (NgTet1) in complexes with a reaction intermediate 5-hydroxymethylcytosine DNA.
Nucleic Acids Res., 43:10713-10721, 2015
Cited by
PubMed Abstract: The family of ten-eleven translocation (Tet) dioxygenases is widely distributed across the eukaryotic tree of life, from mammals to the amoeboflagellate Naegleria gruberi. Like mammalian Tet proteins, the Naegleria Tet-like protein, NgTet1, acts on 5-methylcytosine (5mC) and generates 5-hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC) and 5-carboxylcytosine (5caC) in three consecutive, Fe(II)- and α-ketoglutarate-dependent oxidation reactions. The two intermediates, 5hmC and 5fC, could be considered either as the reaction product of the previous enzymatic cycle or the substrate for the next cycle. Here we present a new crystal structure of NgTet1 in complex with DNA containing a 5hmC. Along with the previously solved NgTet1-5mC structure, the two complexes offer a detailed picture of the active site at individual stages of the reaction cycle. In the crystal, the hydroxymethyl (OH-CH2-) moiety of 5hmC points to the metal center, representing the reaction product of 5mC hydroxylation. The hydroxyl oxygen atom could be rotated away from the metal center, to a hydrophobic pocket formed by Ala212, Val293 and Phe295. Such rotation turns the hydroxyl oxygen atom away from the product conformation, and exposes the target CH2 towards the metal-ligand water molecule, where a dioxygen O2 molecule would occupy to initiate the next round of reaction by abstracting a hydrogen atom from the substrate. The Ala212-to-Val (A212V) mutant profoundly limits the product to 5hmC, probably because the reduced hydrophobic pocket size restricts the binding of 5hmC as a substrate.
PubMed: 26323320
DOI: 10.1093/nar/gkv870
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.693 Å)
Structure validation

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