Computational study of the three-dimensional structure of N-acetyltransferase 2-acetyl coenzyme a complex.

Akifumi Oda, Kana Kobayashi, Ohgi Takahashi

Journal: Biological & pharmaceutical bulletin 2011;33(10):1639-43

PMID: 20930369

Abstract

N-Acetyltransferase 2 (NAT2) is one of the most important polymorphic drug-metabolizing enzymes and plays a significant role in individual differences of drug efficacies and/or side effects. Coenzyme A (CoA) is a cofactor in the experimentally determined crystal structure of NAT2, although the acetyl source of acetylation reactions catalyzed by NAT is not CoA, but rather acetyl CoA. In this study, the three-dimensional structure of NAT2, including acetyl CoA, was calculated using molecular dynamics simulation. By substituting acetyl CoA for CoA the amino acid residue Gly286, which is known to transform into a glutamate residue by NAT2*7A and NAT2*7B, comes close to the cofactor binding site. In addition, the binding pocket around the sulfur atom of acetyl CoA expanded in the NAT2-acetyl CoA complex.

Address: Faculty of Pharmaceutical Sciences, Tohoku Pharmaceutical University, Sendai, Miyagi981–8558, Japan. [email protected]

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