Department of Biochemistry, University of Wisconsin , Madison, Wisconsin 53706, United States.
Biochemistry. 2013 May 14;52(19):3191-3. doi: 10.1021/bi400407x. Epub 2013 Apr 30.
KijD3 is a flavin-dependent N-oxygenase implicated in the formation of the nitro-containing sugar d-kijanose, found attached to the antibiotic kijanimicin. For this investigation, the structure of KijD3 in complex with FMN and its dTDP-sugar substrate was solved to 2.1 Å resolution. In contrast to the apoenzyme structure, the C-terminus of the protein becomes ordered and projects into the active site cleft [Bruender, N. A., Thoden, J. B., and Holden, H. M. (2010) Biochemistry 49, 3517-3524]. The amino group of the dTDP-aminosugar that is oxidized is located 4.9 Å from C4a of the flavin ring. The model provides a molecular basis for understanding the manner in which KijD3 catalyzes its unusual chemical transformation.
KijD3 是一种黄素依赖性 N-加氧酶,参与含硝基糖 d-kijanose 的形成,该糖连接在抗生素 kijanimicin 上。在这项研究中,KijD3 与 FMN 和其 dTDP-糖底物的复合物结构已解析至 2.1Å 分辨率。与无蛋白结构相比,蛋白质的 C 末端变得有序,并突入活性位点裂隙 [Bruender, N. A., Thoden, J. B., and Holden, H. M. (2010) Biochemistry 49, 3517-3524]。被氧化的 dTDP-氨基糖的氨基基团距离黄素环的 C4a 位 4.9Å。该模型为理解 KijD3 催化其不寻常的化学转化的方式提供了分子基础。