Abdelwahab Heba, Robinson Reeder, Rodriguez Pedro, Adly Camelia, El-Sohaimy Sohby, Sobrado Pablo
Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA; Department of Chemistry, Faculty of Science, Damietta University, Damietta, 34517, Egypt.
Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA.
Arch Biochem Biophys. 2016 Sep 15;606:180-8. doi: 10.1016/j.abb.2016.08.004. Epub 2016 Aug 5.
l-lysine (l-Lys) N(6)-monooxygenase (NbtG), from Nocardia farcinica, is a flavin-dependent enzyme that catalyzes the hydroxylation of l-Lys in the presence of oxygen and NAD(P)H in the biosynthetic pathway of the siderophore nocobactin. NbtG displays only a 3-fold preference for NADPH over NADH, different from well-characterized related enzymes, which are highly selective for NADPH. The structure of NbtG with bound NAD(P)(+) or l-Lys is currently not available. Herein, we present a mutagenesis study targeting M239, R301, and E216. These amino acids are conserved and located in either the NAD(P)H binding domain or the l-Lys binding pocket. M239R resulted in high production of hydrogen peroxide and little hydroxylation with no change in coenzyme selectivity. R301A caused a 300-fold decrease on kcat/Km value with NADPH but no change with NADH. E216Q increased the Km value for l-Lys by 30-fold with very little change on the kcat value or in the binding of NAD(P)H. These results suggest that R301 plays a major role in NADPH selectivity by interacting with the 2'-phosphate of the adenine-ribose moiety of NADPH, while E216 plays a role in l-Lys binding.
来自诺卡氏菌的L-赖氨酸(L-Lys)N(6)-单加氧酶(NbtG)是一种黄素依赖性酶,在铁载体诺卡菌素的生物合成途径中,它在氧气和NAD(P)H存在的情况下催化L-赖氨酸的羟基化反应。与已充分表征的相关酶不同,NbtG对NADPH的偏好仅为NADH的3倍,而这些相关酶对NADPH具有高度选择性。目前尚无结合了NAD(P)(+)或L-赖氨酸的NbtG的结构。在此,我们针对M239、R301和E216进行了诱变研究。这些氨基酸是保守的,位于NAD(P)H结合结构域或L-赖氨酸结合口袋中。M239R导致过氧化氢大量产生且羟基化反应很少,辅酶选择性没有变化。R301A使NADPH的kcat/Km值降低了300倍,但对NADH没有影响。E216Q使L-赖氨酸的Km值增加了30倍,而kcat值或NAD(P)H的结合变化很小。这些结果表明,R301通过与NADPH腺嘌呤核糖部分的2'-磷酸相互作用,在NADPH选择性中起主要作用,而E216在L-赖氨酸结合中起作用。