Tanner J J, Tu S C, Barbour L J, Barnes C L, Krause K L
Department of Chemistry, University of Missouri-Columbia 65211, USA.
Protein Sci. 1999 Sep;8(9):1725-32. doi: 10.1110/ps.8.9.1725.
The 2.1 A resolution crystal structure of flavin reductase P with the inhibitor nicotinamide adenine dinucleotide (NAD) bound in the active site has been determined. NAD adopts a novel, folded conformation in which the nicotinamide and adenine rings stack in parallel with an inter-ring distance of 3.6 A. The pyrophosphate binds next to the flavin cofactor isoalloxazine, while the stacked nicotinamide/adenine moiety faces away from the flavin. The observed NAD conformation is quite different from the extended conformations observed in other enzyme/NAD(P) structures; however, it resembles the conformation proposed for NAD in solution. The flavin reductase P/NAD structure provides new information about the conformational diversity of NAD, which is important for understanding catalysis. This structure offers the first crystallographic evidence of a folded NAD with ring stacking, and it is the first enzyme structure containing an FMN cofactor interacting with NAD(P). Analysis of the structure suggests a possible dynamic mechanism underlying NADPH substrate specificity and product release that involves unfolding and folding of NADP(H).
已确定黄素还原酶P的2.1埃分辨率晶体结构,其活性位点结合有抑制剂烟酰胺腺嘌呤二核苷酸(NAD)。NAD呈现出一种新颖的折叠构象,其中烟酰胺和腺嘌呤环平行堆叠,环间距离为3.6埃。焦磷酸紧邻黄素辅因子异咯嗪结合,而堆叠的烟酰胺/腺嘌呤部分则背离黄素。观察到的NAD构象与在其他酶/NAD(P)结构中观察到的伸展构象有很大不同;然而,它类似于溶液中NAD所提出的构象。黄素还原酶P/NAD结构提供了关于NAD构象多样性的新信息,这对于理解催化作用很重要。该结构提供了具有环堆叠的折叠NAD的首个晶体学证据,并且它是首个包含与NAD(P)相互作用的FMN辅因子的酶结构。对该结构的分析表明了一种潜在的动态机制,该机制涉及NADP(H)的展开和折叠,是NADPH底物特异性和产物释放的基础。