Lees Nicholas S, Hänzelmann Petra, Hernandez Heather L, Subramanian Sowmya, Schindelin Hermann, Johnson Michael K, Hoffman Brian M
Chemistry Department, Northwestern University, Evanston, Illinois 60208-3113, USA.
J Am Chem Soc. 2009 Jul 8;131(26):9184-5. doi: 10.1021/ja903978u.
The S-adenosylmethionine-dependent enzyme MoaA, in concert with MoaC, catalyzes the first step of molybdenum cofactor biosynthesis, the conversion of guanosine 5'-triphosphate (5'-GTP) into precursor Z. A published X-ray crystal structure of MoaA with the substrate 5'-GTP revealed that the substrate might be bound to the unique iron of one of two 4Fe-4S clusters through either or both the amino and N1 nitrogen nuclei. Use of 35 GHz continuous-wave ENDOR spectroscopy of MoaA with unlabeled and (15)N-labeled substrate and a reduced 4Fe-4S cluster now demonstrates that only one nitrogen nucleus is bound to the cluster. Experiments with the substrate analogue inosine 5'-triphosphate further demonstrate that it is the N1 nitrogen that binds. Two of the more distant nitrogen nuclei have also been detected by 35 GHz pulsed ENDOR spectroscopy, allowing a rough approximation of their distances from the cluster to be calculated. Combining this information with the crystal structure, we propose that the guanine base adopts the enol tautomer as N1 binds to Fe4 and the O6-H hydroxyl group forms a hydrogen bond with S4 of the 4Fe-4S cluster, and that this binding-induced tautomerization may have important mechanistic ramifications.
依赖S-腺苷甲硫氨酸的酶MoaA与MoaC协同作用,催化钼辅因子生物合成的第一步,即将鸟苷5'-三磷酸(5'-GTP)转化为前体Z。已发表的MoaA与底物5'-GTP的X射线晶体结构表明,底物可能通过氨基和N1氮核中的一个或两个与两个4Fe-4S簇之一的独特铁结合。使用未标记和(15)N标记的底物以及还原的4Fe-4S簇对MoaA进行35 GHz连续波ENDOR光谱分析,现在表明只有一个氮核与该簇结合。用底物类似物肌苷5'-三磷酸进行的实验进一步证明结合的是N1氮。通过35 GHz脉冲ENDOR光谱也检测到了两个距离较远的氮核,从而可以大致计算出它们与簇的距离。将这些信息与晶体结构相结合,我们提出,当N1与Fe4结合且O6-H羟基与4Fe-4S簇的S4形成氢键时,鸟嘌呤碱基采用烯醇互变异构体,并且这种结合诱导的互变异构可能具有重要的机制意义。