Löhr Frank, Yalloway Gary N, Mayhew Stephen G, Rüterjans Heinz
Institut für Biophysikalische Chemie, Zentrum für Biomolekulare Magnetische Resonanz, Johann Wolfgang Goethe-Universität, Marie Curie-Strasse 9, 60439 Frankfurt am Main, Germany.
Chembiochem. 2004 Nov 5;5(11):1523-34. doi: 10.1002/cbic.200400171.
Hydrogen bonding plays a key role in the tight binding of the FMN cofactor and the regulation of its redox properties in flavodoxins. Hydrogen bonding interactions can be directly observed in solution by multidimensional heteronuclear NMR spectroscopy through the scalar couplings between donor and acceptor nuclei. Here we report on the detection of intermolecular trans-hydrogen-bond couplings ((h)J) between the flavin ring system and the backbone of Desulfovibrio vulgaris flavodoxin in the oxidized and the two-electron reduced states. For this purpose, experiments are adapted from pulse sequences previously applied to determining (h)J coupling constants in nucleic acid-base pairs and proteins. The resulting (h2)J(N,N), (h4)J(N,N), (h3)J(C,N), and (h1)J(H,N) couplings involve the (15)N(1), (13)C(2), and (15)N(3) nuclei of the pyrimidine moiety of FMN, whereas no such interactions are detectable for (13)C(4) and (15)N(5). Several long-range (15)N-(15)N, (13)C-(15)N, and (1)H-(15)N J-coupling constants within the flavin are obtained as "by-products". The magnitudes of both (h)J and regular J couplings are found to be dependent on the redox state. In general, good correlations between (h)J coupling constants and donor-group (1)H chemical shifts and also crystallographic donor-acceptor distances are observed.
氢键在黄素氧还蛋白中FMN辅因子的紧密结合及其氧化还原性质的调节中起着关键作用。通过供体和受体原子核之间的标量耦合,多维异核核磁共振光谱可以在溶液中直接观察到氢键相互作用。在此,我们报告了在氧化态和双电子还原态下,检测普通脱硫弧菌黄素氧还蛋白中黄素环系统与主链之间的分子间反式氢键耦合((h)J)。为此,实验采用了先前用于测定核酸碱基对和蛋白质中(h)J耦合常数的脉冲序列。得到的(h2)J(N,N)、(h4)J(N,N)、(h3)J(C,N)和(h1)J(H,N)耦合涉及FMN嘧啶部分的(15)N(1)、(13)C(2)和(15)N(3)原子核,而对于(13)C(4)和(15)N(5)则检测不到这种相互作用。作为“副产品”,还获得了黄素内的几个长程(15)N-(15)N、(13)C-(15)N和(1)H-(15)N J耦合常数。发现(h)J和常规J耦合的大小都取决于氧化还原状态。一般来说,观察到(h)J耦合常数与供体基团(1)H化学位移以及晶体学供体-受体距离之间有良好的相关性。