Bertini I, Donaire A, Feinberg B A, Luchinat C, Piccioli M, Yuan H
Department of Chemistry, University of Florence, Italy.
Eur J Biochem. 1995 Aug 15;232(1):192-205. doi: 10.1111/j.1432-1033.1995.tb20799.x.
Following the recently developed approach to the solution structure of paramagnetic high-potential iron-sulfur proteins, the three-dimensional structure in solution of the oxidized Clostridium pasteurianum ferredoxin has been solved by 1H-NMR. The X-ray structure is not available. The protein contains 55 amino acids and two [4Fe-4S] clusters. In the oxidized state, the clusters have S = 0 ground states, but are paramagnetic because of thermal population of excited states. Due to the somewhat small size of the protein and to the presence of two clusters, approximately 55% of the residues have at least one proton with a non-selective T1 smaller than 25 ms. The protein has thus been used as a test system to challenge the present paramagnetic NMR methodology both in achieving an extended assignment and in obtaining a suitable number of constraints. 79% of protein protons have been assigned. Analogy with other ferredoxins of known structure has been of help to speed up the final stages of the assignment, although we have shown that this independent information is not necessary. In addition to dipolar connectivities, partially detected through tailored experiments, 3JHN-H alpha, H-bond constraints and dihedral angle constraints on the Cys chi 2 angles have been generated by using a recently derived Karplus-type relationship for the hyperfine shifts of cysteine beta CH2 protons. In total, 456 constraints have been used in distance geometry calculations. The final quality of the structures is satisfactory, with root-mean-square deviation values of 66 pm and 108 pm for backbone and heavy atoms, respectively. The resulting structure is compared with that of Clostridium acidi urici ferredoxin [Duée, E. D., Fanchon, E., Vicat, J., Sieker, L. C., Meyer, J. & Moulis, J.-M. (1994) J. Mol. Biol. 243, 683-695]. The two proteins are very similar in the overall folding, secondary structure elements and side-chain orientations. The C alpha root-mean-square deviation values between the X-ray-determined C. acidi urici ferredoxin structure and the conformer with lowest energy of the C. pasteurianum ferredoxin family is 78 pm (residues 3-53). Discrepancies in residues 26-28 may arise from the disorder observed in the X-ray structure in that region.
遵循最近开发的用于顺磁性高电位铁硫蛋白溶液结构的方法,通过1H-NMR解析了氧化型巴氏芽孢杆菌铁氧化还原蛋白在溶液中的三维结构。目前尚无该蛋白的X射线结构。该蛋白含有55个氨基酸和两个[4Fe-4S]簇。在氧化状态下,这些簇具有S = 0的基态,但由于激发态的热布居而具有顺磁性。由于该蛋白尺寸相对较小且存在两个簇,大约55%的残基至少有一个质子的非选择性T1小于25毫秒。因此,该蛋白已被用作测试系统,以检验当前的顺磁性NMR方法在实现扩展归属和获得合适数量的约束方面的能力。已对79%的蛋白质子进行了归属。与其他已知结构的铁氧化还原蛋白进行类比有助于加快归属的最后阶段,尽管我们已经表明这种独立信息并非必需。除了通过定制实验部分检测到的偶极连接性外,还利用最近推导出的半胱氨酸β CH2质子超精细位移的Karplus型关系生成了3JHN-Hα、氢键约束和半胱氨酸χ2角的二面角约束。在距离几何计算中总共使用了456个约束。结构的最终质量令人满意,主链和重原子的均方根偏差值分别为66皮米和108皮米。将所得结构与尿酸芽孢杆菌铁氧化还原蛋白的结构进行了比较[Duée, E. D., Fanchon, E., Vicat, J., Sieker, L. C., Meyer, J. & Moulis, J.-M. (1994) J. Mol. Biol. 243, 683-695]。这两种蛋白在整体折叠、二级结构元件和侧链取向上非常相似。尿酸芽孢杆菌铁氧化还原蛋白的X射线测定结构与巴氏芽孢杆菌铁氧化还原蛋白家族中能量最低的构象之间的Cα均方根偏差值为78皮米(残基3-53)。26-28位残基的差异可能源于该区域X射线结构中观察到的无序状态。