Leiden Institute of Chemistry, Leiden University, Gorlaeus Laboratories, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
Biochemistry. 2010 Sep 14;49(36):7790-7. doi: 10.1021/bi100712g.
In photosynthetic organisms, ferredoxin (Fd) interacts with many proteins, acting as a shuttle for electrons from Photosystem I to a group of enzymes involved in NADP(+) reduction, sulfur and nitrogen assimilation, and the regulation of carbon assimilation. The study of the dynamic interactions between ferredoxin and these enzymes by nuclear magnetic resonance is severely hindered by the paramagnetic [2Fe-2S] cluster of a ferredoxin. To establish whether ferredoxin in which the cluster has been replaced by Ga is a suitable diamagnetic mimic, the solution structure of Synechocystis Ga-substituted ferredoxin has been determined and compared with the structure of the native protein. The ensemble of 10 structures with the lowest energies has an average root-mean-square deviation of 0.30 +/- 0.05 A for backbone atoms and 0.65 +/- 0.04 A for all heavy atoms. Comparison of the NMR structure of GaFd with the crystal structure of the native Fd indicates that the general structural fold found for the native, iron-containing ferredoxin is conserved in GaFd. The ferredoxin contains a single gallium and no inorganic sulfide. The distortion of the metal binding loop caused by the single gallium substitution is small. The binding site on Fd for binding ferredoxin:NADP(+) reductase in solution, determined using GaFd, includes the metal binding loop and its surroundings, consistent with the crystal structures of related complexes. The results provide a structural justification for the use of the gallium-substituted analogue in interaction studies.
在光合作用生物体中,铁氧还蛋白(Fd)与许多蛋白质相互作用,作为电子从光系统 I 到一组参与 NADP(+)还原、硫和氮同化以及碳同化调节的酶的穿梭体。通过核磁共振研究 Fd 与这些酶之间的动态相互作用受到 Fd 中顺磁性 [2Fe-2S] 簇的严重阻碍。为了确定簇已被 Ga 取代的 Fd 是否是合适的抗磁性模拟物,已经确定了 Synechocystis Ga 取代 Fd 的溶液结构,并将其与天然蛋白质的结构进行了比较。具有最低能量的 10 个结构的集合的平均均方根偏差为 0.30 +/- 0.05 A 用于骨干原子和 0.65 +/- 0.04 A 用于所有重原子。GaFd 的 NMR 结构与天然 Fd 的晶体结构的比较表明,在 GaFd 中保留了天然含铁 Fd 的一般结构折叠。该 Fd 包含单个镓且不含无机硫化物。单个镓取代引起的金属结合环的扭曲很小。使用 GaFd 确定的在溶液中结合 Fd:NADP(+) 还原酶的 Fd 结合位点包括金属结合环及其周围环境,与相关复合物的晶体结构一致。结果为使用镓取代类似物进行相互作用研究提供了结构依据。