Institute for Protein Research, Osaka University, Japan Science and Technology Agency, 3-2 Yamadaoka, Suita, Osaka 565-0871, Japan.
Chembiochem. 2011 Sep 5;12(13):2062-70. doi: 10.1002/cbic.201100189. Epub 2011 Jul 7.
To obtain insight into the motional features of proteins for enzymatic function, we studied binding reactions between ferredoxin-NADP(+) reductase (FNR) and ferredoxin (Fd) using isothermal titration calorimetry and NMR-based magnetic relaxation and hydrogen/deuterium exchange (HD(ex)). Fd-FNR binding was accompanied by endothermic reactions and driven by the entropy gain. Component-wise analysis of the net entropy change revealed that increases in the conformational entropy of the Fd-FNR complex contributed largely to stabilizing the complex. Intriguingly, analyses of magnetic relaxation and HD(ex) rates with X-ray B factor implied that Fd binding led to both structural stiffening and softening of FNR. Enhanced FNR backbone fluctuations suggest favorable contributions to the net conformational entropy. Fd-bound FNR further showed that relatively large-scale motions of the C terminus, a gatekeeper for interactions of NADP(+) (H), were quenched in the closed form, thereby facilitating exit of NADP(+) (H). This can provide a first dynamic structure-based explanation for the negative cooperativity between Fd and NADP(+) (H) via FNR.
为了深入了解蛋白质在酶功能方面的运动特征,我们使用等温滴定量热法和基于 NMR 的磁共振弛豫和氢/氘交换(HD(ex))研究了铁氧还蛋白-NADP(+)还原酶(FNR)和铁氧还蛋白(Fd)之间的结合反应。Fd-FNR 结合伴随着吸热反应,由熵增加驱动。净熵变化的分量分析表明,Fd-FNR 复合物构象熵的增加对稳定复合物有很大贡献。有趣的是,用 X 射线 B 因子分析磁共振弛豫和 HD(ex)速率表明,Fd 结合导致 FNR 的结构变硬和变软。增强的 FNR 主链波动表明对净构象熵有有利的贡献。结合 Fd 的 FNR 进一步表明,C 末端的较大规模运动(门控 NADP(+)(H)相互作用)在封闭形式下被猝灭,从而促进 NADP(+)(H)的释放。这可以为 FNR 介导的 Fd 和 NADP(+)(H)之间的负协同作用提供第一个基于动态结构的解释。