Lange Christian, Cornvik Tobias, Díaz-Moreno Irene, Ubbink Marcellus
Leiden Institute of Chemistry, Leiden University, Gorlaeus Laboratories, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
Biochim Biophys Acta. 2005 Apr-May;1707(2-3):179-88. doi: 10.1016/j.bbabio.2004.12.002. Epub 2004 Dec 29.
The orientation of poplar plastocyanin in the complex with turnip cytochrome f has been determined by rigid-body calculations using restraints from paramagnetic NMR measurements. The results show that poplar plastocyanin interacts with cytochrome f with the hydrophobic patch of plastocyanin close to the heme region on cytochrome f and via electrostatic interactions between the charged patches on both proteins. Plastocyanin is tilted relative to the orientation reported for spinach plastocyanin, resulting in a longer distance between iron and copper (13.9 A). With increasing ionic strength, from 0.01 to 0.11 M, all observed chemical-shift changes decrease uniformly, supporting the idea that electrostatic forces contribute to complex formation. There is no indication for a rearrangement of the transient complex in this ionic strength range, contrary to what had been proposed earlier on the basis of kinetic data. By decreasing the pH from pH 7.7 to pH 5.5, the complex is destabilized. This may be attributed to the protonation of the conserved acidic patches or the copper ligand His87 in poplar plastocyanin, which are shown to have similar pK(a) values. The results are interpreted in a two-step model for complex formation.
通过使用顺磁核磁共振测量的约束条件进行刚体计算,已确定了杨树质体蓝素与芜菁细胞色素f形成的复合物中的取向。结果表明,杨树质体蓝素与细胞色素f相互作用,质体蓝素的疏水区域靠近细胞色素f上的血红素区域,并通过两种蛋白质上带电区域之间的静电相互作用。与报道的菠菜质体蓝素的取向相比,质体蓝素发生了倾斜,导致铁和铜之间的距离更长(13.9埃)。随着离子强度从0.01 M增加到0.11 M,所有观察到的化学位移变化均均匀减小,这支持了静电力有助于复合物形成的观点。在该离子强度范围内,没有迹象表明瞬态复合物会重新排列,这与早期基于动力学数据提出的观点相反。通过将pH从7.7降低到5.5,复合物变得不稳定。这可能归因于杨树质体蓝素中保守酸性区域或铜配体His87的质子化,它们显示出相似的pK(a)值。结果在复合物形成的两步模型中进行了解释。