Lange Christian, Luque Irene, Hervás Manuel, Ruiz-Sanz Javier, Mateo Pedro L, De la Rosa Miguel A
Instituto de Bioquímica Vegetal y Fotosíntesis, Centro de Investigaciones Científicas Isla de la Cartuja, Seville, Spain.
FEBS J. 2005 Jul;272(13):3317-27. doi: 10.1111/j.1742-4658.2005.04747.x.
We investigated the role of electrostatic charges at positions D72 and K8 in the function and structural stability of cytochrome c6 from Nostoc sp. PCC 7119 (cyt c6). A series of mutant forms was generated to span the possible combinations of charge neutralization (by mutation to alanine) and charge inversion (by mutation to lysine and aspartate, respectively) in these positions. All forms of cyt c6 were functionally characterized by laser flash absorption spectroscopy, and their stability was probed by urea-induced folding equilibrium relaxation experiments and differential scanning calorimetry. Neutralization or inversion of the positive charge at position K8 reduced the efficiency of electron transfer to photosystem I. This effect could not be reversed by compensating for the change in global charge that had been introduced by the mutation, indicating a specific role for K8 in the formation of the electron transfer complex between cyt c6 and photosystem I. Replacement of D72 by asparagine or lysine increased the efficiency of electron transfer to photosystem I, but destabilized the protein. D72 apparently participates in electrostatic interactions that stabilize the structure of cyt c6. The destabilizing effect was reduced when aspartate was replaced by the small amino acid alanine. Complementing the mutation D72A with a charge neutralization or inversion at position K8 led to mutant forms of cyt c6 that were more stable than the wild-type under all tested conditions.
我们研究了集胞藻PCC 7119细胞色素c6(cyt c6)中D72和K8位点的静电荷在其功能及结构稳定性中的作用。构建了一系列突变体,涵盖了这些位点电荷中和(突变为丙氨酸)和电荷反转(分别突变为赖氨酸和天冬氨酸)的可能组合。通过激光闪光吸收光谱对所有形式的cyt c6进行功能表征,并通过尿素诱导的折叠平衡弛豫实验和差示扫描量热法探究其稳定性。K8位点正电荷的中和或反转降低了向光系统I的电子传递效率。这种效应不能通过补偿突变引入的整体电荷变化来逆转,表明K8在cyt c6与光系统I之间电子传递复合物的形成中具有特定作用。将D72替换为天冬酰胺或赖氨酸可提高向光系统I的电子传递效率,但会使蛋白质不稳定。D72显然参与了稳定cyt c6结构的静电相互作用。当天冬氨酸被小氨基酸丙氨酸取代时,去稳定化效应降低。在K8位点进行电荷中和或反转来补充D72A突变,可得到在所有测试条件下都比野生型更稳定的cyt c6突变体形式。