Benz R, Egli C, Hancock R E
Lehrstuhl für Biotechnologie, Biozentrum der Universität Würzburg, Germany.
Biochim Biophys Acta. 1993 Jul 4;1149(2):224-30. doi: 10.1016/0005-2736(93)90205-e.
The mechanism of anion transport through the phosphate-starvation inducible OprP-channel of Pseudomonas aeruginosa outer membrane was studied in planar lipid bilayer membranes. The single-channel conductance of OprP was 160 pS in 100 mM chloride solution. Addition of other anions, in particular of phosphate, di and tribasic anions lead to a strong decrease of the chloride conductance. The decrease was used to calculate the stability constants for the binding of these ions to the binding site of the channel on the basis of a one-site two-barrier model. The stability constant of the binding of phosphate to the site was 11,000 M-1 at neutral pH. Surprisingly, di- and tribasic anions, such as sulfate and citrate had a much lower affinity to the binding site inside the channel. Although the single-channel conductance was dependent on the external pH, the stability constants for phosphate binding decrease only slightly for increasing the pH. The use of negatively-charged lipids instead of neutral ones in the planar lipid bilayers had no influence on the single-channel conductance of the OprP-channel, suggesting that the channel is shielded from the influence of surrounding molecules. Its permeability properties are probably not influenced by negatively-charged lipopolysaccharide molecules.
在平面脂质双层膜中研究了阴离子通过铜绿假单胞菌外膜中磷酸盐饥饿诱导的OprP通道的转运机制。在100 mM氯化物溶液中,OprP的单通道电导为160 pS。添加其他阴离子,特别是磷酸盐、二价和三价阴离子会导致氯化物电导大幅下降。基于单位点双势垒模型,利用这种下降来计算这些离子与通道结合位点结合的稳定常数。在中性pH下,磷酸盐与该位点结合的稳定常数为11,000 M-1。令人惊讶的是,二价和三价阴离子,如硫酸盐和柠檬酸盐对通道内结合位点的亲和力要低得多。尽管单通道电导取决于外部pH,但随着pH升高,磷酸盐结合的稳定常数仅略有下降。在平面脂质双层中使用带负电荷的脂质而非中性脂质对OprP通道的单通道电导没有影响,这表明该通道不受周围分子影响。其通透性可能不受带负电荷的脂多糖分子影响。