Meers P, Feigenson G W
Department of Pathology, Boston University School of Medicine.
Biochim Biophys Acta. 1988 Mar 3;938(3):469-82. doi: 10.1016/0005-2736(88)90145-9.
Valinomycin, incorporated in small unilamellar vesicles of perdeuterated dimyristoylphosphatidylcholine, reveals several well-resolved 1H-NMR resonances. These resonances were used to examine the location, orientation and ion-binding of membrane-bound valinomycin. The order of affinity of membrane-bound valinomycin for cations is Rb+ greater than K+ greater than Cs+ greater than Ba2+, and binding is sensitive to surface change. The exchange between bound and free forms is fast on the NMR time scale. The intrinsic binding constants, extrapolated to zero anion concentration, are similar to those determined in aqueous solution. Rb+ and K+ show 1:1 binding to valinomycin, whereas the stoichiometry of Cs+ and Ba2+ is not certain. Paramagnetic chemical shift reagents and nitroxide spin label relaxation probes were used to study the location and orientation of valinomycin in the membrane. Despite relatively fast exchange of bound cations, the time average location of the cation-free form of valinomycin is deep within the bilayer under the conditions of these experiments. Upon complexation to K+, valinomycin moves closer to the interfacial region.
缬氨霉素掺入全氘代二肉豆蔻酰磷脂酰胆碱的小单层囊泡中时,会显示出几个分辨率良好的1H-NMR共振峰。这些共振峰被用于研究膜结合缬氨霉素的位置、取向和离子结合情况。膜结合缬氨霉素对阳离子的亲和力顺序为Rb+>K+>Cs+>Ba2+,且结合对表面变化敏感。在NMR时间尺度上,结合态和游离态之间的交换很快。外推至零阴离子浓度时的固有结合常数与在水溶液中测定的常数相似。Rb+和K+与缬氨霉素呈1:1结合,而Cs+和Ba2+的化学计量关系不确定。顺磁化学位移试剂和氮氧化物自旋标记弛豫探针被用于研究缬氨霉素在膜中的位置和取向。尽管结合阳离子的交换相对较快,但在这些实验条件下,缬氨霉素无阳离子形式的时间平均位置位于双层膜内部深处。与K+络合后,缬氨霉素会向界面区域移动。