Fenske D B, Cullis P R
Department of Biochemistry, Faculty of Medicine, University of British Columbia, Vancouver, Canada.
Biochim Biophys Acta. 1992 Jul 27;1108(2):201-9. doi: 10.1016/0005-2736(92)90026-i.
One- and two-dimensional 31P-exchange NMR has been used to investigate chemical exchange between coexisting lamellar (L alpha) and non-lamellar (hexagonal HII and cubic I2) lipid phases. Samples of DOPE, DOPE/DOPC (9:1 and 7:3), DOPE/cholesterol sulfate (9:1), DOPC/monoolein (MO) (3:7 and 1:1), and DOPC/DOPE/cholesterol (1:1:2) were macroscopically oriented on glass plates and studied at the 0 degree orientation (angle between the bilayer normal and the external magnetic field), where the L alpha, HII, and I2 resonances are resolved. A reversible L alpha to HII transition was observed for all of the samples except for the DOPC/MO mixtures, which displayed a reversible L alpha to I2 transition. Near-equilibrium mixtures of L alpha and either HII or I2 were obtained after prolonged incubation at a given temperature. Two-dimensional exchange experiments were performed on DOPE at 9-14 degrees C for mixing times ranging from 500 ms to 2 s. For all samples, one-dimensional exchange experiments were performed for mixing times ranging from 100 ms to 4 s, at temperatures ranging from 3 degrees C to 73 degrees C. No evidence of lipid exchange between lamellar and non-lamellar phases was observed, indicating that if such a process occurs it is either very slow on the seconds' timescale, or involves an undetectable quantity of lipid. The results place constraints on the stability or kinetic behaviour of proposed transition intermediates (Siegel, D.P. (1986) Biophys. J. 49, 1155-1170).
一维和二维³¹P交换核磁共振已被用于研究共存的层状(Lα)和非层状(六方HII和立方I2)脂质相之间的化学交换。将DOPE、DOPE/DOPC(9:1和7:3)、DOPE/硫酸胆固醇(9:1)、DOPC/单油精(MO)(3:7和1:1)以及DOPC/DOPE/胆固醇(1:1:2)的样品宏观取向在玻璃板上,并在0度取向(双层法线与外部磁场之间的夹角)下进行研究,在该取向下Lα、HII和I2共振得以分辨。除了DOPC/MO混合物显示出从Lα到I2的可逆转变外,所有样品均观察到从Lα到HII的可逆转变。在给定温度下长时间孵育后,获得了Lα与HII或I2的近平衡混合物。在9 - 14℃下对DOPE进行二维交换实验,混合时间范围为500毫秒至2秒。对于所有样品,在3℃至73℃的温度范围内,进行了混合时间范围为100毫秒至4秒的一维交换实验。未观察到层状相和非层状相之间脂质交换的证据,这表明如果发生这样的过程,它在秒级时间尺度上要么非常缓慢,要么涉及不可检测量的脂质。这些结果对所提出的转变中间体的稳定性或动力学行为施加了限制(Siegel, D.P. (1986) Biophys. J. 49, 1155 - 1170)。