Parente R A, Lentz B R
Biochemistry. 1985 Oct 22;24(22):6178-85. doi: 10.1021/bi00343a022.
We have investigated the behavior of 1-palmitoyl-2-[[2-[4- (6-phenyl-trans-1,3,5-hexatrienyl)phenyl]ethyl]carbonyl]-3-sn -phosphatidylcholine (DPHpPC) in synthetic, multilamellar phosphatidylcholine vesicles. This fluorescent phospholipid has photophysical properties similar to its parent fluorophore, diphenylhexatriene (DPH). DPHpPC preferentially partitioned into fluid phase lipid (Kf/s = 3.3) and reported a lower phase transition temperature as detected by fluorescence anisotropy than that observed by differential scanning calorimetry. Calorimetric measurements of the bilayer phase transition in samples having different phospholipid to probe ratios demonstrated very slight changes in membrane phase transition temperature (0.1-0.2 degree C) and showed no measurable change in transition width. Nonetheless, measurements of probe fluorescence properties suggested that DPHpPC disrupts its local environment in the membrane and may even induce perturbed probe-rich local domains below the phospholipid phase transition. Temperature profiles of steady-state fluorescence anisotropy, limiting anisotropy, differential tangent, and rotational rate were similar to those of DPH below the main lipid phase transition but indicated more restricted rotational motion above the lipid phase transition temperature. As for DPH, the fluorescence decay of DPHpPC could be described by either a single or double exponential both above and below the DPPC phase transition. The choice seemed dependent on the treatment of the sample. The intensity-weighted average lifetime of DPHpPC was roughly 1.5 ns shorter than that of DPH. In summary, the measured properties of DPHpPC and its lipid-like structure make it a powerful probe of membrane structure and dynamics.
我们研究了1-棕榈酰-2-[[2-[4-(6-苯基反式-1,3,5-己三烯基)苯基]乙基]羰基]-3-sn-磷脂酰胆碱(DPHpPC)在合成的多层层状磷脂酰胆碱囊泡中的行为。这种荧光磷脂具有与其母体荧光团二苯基己三烯(DPH)相似的光物理性质。DPHpPC优先分配到流体相脂质中(Kf/s = 3.3),并且通过荧光各向异性检测到的相变温度低于差示扫描量热法观察到的相变温度。对具有不同磷脂与探针比例的样品进行的双层相变的量热测量表明,膜相变温度变化非常微小(0.1 - 0.2摄氏度),并且相变宽度没有可测量的变化。尽管如此,探针荧光性质的测量表明,DPHpPC破坏了其在膜中的局部环境,甚至可能在磷脂相变温度以下诱导富含探针的局部扰动区域。稳态荧光各向异性、极限各向异性、微分切线和旋转速率的温度曲线在主要脂质相变温度以下与DPH相似,但在脂质相变温度以上表明旋转运动受到更多限制。与DPH一样,DPHpPC的荧光衰减在DPPC相变温度以上和以下都可以用单指数或双指数来描述。这种选择似乎取决于样品的处理方式。DPHpPC的强度加权平均寿命比DPH短约1.5纳秒。总之,DPHpPC的测量性质及其类脂质结构使其成为膜结构和动力学的有力探针。