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二棕榈酰磷脂酰胆碱双层低温相中链自旋标记磷脂酰胆碱的饱和转移、连续波饱和及饱和恢复电子自旋共振研究。旋转动力学和自旋-自旋相互作用的影响。

Saturation transfer, continuous wave saturation, and saturation recovery electron spin resonance studies of chain-spin labeled phosphatidylcholines in the low temperature phases of dipalmitoyl phosphatidylcholine bilayers. Effects of rotational dynamics and spin-spin interactions.

作者信息

Fajer P, Watts A, Marsh D

机构信息

Max-Planck-Institut für biophysikalische Chemie, Abteilung Spektroskopie, Göttingen, Germany.

出版信息

Biophys J. 1992 Apr;61(4):879-91. doi: 10.1016/S0006-3495(92)81895-7.

Abstract

The saturation transfer electron spin resonance (STESR) spectra of 10 different positional isomers of phosphatidylcholine spin-labeled in the sn-2 chain have been investigated in the low temperature phases of dipalmitoyl phosphatidylcholine (DPPC) bilayers. The results of continuous wave saturation and of saturation recovery measurements on the conventional ESR spectra were used to define the saturation properties necessary for interpreting the STESR results in terms of the chain dynamics. Spin labels with the nitroxide group located in the center of the chain tended to segregate preferentially from the DPPC host lipids in the more ordered phases, causing spin-spin interactions which produced spectral broadening and had a very pronounced effect on the saturation characteristics of the labels. This was accompanied by a large decrease in the STESR spectral intensities and diagnostic line height ratios relative to those of spin labels that exhibited a higher degree of saturation at the same microwave power. The temperature dependence of the STESR spectra of the different spin label isomers revealed a sharp increase in the rate of rotation about the long axis of the lipid chains at approximately 25 degrees C, correlating with the pretransition of gel phase DPPC bilayers, and a progressive increase in the segmental motion towards the terminal methyl end of the chains in all phases. Prolonged incubation at low temperatures led to an increase in the diagnostic STESR line height ratios in all regions of the spectrum, reflecting the decrease in chain mobility accompanying formation of the subgel phase. Continuous recording of the central diagnostic peak height of the STESR spectra while scanning the temperature revealed a discontinuity at approximately 14-17 degrees C, corresponding to the DPPC subtransition which occurred only on the initial upward temperature scan, in addition to the discontinuity at 29-31 degrees C corresponding to the pretransition which displayed hysteresis on the downward temperature scan.

摘要

在二棕榈酰磷脂酰胆碱(DPPC)双层膜的低温相中,研究了在sn-2链上自旋标记的10种不同位置异构体的磷脂酰胆碱的饱和转移电子自旋共振(STESR)光谱。连续波饱和以及常规电子自旋共振光谱的饱和恢复测量结果,被用于确定根据链动力学解释STESR结果所需的饱和特性。在链中心位置带有氮氧化物基团的自旋标记,在更有序的相中倾向于优先从DPPC主体脂质中分离出来,导致自旋-自旋相互作用,产生光谱展宽,并对标记的饱和特性产生非常明显的影响。这伴随着STESR光谱强度以及相对于在相同微波功率下表现出更高饱和程度的自旋标记的诊断线高比大幅下降。不同自旋标记异构体的STESR光谱的温度依赖性显示,在约25℃时,围绕脂质链长轴的旋转速率急剧增加,这与凝胶相DPPC双层膜的预转变相关,并且在所有相中,朝向链末端甲基端的链段运动逐渐增加。在低温下长时间孵育导致光谱所有区域的诊断STESR线高比增加,这反映了亚凝胶相形成时链流动性的降低。在扫描温度时连续记录STESR光谱的中心诊断峰高,发现在约14 - 17℃处有一个不连续点,对应于仅在初始升温扫描时出现的DPPC亚转变,此外在29 - 31℃处有一个对应于预转变的不连续点,该预转变在降温扫描时表现出滞后现象。

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