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过渡区磷脂双层的纳秒级弛豫过程。

Nanosecond relaxation processes of phospholipid bilayers in the transition zone.

作者信息

Gamble R C, Schimmel P R

出版信息

Proc Natl Acad Sci U S A. 1978 Jul;75(7):3011-4. doi: 10.1073/pnas.75.7.3011.

Abstract

Ultrasonic relaxation spectra of dipalmitoyl lecithin vesicles have been recorded as a function of temperature over the frequency range 14-265 MHz. A relaxation process is observed with a time constant of about 10(-8) sec. At the mid-point of the crystalline-liquid crystalline transition (about 41.3 degrees), the relaxation amplitude is maximal. This suggests that the relaxation process is intimately associated with the order-disorder transition. Further support for this conclusion comes from the finding that the volume change of the reaction, as calculated from the relaxation amplitude at the transition midpoint, agrees with that determined independently by equilibrium dilatometry measurements of the deltaV of the transition. The results show that a major step in the transition occurs on a far shorter time scale than previously recognized. Similar fast processes have also been detected in dimyristoyl and distearoyl lecithin vesicles. From a consideration of various lines of evidence, it appears that the relaxation monitors the elementary step associated with the isomerization of lipid chains, such as kink formation through internal bond rotations, as the bilayer transforms between ordered and disordered phases.

摘要

已记录了二棕榈酰卵磷脂囊泡在14 - 265 MHz频率范围内随温度变化的超声弛豫谱。观察到一个弛豫过程,其时间常数约为10(-8)秒。在晶态 - 液晶态转变的中点(约41.3摄氏度),弛豫幅度最大。这表明弛豫过程与有序 - 无序转变密切相关。这一结论的进一步支持来自以下发现:根据转变中点处的弛豫幅度计算出的反应体积变化,与通过转变的δV平衡膨胀测量独立确定的结果一致。结果表明,转变中的一个主要步骤发生的时间尺度比先前认识的要短得多。在二肉豆蔻酰和二硬脂酰卵磷脂囊泡中也检测到了类似的快速过程。从对各种证据的考虑来看,似乎弛豫监测了与脂质链异构化相关的基本步骤,例如当双层在有序和无序相之间转变时,通过内部键旋转形成扭结。

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本文引用的文献

1
Ultrasonic attenuation measurements in phospholipid dispersions.
Biochim Biophys Acta. 1970 Apr 21;203(2):220-7. doi: 10.1016/0005-2736(70)90135-5.
2
Nanosecond relaxation processes in aqueous mononucleoside solutions.
Biochemistry. 1971 Nov 23;10(24):4426-33. doi: 10.1021/bi00800a012.
9
Lipid bilayer phase transition: density measurements and theory.脂质双分子层相变:密度测量与理论
Proc Natl Acad Sci U S A. 1973 Dec;70(12):3443-4. doi: 10.1073/pnas.70.12.3443.

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