Feix J B, Popp C A, Venkataramu S D, Beth A H, Park J H, Hyde J S
Biochemistry. 1984 May 8;23(10):2293-9. doi: 10.1021/bi00305a032.
Vertical fluctuations of the terminal methyl groups of stearic acid acyl chains toward the surface of dimyristoylphosphatidylcholine (DMPC) bilayers have been investigated by using spin-label electron-electron double-resonance ( ELDOR ) methodology. Spin-label pairs consisting of two populations of stearic acid spin-labels were employed, each at 0.25 mol% concentration, where the nitroxides of the first population were 15N substituted and the nitroxides of the second contained 14N. Various combinations of labels with the nitroxide moieties located at carbons 5, 12, or 16 (C5, C12, C16) were used. ELDOR permits measurement of collision frequencies between the two constituents of the pair, for example, between 15N spin-labels at C5 and 14N labels at C16. Intramolecular contributions to the ELDOR effect including nitrogen nuclear relaxation are eliminated by the use of spin-label pairs. Above the main phase transition temperature, bimolecular collisions between C5 and C16 occur with about half the frequency of C16:C16 collisions. It is concluded that vertical fluctuations are very pronounced. A dependence of these fluctuations on temperature and pH has been observed. Lateral diffusion constants calculated from the bimolecular collision frequencies of C16:C16 pairs are 4.56 X 10(-8), 5.77 X 10(-8), and 8.09 X 10(-8) cm2/s at 27, 37, and 47 degrees C. These values are in good agreement with previous measurements of lipid diffusion in DMPC.
通过使用自旋标记电子-电子双共振(ELDOR)方法,研究了硬脂酸酰基链末端甲基基团向二肉豆蔻酰磷脂酰胆碱(DMPC)双层表面的垂直波动情况。使用了由两群硬脂酸自旋标记组成的自旋标记对,每群的浓度均为0.25 mol%,其中第一群的氮氧化物被15N取代,第二群的氮氧化物含有14N。使用了位于碳5、12或16(C5、C12、C16)处带有氮氧化物部分的各种标记组合。ELDOR允许测量该对的两种成分之间的碰撞频率,例如,C5处的15N自旋标记与C16处的14N标记之间的碰撞频率。通过使用自旋标记对消除了对ELDOR效应的分子内贡献,包括氮核弛豫。在主相变温度以上,C5和C16之间的双分子碰撞频率约为C16:C16碰撞频率的一半。得出的结论是垂直波动非常明显。已观察到这些波动对温度和pH的依赖性。根据C16:C16对的双分子碰撞频率计算出的横向扩散常数在27、37和47摄氏度时分别为4.56×10(-8)、5.77×10(-8)和8.09×10(-8) cm2/s。这些值与先前对DMPC中脂质扩散的测量结果非常吻合。