Auger M, Smith I C, Jarrell H C
Division of Biological Sciences, National Research Council of Canada, Ottawa, Ontario.
Biophys J. 1991 Jan;59(1):31-8. doi: 10.1016/S0006-3495(91)82195-6.
Two-dimensional solid-state 2H NMR spectroscopy of specifically deuteriated lipids is used to detect and to characterize the rate and mode of slow motions in two lipid bilayer systems. Lateral diffusion of lipid molecules over the curved surface of dipalmitoylphosphatidylcholine liposomes can be detected by two-dimensional exchange 2H NMR and it is shown that molecular orientational exchange is complete on the timescale of 100 ms. In contrast, it is shown that for the glycolipid 1,2-di-O-tetradecyl-3-O-Beta-D-glucopyranosyl)-sn-glycerol (beta-DTGL), there is no evidence of a corresponding orientational exchange in the liquid-crystalline phase suggesting that this lipid forms relatively flat bilayers. In the gel phase of hydrated multibilayers of beta-DTGL, a slow (10(3) s(-1)) whole molecule axial motion is demonstrated at 40 degrees C. Comparison of the experimental and simulated 2D-NMR ridge patterns suggests that large angle jumps about the long molecular axis, rather than small step Brownian diffusion, can best account for the 2D-exchange spectra of beta-DTGL in the gel phase. The significance of this technique for the study of dynamics in other biological systems is discussed.
使用特定氘代脂质的二维固态2H核磁共振光谱来检测和表征两种脂质双层系统中慢运动的速率和模式。通过二维交换2H核磁共振可以检测到脂质分子在二棕榈酰磷脂酰胆碱脂质体曲面上的横向扩散,结果表明分子取向交换在100毫秒的时间尺度上完成。相比之下,研究表明,对于糖脂1,2-二-O-十四烷基-3-O-β-D-吡喃葡萄糖基)-sn-甘油(β-DTGL),在液晶相中没有相应取向交换的证据,这表明这种脂质形成相对扁平的双层。在水合多层β-DTGL的凝胶相中,在40℃下证明了一种缓慢(10³ s⁻¹)的全分子轴向运动。实验和模拟的二维核磁共振脊线图的比较表明,围绕长分子轴的大角度跳跃,而不是小步布朗扩散,最能解释凝胶相中β-DTGL的二维交换光谱。讨论了该技术在研究其他生物系统动力学方面的意义。