Tristram-Nagle Stephanie, Nagle John F
Departments of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
Chem Phys Lipids. 2004 Jan;127(1):3-14. doi: 10.1016/j.chemphyslip.2003.09.002.
This article, adapted from our acceptance speech of the Avanti Award in Lipids at the 47th Biophysical Society meeting in San Antonio, 2003, summarizes over 30 years of research in the area of lipid bilayers. Beginning with a theoretical model of the phase transition (J.F.N.), we have proceeded experimentally using dilatometry and density centrifugation to study volume, differential scanning calorimetry to study heat capacity, and X-ray scattering techniques to study structure of lipid bilayers as a function of temperature. Electron density profiles of the gel and ripple phases have been obtained as well as profiles from several fluid phase lipids, which lead to many structural results that compliment molecular dynamics simulations from other groups. Using the theory of liquid crystallography plus oriented lipid samples, we are the first group to obtain both material parameters (KC and B) associated with the fluctuations in fluid phase lipids. This allows us to use fully hydrated lipid samples, as in vivo, to obtain the structure.
本文改编自我们在2003年于圣安东尼奥举行的第47届生物物理学会会议上获得脂质领域阿凡提奖的获奖感言,总结了在脂质双层领域30多年的研究。从相变的理论模型(J.F.N.)开始,我们通过膨胀测量法和密度离心法进行实验研究体积,用差示扫描量热法研究热容量,并用X射线散射技术研究脂质双层结构随温度的变化。我们获得了凝胶相和波纹相的电子密度分布图以及几种液相脂质的分布图,这些结果带来了许多结构方面的发现,与其他团队的分子动力学模拟结果相得益彰。利用液晶学理论和取向脂质样品,我们是首个获得与液相脂质波动相关的材料参数(KC和B)的团队。这使我们能够像在体内一样使用完全水合的脂质样品来获取结构。