首页> 美国卫生研究院文献>Biophysical Journal >Kinetics and mechanism of the barotropic lamellar gel/lamellar liquid crystal phase transition in fully hydrated dihexadecylphosphatidylethanolamine: a time-resolved x-ray diffraction study using pressure jump.
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Kinetics and mechanism of the barotropic lamellar gel/lamellar liquid crystal phase transition in fully hydrated dihexadecylphosphatidylethanolamine: a time-resolved x-ray diffraction study using pressure jump.

机译:完全水合二十六烷基磷脂酰乙醇胺中的正压层状凝胶/层状液晶相变的动力学和机理:使用压力跳跃的时间分辨X射线衍射研究。

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摘要

The kinetics and mechanism of the barotropic lamellar gel (L beta')/lamellar liquid crystal (L alpha) phase transition in fully hydrated 1,2-dihexadecyl-sn-glycero-3-phosphoethanolamine (DHPE) has been studied using time-resolved x-ray diffraction (TRXRD). The phase transition was induced by pressure jumps of varying amplitudes in both the pressurization and depressurization directions at controlled temperature (78 degrees C). Both low- and wide-angle diffracted x rays were recorded simultaneously in live time using an x-ray-sensitive image intensifier coupled to a CCD camera and Super-VHS videotape recorder. Such an arrangement allowed for the direct and quantitative characterization of the long- (lamellar repeat spacing) and short-range order (chain packing) during a kinetic experiment. The image-processed live-time x-ray diffraction data were fitted using a nonlinear least-squares model, and the parameters of the fits were monitored continuously throughout the transition. The pressure-induced transitions from the L alpha to the L beta' phase and from the L beta' to the L alpha phase was two-state (no formation of intermediates apparent during the transition) to within the sensitivity limits of the method. The corresponding transit time (the time during which both phases coexist) associated with the long- and short-range order of the pressurization-induced L alpha-to-L beta' phase transition decreased to a limiting value of approximately 50 ms with increasing pressure jump amplitude. This limiting value was close to the response time of the detector/recording system. Thus, the intrinsic transit time of this transition in fully hydrated DHPE at 78 degrees C was less than or equal to 50 ms. In contrast, the depressurization-induced L beta'-to-L alpha phase transition was slower, taking approximately 1 s to complete, and occurred with no obvious dependence of the transit time on pressure jump amplitude. In the depressurization jump experiment, the lipid responded rapidly to the pressure jump in the L beta' phase up to the rate-determining L beta'-to-L alpha transition. Such behavior was examined carefully, as it could complicate the interpretation of phase transition kinetic measurements.
机译:使用时间分辨技术研究了在完全水合的1,2-二十六烷基-sn-甘油-3-磷酸乙醇胺(DHPE)中的正压层状凝胶(L beta')/层状液晶(L alpha)相变的动力学和机理X射线衍射(TRXRD)。在受控温度(78摄氏度)下,在增压和降压两个方向上,振幅均发生变化的压力跃变引起了相变。使用耦合到CCD相机和Super-VHS录像带记录仪的X射线敏感图像增强器,实时同时记录了低角度和广角衍射X射线。这种布置允许在动力学实验期间直接和定量表征长(片状重复间隔)和短程有序(链堆积)。使用非线性最小二乘法拟合图像处理后的实时X射线衍射数据,并在整个过渡过程中连续监测拟合参数。压力诱导的从L alpha到L beta'相以及从L beta'到L alpha相的转变为两种状态(在转变过程中没有明显的中间体形成),处于方法的灵敏度范围内。随着压力的升高,与压力诱导的Lα到Lβ′相变的长程和短程顺序相关的相应的渡越时间(两个阶段共存的时间)降低到约50 ms的极限值跳跃幅度。该极限值接近检测器/记录系统的响应时间。因此,在78℃下在完全水合的DHPE中该转变的固有转变时间小于或等于50ms。相反,降压诱导的Lβ'到Lα的相变较慢,大约需要1 s的时间才能完成,并且发生时间与压力跃变幅度没有明显的相关性。在降压跃迁实验中,脂质对L beta'相中的压力跃迁迅速作出反应,直至决定Lβ'到Lα转变的速率。仔细检查了这种行为,因为它可能会使相变动力学测量的解释复杂化。

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