首页> 美国卫生研究院文献>Biophysical Journal >X-ray diffraction and electron microscope study of phase separation in rod outer segment photoreceptor membrane multilayers.
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X-ray diffraction and electron microscope study of phase separation in rod outer segment photoreceptor membrane multilayers.

机译:X射线衍射和电子显微镜研究棒外段感光膜多层中的相分离。

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摘要

Phase separation in artificially stacked multilayers of isolated bovine retinal rod outer segment (ROS) membranes has been examined via x-ray diffraction and electron microscopy. Specimens were prepared by isopotential spin drying followed with partial hydration by equilibration against moist gas streams. Upon dehydration, the multilamellar membrane phase assumes a binary phase composition consisting of concentrated protein-containing lamellae interspersed with microdomains of hexagonally packed tubes of lipid in a HII configuration. The HII lattice is geometrically coupled to the lamellar phase with one set of hexagonal crystal planes co-planar to the local membrane lamellae. The hexagonal microdomains bear a striking resemblance to the "paracrystalline inclusions" observed in fast-frozen, intact frog ROS (Corless and Costello. 1981. Exp. Eye Res. 32:217). The lamellar lattice is characterized by an unusually small degree of disorder. Sharp lamellar diffraction with a 120 A unit cell is observed (at near total dehydration) to a resolution of 6 A. A model consistent with the data is that a multilamellar array of ROS disks is stable as long as the external disk surfaces are kept sufficiently far apart. If the distance between the membranes is allowed to shrink below a certain critical value, the disk lipids spontaneously convert to a nonbilayer phase. This suggests that the structure of the ROS is stabilized by an internal framework that acts to keep the disks apart from one another and from the plasmalemma. Thus, the necessity of avoiding phase separations may provide a rationale for the peculiar morphology of the ROS.
机译:已通过X射线衍射和电子显微镜检查了人工堆叠的分离牛视网膜棒外部(ROS)膜的多层结构中的相分离。通过等电位旋转干燥,然后通过与湿气流平衡来部分水合来制备样品。脱水后,多层膜相呈现二元相组成,该二相相组成是由浓缩的含蛋白质的薄片和HII构型的六边形堆积的脂质管的微区组成。 HII晶格通过一组与局部膜片共面的六边形晶体平面与层状相几何耦合。六角形微区与在速冻的完整青蛙ROS中观察到的“顺晶体夹杂物”非常相似(Corless和Costello。1981. Exp。Eye Res。32:217)。层状晶格的特征在于异常程度很小。观察到具有120 A晶胞的锐利层状衍射(接近完全脱水),分辨率为6A。与数据一致的模型是,只要外部磁盘表面保持足够,多层ROS磁盘阵列是稳定的离的远。如果允许膜之间的距离缩小到某个临界值以下,则盘状脂质会自发转变为非双层相。这表明ROS的结构由内部框架稳定,该内部框架用于使磁盘相互之间以及与血浆之间保持间隔。因此,避免相分离的必要性可以为ROS的特殊形态提供理论依据。

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