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Intermediates in membrane fusion and bilayeronbilayer phase transitions imaged by time-resolved cryo-transmission electron microscopy.

机译:通过时间分辨的低温透射电子显微镜对膜融合和双层/非双层相变中的中间体进行成像。

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摘要

Bilayer-to-nonbilayer phase transitions in phospholipids occur by means of poorly characterized intermediates. Many have proposed that membrane fusion can also occur by formation of these intermediates. Structures for such intermediates were proposed in a recent theory of these transition mechanisms. Using time-resolved cryo-transmission electron Microscopy (TRC-TEM), we have directly visualized the evolution of inverted phase micro-structure in liposomal aggregates. We have identified one of the proposed intermediates, termed an interlamellar attachment (ILA), which has the structure and dimensions predicted by the theory. We show that ILAs are likely to be the structure corresponding to "lipidic particles" observed by freeze-fracture electron microscopy. ILAs appear to assemble the inverted cubic (III) phase by formation of an ILA lattice, as previously proposed. ILAs are also observed to mediate membrane fusion in the same systems, on the same time scale, and under nearly the same conditions in which membrane fusion was observed by fluorescence methods in earlier studies. These earlier studies indicated a linkage between a membrane fusion mechanism and III phase formation. Our micrographs suggest that the same intermediate structure mediates both of those processes.
机译:磷脂中的双层到非双层相变是通过特性不佳的中间体发生的。许多人提出通过形成这些中间体也可以发生膜融合。这些过渡机制的最新理论提出了这类中间体的结构。使用时间分辨的低温透射电子显微镜(TRC-TEM),我们直接观察了脂质体聚集体中反相微观结构的演变。我们已经确定了一种提议的中间体,称为层间附着(ILA),其结构和尺寸是理论预测的。我们表明,ILA可能是与通过冷冻断裂电子显微镜观察到的“脂质颗粒”相对应的结构。如先前提出的,ILA似乎通过形成ILA晶格来组装倒立的立方(III)相。还观察到ILA在相同的系统中,在相同的时间尺度上以及在几乎相同的条件下介导膜融合,在较早的研究中通过荧光方法观察到了膜融合。这些较早的研究表明膜融合机制和III相形成之间的联系。我们的显微照片表明,相同的中间结构介导了这两个过程。

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