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神经酰胺平台的形成及其在流体磷脂膜中诱导的生物物理变化。

Ceramide-platform formation and -induced biophysical changes in a fluid phospholipid membrane.

作者信息

Silva Liana, de Almeida Rodrigo F M, Fedorov Alexander, Matos António P A, Prieto Manuel

机构信息

CQFM, Instituto Superior Técnico, Hospital Curry Cabral, Lisboa, Portugal.

出版信息

Mol Membr Biol. 2006 Mar-Apr;23(2):137-48. doi: 10.1080/09687860500439474.

Abstract

To understand the formation and properties of ceramide-enriched domains in cell membranes, the biophysical properties of the binary system palmitoyloleoylphosphatidylcholine (POPC)/palmitoylceramide were thoroughly characterized. Diverse fluorescent probes and parameters were necessary to unravel the complexity of this apparently simple system. For the first time, a complete phase diagram is reported, characterizing the lamellar phases of these mixtures, and providing a quantitative framework integrating biophysical and biological studies. The diagram suggests that in resting cells no ceramide domains exist, but upon apoptotic stimuli, platforms may form. Moreover, our data show that 2 mol% of Cer strongly affects the POPC fluid matrix, suggesting that a small increase in Cer levels can significantly affect cell membrane properties. In this work, we also show that Cer domains, formed in conditions similar to physiological, are extremely ordered and rigid. The domains composition is estimated from the phase diagram and their large size was concluded from fluorescence resonance energy transfer. Dynamic light scattering and electron microscopy were used to characterize the system morphology, which is highly dependent on ceramide content and includes vesiculation and tubular structure formation.

摘要

为了解细胞膜中富含神经酰胺区域的形成及性质,对二元体系棕榈酰油酰磷脂酰胆碱(POPC)/棕榈酰神经酰胺的生物物理性质进行了全面表征。需要多种荧光探针和参数来揭示这个看似简单的体系的复杂性。首次报道了完整的相图,表征了这些混合物的层状相,并提供了一个整合生物物理和生物学研究的定量框架。该相图表明,在静息细胞中不存在神经酰胺区域,但在凋亡刺激下可能会形成平台。此外,我们的数据表明,2 mol%的神经酰胺会强烈影响POPC流体基质,这表明神经酰胺水平的小幅增加会显著影响细胞膜性质。在这项工作中,我们还表明,在类似于生理条件下形成的神经酰胺区域极其有序且刚性。根据相图估算区域组成,并通过荧光共振能量转移得出其尺寸较大。使用动态光散射和电子显微镜来表征体系形态,其高度依赖于神经酰胺含量,包括囊泡化和管状结构形成。

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