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神经酰胺诱导的流体细胞脂提取物中的层状凝胶相。

Ceramide-Induced Lamellar Gel Phases in Fluid Cell Lipid Extracts.

机构信息

Biofisika Institute (CSIC, UPV/EHU) , 48940 Leioa, Spain.

Departamento de Bioquímica, University of the Basque Country (UPV/EHU) , 48940 Leioa, Spain.

出版信息

Langmuir. 2016 Sep 6;32(35):9053-63. doi: 10.1021/acs.langmuir.6b01579. Epub 2016 Aug 23.

DOI:10.1021/acs.langmuir.6b01579
PMID:27486830
Abstract

The effects of increasing amounts of palmitoylceramide (pCer) on human red blood cell lipid membranes have been studied using atomic force microscopy of supported lipid bilayers, in both imaging (bilayer thickness) and force-spectroscopy (nanomechanical resistance) modes. Membranes appeared homogeneous with pCer concentrations up to 10 mol % because of the high concentration of cholesterol (Chol) present in the membrane (∼45 mol %). However, the presence of pCer at 30 mol % gave rise to a clearly distinguishable segregated phase with a nanomechanical resistance 7-fold higher than the continuous phase. These experiments were validated using differential scanning calorimetry. Furthermore, Chol depletion of the bilayers caused lipid domain generation in the originally homogeneous samples, and Chol-depleted domain stiffness significantly increased with higher amounts of pCer. These results point to the possibility of different kinds of transient and noncompositionally constant, complex gel-like phases present in RBC lipid membranes rich in both pCer and Chol, in contrast to the widespread opinion about the displacements between pCer-enriched "gel-like" domains and liquid-ordered "raft-like" Chol-enriched phases. Changes in the biophysical properties of these complex gel-like phases governed by local modulation of pCer:Chol ratios could be a cell mechanism for fine-tuning the properties of membranes as required.

摘要

采用原子力显微镜的支持脂质双层成像(双层厚度)和力谱(纳米机械阻力)模式,研究了增加棕榈酰神经酰胺(pCer)的量对人红细胞脂质膜的影响。由于膜中存在高浓度的胆固醇(Chol)(约 45mol%),pCer 浓度高达 10mol%时,膜呈现均匀状态。然而,当 pCer 浓度达到 30mol%时,会出现明显可区分的分隔相,其纳米机械阻力比连续相高 7 倍。这些实验使用差示扫描量热法进行了验证。此外,双层膜中的 Chol 耗尽会导致原本均匀的样品中产生脂质域,并且随着 pCer 量的增加,Chol 耗尽域的刚性显著增加。这些结果表明,富含 pCer 和 Chol 的 RBC 脂质膜中可能存在不同种类的瞬时和非组成恒定的复杂凝胶样相,这与广泛存在的关于 pCer 富集的“凝胶样”域和富含 Chol 的液体有序“筏样”域之间位移的观点形成对比。由局部调节 pCer:Chol 比例控制的这些复杂凝胶样相的生物物理性质的变化可能是细胞微调膜性质的机制,以满足需要。

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