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Interaction of phospholipid vesicles with cultured mammalian cells. II. Studies of mechanism.

机译:磷脂囊泡与培养的哺乳动物细胞的相互作用。二。机制研究。

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The mechanism of interaction of artificially generated lipid vesicles (approximately 500 A diameter) with Chinese hamster V79 cells bathed in a simple balanced salt solution was investigated. The major pathways of exogenous lipid incorporation in vesicle-treated cells are vesicle-cell fusion and vesicle-cell lipid exchange. At 37 degrees C, the fusion process is dominant, while at 2 degrees C or with energy depleted cells, exchange of lipids between vesicles and cells is important. The fusion mechanism was demonstrated using vesicles of [14C]lecithin containing trapped [13H]inulin. Consistent with a fusion hypothesis, both components became cell associated at 37 degrees C in nearly the same proportions as they were present in the applied vesicles. Additional arguments in favor of vesicle-cell fusion and against phagocytosis or adsorption of intact vesicles are presented. At 2 degrees C or with inhibitor-treated cells, the [3H]inulin uptake was largely suppressed, while the lipid uptake was reduced to a lesser extent. Evidence for vesicle-cell lipid exchange was obtained using V79 cells grown on 3H precursors for cellular lipids. [14C]lecithin vesicles, incubated with such cells, showed no change in their elution properties when subjected to molecular sieve chromatography on Sepharose 4B. However, radioactivity and thin-layer chromatographic analyses revealed that a variety of cell lipiids had been exchanged into the uniamellar vesicles. Further evidence for the fusion and exchange processes was obtained using vesicles prepared from mixtures of [3H]lecithin and [14C]cholesterol. A two-step fusion mechanism consistent with the present findings is proposed as a working model for other fusion studies.
机译:研究了人工产生的脂质囊泡(直径约500 A)与沐浴在简单平衡盐溶液中的中国仓鼠V79细胞的相互作用机理。在囊泡处理的细胞中外源脂质掺入的主要途径是囊泡-细胞融合和囊泡-细胞脂质交换。在37摄氏度时,融合过程占主导地位,而在2摄氏度或能量耗尽的细胞中,囊泡与细胞之间的脂质交换非常重要。使用包含[13C]菊粉的囊泡[14C]卵磷脂证明了融合机制。与融合假说相一致,两种成分在37摄氏度时都以与所用囊泡中存在的比例几乎相同的比例与细胞结合。提出了支持囊泡-细胞融合并反对吞噬或完整囊泡吸附的其他论点。在2摄氏度或用抑制剂处理的细胞中,[3H]菊粉的摄入量被大大抑制,而脂质的摄入量减少的程度较小。使用在细胞脂质的3H前体上生长的V79细胞可获得囊泡细胞脂质交换的证据。与此类细胞一起孵育的[14C]卵磷脂囊泡在Sepharose 4B上进行分子筛色谱分析时,其洗脱特性没有变化。然而,放射性和薄层色谱分析表明,多种细胞脂质已经被交换到单层囊泡中。使用由[3H]卵磷脂和[14C]胆固醇的混合物制备的囊泡获得了融合和交换过程的进一步证据。提出了与本研究结果一致的两步融合机制,作为其他融合研究的工作模型。

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