首页> 美国卫生研究院文献>Biochemical Journal >Changes in the ordering of lipids in the membrane of Dunaliella in response to osmotic-pressure changes. An e.s.r. study.
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Changes in the ordering of lipids in the membrane of Dunaliella in response to osmotic-pressure changes. An e.s.r. study.

机译:响应于渗透压的变化杜氏藻膜中脂质的有序变化。一个e.s.r.研究。

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摘要

Changes in the ordering and motion of lipids in response to changes in the external solute concentration have been studied by using the 5-nitroxide stearate (5NS) and 16-nitroxide stearate (16NS) spin probes in the plasma membrane of the halotolerant unicellular alga Dunaliella salina. Increases in ordering of the 5NS probe and decreases in motion of the 16NS probe were observed in cells equilibrated over 18 h at increasing NaCl concentrations. These changes probably resulted from the influence of the high NaCl concentration on the charged phospholipid head groups of the membrane. A short-term (less than 100 min) decrease in the order parameter, S, of the 5NS probe was observed for cells swollen by exposure to a sudden decrease of NaCl concentration from 5.0 to 2.5 M. After 100 min the value of S for 5NS was close to the value obtained in cells that had been equilibrated in 2.5 M-NaCl for 18 h. Since the cells had regained their original size and shape by 100 min it was assumed that the short-term decrease in S was associated with the swelling. A similar result was obtained when the cells were suddenly changed from 3.0 M- to 1.5 M-sorbitol. Conversely, an increase in S was observed for cells shrunk when the external solute concentration was doubled from 1.5 M- to 3.0 M-NaCl. As the cells regained their original size and shape the value of S decreased to the value observed in cells that had been equilibrated in 3.0 M-NaCl for 18 h. It is suggested that the changes in S are related to the movement of lipid into or out of a reservoir of membrane material as the membrane shrinks or expands. This movement of lipid maintains the tension of the membrane below the value at which it is disrupted. Such changes in lipid ordering could provide a mechanism whereby information about external osmotic-pressure changes is transmitted across the cell wall.
机译:响应于外部溶质浓度的变化,脂质的有序和运动的变化已通过使用卤代单细胞藻类杜氏藻质膜中的5-硝基硬脂酸酯(5NS)和16-硝基硬脂酸酯(16NS)自旋探针进行了研究。盐沼。在NaCl浓度增加的情况下,经过18小时平衡的细胞中观察到5NS探针的顺序增加和16NS探针的运动减少。这些变化可能是由于高NaCl浓度对膜带电的磷脂头基的影响。对于暴露于NaCl浓度突然从5.0降至2.5 M肿胀的细胞,观察到5NS探针的顺序参数S短期(小于100分钟)下降。100分钟后,S的S值5NS接近在2.5 M-NaCl中平衡18小时的细胞中获得的值。由于细胞在100分钟之前恢复了其原始大小和形状,因此可以认为S的短期减少与肿胀有关。当细胞突然从3.0 M-变为1.5 M-山梨糖醇时,获得了相似的结果。相反,当外部溶质浓度从1.5 M-NaCl翻倍到3.0 M-NaCl时,对于收缩的细胞,S值增加。随着细胞恢复其原始大小和形状,S值降低至在3.0 M-NaCl中平衡18 h的细胞中观察到的值。建议S的变化与脂质随着膜的收缩或扩张而进入或离开膜材料的储库的运动有关。脂质的这种运动将膜的张力保持在其破裂值以下。脂质有序的这种变化可以提供一种机制,通过该机制可以将有关外部渗透压变化的信息跨细胞壁传递。

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