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首页> 外文期刊>The Journal of Experimental Biology >Thermally induced changes in lipid composition of raft and non-raft regions of hepatocyte plasma membranes of rainbow trout
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Thermally induced changes in lipid composition of raft and non-raft regions of hepatocyte plasma membranes of rainbow trout

机译:热诱导虹鳟鱼肝细胞质膜筏和非筏区脂质组成的变化

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In poikilotherms, increases in plasma membrane (PM) cholesterol and an increase in the degree of lipid acyl chain saturation commonly accompany an increase in growth temperature. This has typically been interpreted in terms of membrane fluidity/order homeostasis, but these changes would also be expected to stabilize the structure of PM rafts against thermal perturbation. Rafts are microdomains that organize the molecules of many signaling cascades and are formed as a result of interactions between lipids with saturated acyl chains and cholesterol. No study to date has examined the thermally induced compositional changes of raft and non-raft regions of the PM separately. In this study we have measured the phospholipid class composition and fatty acid composition of raft-enriched (raft) and raft-depleted PM (RDPM) of hepatocytes from trout Oncorhynchus mykiss acclimated to 5 degrees C and 20 degrees C. In the raft, warm acclimation was associated with a reduction in the proportion of phosphatidylcholine from 56% to 30% while phosphatidylserine and phosphatidylinositol each increased from 8% to approximately 20% of the total phospholipid. Additionally, there were significantly fewer unsaturated fatty acids in the raft lipids from warm-acclimated (61%) than from the cold-acclimated trout (68%). In contrast, there were no significant changes in phospholipid class or acyl chain unsaturation in the RDPM. These data suggest that changes in raft lipid composition, rather than the PM as a whole, are particularly important during thermal acclimation.
机译:在poikilotherms中,质膜(PM)胆固醇的增加和脂质酰基链饱和度的增加通常伴随着生长温度的增加。通常用膜流动性/有序动态平衡来解释这一点,但是这些变化也有望使PM筏的结构稳定而不受热扰动。筏是组织许多信号传导级联的分子的微区,是由于具有饱和酰基链的脂质与胆固醇之间相互作用而形成的。迄今为止,尚无研究单独研究PM筏区和非筏区的热诱导成分变化。在这项研究中,我们测量了鳟鱼Oncorhynchus mykiss适应于5摄氏度和20摄氏度的肝细胞的富含筏(raft)和贫筏PM(RDPM)的磷脂类组成和脂肪酸组成。在筏中,温暖适应与磷脂酰胆碱的比例从56%降低到30%,而磷脂酰丝氨酸和磷脂酰肌醇分别从总磷脂的8%增加到约20%。另外,来自温驯化的鳟鱼的筏脂中的不饱和脂肪酸(61%)明显少于来自冷驯化的鳟鱼的不饱和脂肪酸(68%)。相反,RDPM中的磷脂类或酰基链不饱和度没有显着变化。这些数据表明,在热适应过程中,筏脂成分的变化而不是整个PM的变化尤其重要。

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