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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Antifreeze proteins differentially affect model membranes during freezing
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Antifreeze proteins differentially affect model membranes during freezing

机译:抗冻蛋白在冷冻过程中差异影响模型膜

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摘要

Over the past decade antifreeze proteins from polar fish have been shown either to stabilize or disrupt membrane structure during low temperature and freezing stress. However, there has been no systematic study on how membrane composition affects the interaction of antifreeze proteins with membranes under stress conditions. Therefore, it is not possible at present to predict which antifreeze proteins will protect, and which will damage a particular membrane during chilling or freezing. Here, we analyze the effects of freezing on spinach thylakoid membranes and on model membranes of varying lipid composition in the presence of antifreeze protein type I (AFP I) and specific fractions of antifreeze glycoproteins (AFGP). We find that the addition of galactolipids to phospholipid model membranes changes the effect each protein has on the membrane during freezing. However, the greatest differences observed in this study are between the different types of antifreeze proteins. We find that AFP type I and the largest molecular weight fractions of AFGP induce concentration dependent leakage from, and are fusogenic to the liposomes. This is the first report that an antifreeze protein induces membrane fusion. In contrast, the smallest fraction of AFGP offers a limited degree of protection during freezing and does not induce membrane fusion at concentrations up to 10 mg/ml.
机译:在过去的十年中,来自极地鱼类的抗冻蛋白已被证明在低温和冰冻胁迫下稳定或破坏膜结构。然而,关于在压力条件下膜组成如何影响抗冻蛋白与膜之间相互作用的研究尚未得到系统的研究。因此,目前尚无法预测在冷冻或冷冻过程中哪些抗冻蛋白将受到保护,哪些会损坏特定的膜。在这里,我们分析了冷冻对菠菜类囊体膜和不同脂质组成的模型膜的影响,其中存在I型抗冻蛋白(AFP I)和抗冻糖蛋白的特定级分(AFGP)。我们发现在磷脂模型膜上添加半乳糖脂会改变每种蛋白质在冷冻过程中对膜的影响。但是,在这项研究中观察到的最大差异是在不同类型的抗冻蛋白之间。我们发现,AFP I型和AFGP的最大分子量级分可诱导脂质体的浓度依赖性泄漏,并对脂质体具有融合作用。这是关于抗冻蛋白诱导膜融合的第一个报道。相反,AFGP的最小部分在冷冻过程中提供的保护程度有限,并且在浓度高达10 mg / ml时不会诱导膜融合。

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