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Direct Visualization of Spruce Budworm Antifreeze Protein Interacting with Ice Crystals: Basal Plane Affinity Confers Hyperactivity

机译:与云杉相互作用的云杉芽虫抗冻蛋白的直接可视化:基础平面亲和力赋予活动过度

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摘要

Antifreeze proteins (AFPs) protect certain organisms from freezing by adhering to ice crystals, thereby preventing their growth. All AFPs depress the nonequilibrium freezing temperature below the melting point; however AFPs from overwintering insects, such as the spruce budworm (sbw) are 10–100 times more effective than most fish AFPs. It has been proposed that the exceptional activity of these AFPs depends on their ability to prevent ice growth at the basal plane. To test the hypothesis that the hyperactivity of sbwAFP results from direct affinity to the basal plane, we fluorescently tagged sbwAFP and visualized it on the surface of ice crystals using fluorescence microscopy. SbwAFP accumulated at the six prism plane corners and the two basal planes of hexagonal ice crystals. In contrast, fluorescently tagged fish type III AFP did not adhere to the basal planes of a single-crystal ice hemisphere. When ice crystals were grown in the presence of a mixture of type III AFP and sbwAFP, a hybrid crystal shape was produced with sbwAFP bound to the basal planes of truncated bipyramidal crystals. These observations are consistent with the blockage of c-axial growth of ice as a result of direct interaction of sbwAFP with the basal planes.
机译:防冻蛋白(AFP)通过附着在冰晶上来保护某些生物免于冻结,从而防止其生长。所有AFP将非平衡冻结温度降低到熔点以下;但是,越冬昆虫(如云杉芽虫)的AFP的效率比大多数鱼类AFP高10-100倍。已经提出,这些AFP的异常活性取决于它们防止在基面上的冰生长的能力。为了检验sbwAFP的过度活跃性是由与基底平面的直接亲和力导致的,我们对sbwAFP进行了荧光标记,并使用荧光显微镜在冰晶表面上对其进行了可视化。 SbwAFP累积在六个棱镜平面角和六角形冰晶的两个基平面上。相比之下,荧光标记的鱼类III型AFP没有粘附在单晶冰半球的基面上。当冰晶在III型AFP和sbwAFP的混合物存在下生长时,产生了杂晶形状,其中sbwAFP结合到截短的双锥体晶体的基面。这些观察结果与由于sbwAFP与基底平面直接相互作用而导致的冰的c轴生长受阻一致。

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