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从极地硅藻脆杆藻中鉴定出一种抗冻蛋白及其在海冰中的相关性。

Characterization of an antifreeze protein from the polar diatom Fragilariopsis cylindrus and its relevance in sea ice.

机构信息

Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, Germany.

出版信息

Cryobiology. 2011 Dec;63(3):210-9. doi: 10.1016/j.cryobiol.2011.08.006. Epub 2011 Aug 26.

DOI:10.1016/j.cryobiol.2011.08.006
PMID:21906587
Abstract

Antifreeze proteins (AFPs), characterized by their ability to separate the melting and growth temperatures of ice and to inhibit ice recrystallization, play an important role in cold adaptation of several polar and cold-tolerant organisms. Recently, a multigene family of AFP genes was found in the diatom Fragilariopsis cylindrus, a dominant species within polar sea ice assemblages. This study presents the AFP from F. cylindrus set in a molecular and crystallographic frame. Differential protein expression after exposure of the diatoms to environmentally relevant conditions underlined the importance of certain AFP isoforms in response to cold. Analyses of the recombinant AFP showed freezing point depression comparable to the activity of other moderate AFPs and further enhanced by salt (up to 0.9°C in low salinity buffer, 2.5°C at high salinity). However, unlike other moderate AFPs, its fastest growth direction is perpendicular to the c-axis. The protein also caused strong inhibition of recrystallization at concentrations of 1.2 and 0.12 μM at low and high salinity, respectively. Observations of crystal habit modifications and pitting activity suggested binding of AFPs to multiple faces of the ice crystals. Further analyses showed striations caused by AFPs, interpreted as inclusion in the ice. We suggest that the influence on ice microstructure is the main characteristic of these AFPs in sea ice.

摘要

抗冻蛋白(AFPs)的特点是能够分离冰的融点和生长温度,并抑制冰晶再结晶,在几种极地和耐寒生物的冷适应中发挥重要作用。最近,在硅藻 Fragilariopsis cylindrus 中发现了 AFP 基因的多基因家族,这是极地海冰组合中的优势物种。本研究将 F. cylindrus 的 AFP 置于分子和晶体学框架中进行研究。暴露于环境相关条件下的硅藻的差异蛋白表达强调了某些 AFP 同工型在冷响应中的重要性。对重组 AFP 的分析表明,其冰点降低可与其他中等 AFP 的活性相媲美,并通过盐进一步增强(低盐缓冲液中可达 0.9°C,高盐时可达 2.5°C)。然而,与其他中等 AFP 不同的是,其最快的生长方向垂直于 c 轴。该蛋白在低盐和高盐下浓度分别为 1.2 和 0.12 μM 时,对冰晶的再结晶具有强烈的抑制作用。对晶体习性修饰和蚀坑活性的观察表明,AFPs 与冰晶的多个面结合。进一步的分析表明,AFPs 引起的条纹可解释为包含在冰中。我们认为,对冰微观结构的影响是这些 AFP 在海冰中的主要特征。

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