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首页> 外文期刊>IUBMB life >Molecular Cold-adaptation: Comparative Analysis of Two Homologous Families of Psychrophilic and Mesophilic Signal Proteins of the Protozoan Ciliate, Euplotes
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Molecular Cold-adaptation: Comparative Analysis of Two Homologous Families of Psychrophilic and Mesophilic Signal Proteins of the Protozoan Ciliate, Euplotes

机译:分子冷适应:原生动物纤毛虫,真核生物的嗜冷和中温信号蛋白的两个同源家族的比较分析。

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摘要

Unique opportunities are provided by phylogenetically closely related organisms thriving in stably cold, or temperate milieus to study adaptive modifications of structurally homologous molecules. These modifications are of keen interest in basic science as well as in biotechnology. This review highlights structural and functional specificities that differentiate two homologous families of psychrophilic and mesophilic water-borne proteins (designated as pheromones) that signal mitotic growth and sexual mating in two marine species of the protozoan ciliate Euplotes, i.e., E. nobilii, which is distributed in Antarctic and Arctic waters, and E. raikovi, which inhabits temperate waters. The two protein families show strict conservation of a common three-helix bundle in a compact core of the molecular structure, which provides long-lasting integrity and biological activity to these molecules in their natural environment. In the psychrophilic pheromone family, cold-adaptation appears to have been achieved by superimposing an integrated complex of structural modifications on this conserved scaffold. Functionally most relevant appear to be extensions of polypeptide segments devoid of regular secondary structures, a specific distribution of polar and hydrophobic amino acids, the presence of solvent-exposed clusters of negatively charged amino acid side chains, and a unique role of aromatic residues in anchoring the molecular architecture. Due to these modifications, the psychrophilic pheromones are an example of an elegant combination of high stability of the three-dimensional structures with sufficient structural plasticity for efficient functioning at their physiologically low temperatures.
机译:系统发育密切相关的生物在稳定的寒冷或温带环境中繁衍生息,为研究结构同源分子的适应性修饰提供了独特的机会。这些修饰在基础科学和生物技术中引起了浓厚的兴趣。这项审查突出结构和功能的特异性,区分两个同源家族的嗜水和中温的水性蛋白(称为信息素),它们在原生动物纤毛Euplotes的两个海洋物种即E. nobilii中发出有丝分裂生长和有性交配的信号。分布在南极和北极水域以及居住在温带水域的E. raikovi。这两个蛋白家族在分子结构的紧密核心中显示出对共同的三螺旋束的严格保守,这为这些分子在其自然环境中提供了持久的完整性和生物活性。在嗜冷性信息素家族中,冷适应似乎是通过在该保守支架上叠加结构修饰的整合复合物而实现的。功能上最相关的似乎是没有规则二级结构的多肽片段的延伸,极性和疏水氨基酸的特定分布,带负电荷的氨基酸侧链的溶剂暴露簇的存在以及芳香族残基在锚定中的独特作用分子结构。由于这些修饰,嗜冷信息素是三维结构的高稳定性与足够的结构可塑性在其生理低温下有效发挥作用的完美结合的一个例子。

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