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首页> 外文期刊>Fisheries and Aquatic Sciences >Cloning, expression, and activity of type IV antifreeze protein from cultured subtropical olive flounder (Paralichthys olivaceus)
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Cloning, expression, and activity of type IV antifreeze protein from cultured subtropical olive flounder (Paralichthys olivaceus)

机译:亚热带橄榄比目鱼(Paralichthys olivaceus)IV型抗冻蛋白的克隆,表达及活性

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摘要

Antifreeze proteins (AFPs) lower the freezing point but not the melting point of aqueous solutions by inhibiting the growth of ice crystals via an adsorption-inhibition mechanism. However, the function of type IV AFP (AFP IV) is questionable, as its antifreeze activity is on the verge of detectable limits, its physiological concentration in adult fish blood is too low to function as a biological antifreeze, and its homologues are present even in fish from tropic oceans as well as freshwater. Therefore, we speculated that AFP IV may have gained antifreeze activity not by selective pressure but by chance. To test this hypothesis, we cloned, expressed, and assayed AFP IV from cultured subtropical olive flounder (Paralichthys olivaceus), which do not require antifreeze protein for survival. Among the identified expressed sequence tags of the flounder liver sample, a 5'-deleted complementary DNA (cDNA) sequence similar to the afp4 gene of the longhorn sculpin was identified, and its full-length cDNA andgenome structure were examined. The deduced amino acid sequence of flounder AFP IV shared 55, 53, 52, and 49 % identity with those of Pleuragramma antarcticum, Myoxocephalus octodecemspinosus, Myoxocephalus scorpius, and Notothenia coriiceps, respectively. Furthermore, the genomic structure of this gene was conserved with those of other known AFP IVs. Notably, the recombinant AFP IV showed a weak but distinct thermal hysteresis of 0.07 + 0.01 °C at the concentration of 0.5 mg/mL, and ice crystals in an AFP IV solution grew star-shaped, which are very similar to those obtained from other polar AFP IVs. Taken together, our results do not support the hypothesis of evolution of AFP IV by selective pressure, suggesting that the antifreeze activity of AFPIV may have been gained by chance.
机译:抗冻蛋白(AFP)通过吸附抑制机制抑制冰晶的生长,从而降低了水溶液的凝固点,但并未降低其熔点。但是,IV型AFP(AFP IV)的功能值得怀疑,因为其抗冻活性接近可检测的极限,其在成鱼鱼血中的生理浓度太低而不能用作生物抗冻剂,甚至存在同系物来自热带海洋和淡水中的鱼类。因此,我们推测AFP IV可能不是通过选择压力而是通过偶然获得了抗冻活性。为了验证该假设,我们从培养的亚热带橄榄比目鱼(Paralichthys olivaceus)中克隆,表达和测定了AFP IV,该蛋白不需要抗冻蛋白即可存活。在已鉴定的比目鱼肝样品表达序列标签中,鉴定了一个与长角杜鹃的afp4基因相似的5'缺失互补DNA(cDNA)序列,并检查了其全长cDNA和基因组结构。比目鱼AFP IV的推导氨基酸序列分别与南极侧柏,八头球菌,天蝎和头皮夜蛾具有55、53、52和49%的同一性。此外,该基因的基因组结构与其他已知的AFP IV保守。值得注意的是,重组AFP IV在0.5 mg / mL的浓度下显示出0.07 + 0.01°C的微弱但独特的热滞,AFP IV溶液中的冰晶呈星形,这与从其他晶体中获得的非常相似。极性AFP IV。两者合计,我们的结果不支持通过选择性压力AFP IV进化的假说,这表明AFPIV的抗冻活性可能是偶然获得的。

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