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The type I antifreeze protein gene family in Pleuronectidae.

机译:披毛科的I型抗冻蛋白基因家族。

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摘要

Antifreeze proteins (AFPs) protect marine teleosts from freezing in icy seawater by binding to nascent ice crystals and preventing their growth. It has been suggested that the gene dosage for AFPs in fish reflects the degree of exposure to harsh winter climates. The starry flounder, Platichthys stellatus, has been chosen to examine this relationship because it inhabits a range of the Pacific coast from California to the Arctic. This flatfish is presumed to produce type I AFP, which is an alanine-rich, amphipathic alpha-helix.;The sequence and diversity of all three isoforms was sampled in the starry flounder genome by PCR. All coding sequences derived for the skin and liver isoforms were consistent with the proposed structure-function relationships for this AFP, where the flat hydrophobic side of the helix is conserved for ice binding. There was greater sequence diversity in the skin and hyperactive isoforms than in the liver isoform, suggesting that the latter evolved recently from one of the other two. The genomic PCR primers are currently being used to sample isoform diversity in related right-eyed flounders to test this hypothesis.;Genomic DNA from four starry flounder was Southern blotted and probed with a cDNA of a winter flounder liver AFP. The hybridization signal was consistent with a gene family of approximately 40 copies. Blots of DNA from other starry flounder indicate that California fish have far fewer gene copies whereas Alaska fish have far more. This analysis is complicated by the fact that there are three different type I AFP isoforms. The first is expressed in the liver and secreted into circulation, the second is a larger hyperactive dimer also thought to be expressed in the liver, and the third is expressed in peripheral tissues. To evaluate the contribution of these latter two isoforms to the overall gene signal on Southern blots, hybridization probes for the three isoforms were isolated from starry flounder DNA by genomic cloning. Two clones revealed linkage of genes for different isoforms, and this was confirmed by genomic Southern blotting, where hybridization patterns indicated that the majority of genes were present in tandem repeats.
机译:抗冻蛋白(AFP)通过与新生的冰晶结合并阻止其生长,保护海洋硬骨鱼免于在冰冷的海水中冻结。有人提出鱼类中AFP的基因剂量反映了暴露于严酷冬季气候下的程度。之所以选择这种比目鱼,是因为它生活在从加利福尼亚到北极的太平洋沿岸范围内,因此我们选择了比目鱼Platichthys stellatus。推测该比目鱼产生I型AFP,这是一种富含丙氨酸的两亲性α-螺旋。通过PCR在星空比目鱼基因组中采样了这三种同工型的序列和多样性。衍生自皮肤和肝脏同工型的所有编码序列均与该AFP的拟议结构-功能关系一致,其中螺旋的平坦疏水侧保留用于冰结合。与肝脏同工型相比,皮肤和高活性同工型具有更大的序列多样性,这表明肝脏同工型最近是由其他两种同工型进化而来的。目前,基因组PCR引物被用于在相关的右眼比目鱼中取样同工型多样性,以检验这一假设。Southern印迹并分析了四个比目鱼比目鱼肝AFP的cDNA基因组DNA。杂交信号与大约40个拷贝的基因家族一致。来自其他繁星比目鱼的DNA印迹表明,加州鱼类的基因拷贝要少得多,而阿拉斯加鱼类的基因拷贝要多得多。由于存在三种不同的I型AFP同工型,这一分析变得很复杂。第一个在肝脏中表达并分泌到循环中,第二个是较大的高活性二聚体,也被认为在肝脏中表达,第三个在外周组织中表达。为了评估Southern印迹上后两种同工型对总体基因信号的贡献,通过基因组克隆从繁星比目鱼DNA中分离了这三种同工型的杂交探针。两个克隆揭示了不同同工型的基因连锁,这已通过基因组Southern印迹证实,杂交模式表明大多数基因以串联重复序列存在。

著录项

  • 作者

    Nabeta, Kyra Keiko.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Chemistry Biochemistry.
  • 学位 M.Sc.
  • 年度 2009
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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