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替代性水通道蛋白2基因(AQP2)的进化:海豚中新蛋白质编码序列的获得。

Evolution of the alternative AQP2 gene: Acquisition of a novel protein-coding sequence in dolphins.

作者信息

Kishida Takushi, Suzuki Miwa, Takayama Asuka

机构信息

Wildlife Research Center, Kyoto University, 2-24 Tanaka Sekiden-cho, Sakyo, Kyoto 606-8203, Japan.

Department of Marine Science and Resources, College of Bioresource Sciences, Nihon University, 1866 Kameino, Fujisawa, Kanagawa 252-0880, Japan.

出版信息

Mol Phylogenet Evol. 2018 Jan;118:54-57. doi: 10.1016/j.ympev.2017.09.012. Epub 2017 Sep 21.

Abstract

Taxon-specific de novo protein-coding sequences are thought to be important for taxon-specific environmental adaptation. A recent study revealed that bottlenose dolphins acquired a novel isoform of aquaporin 2 generated by alternative splicing (alternative AQP2), which helps dolphins to live in hyperosmotic seawater. The AQP2 gene consists of four exons, but the alternative AQP2 gene lacks the fourth exon and instead has a longer third exon that includes the original third exon and a part of the original third intron. Here, we show that the latter half of the third exon of the alternative AQP2 arose from a non-protein-coding sequence. Intact ORF of this de novo sequence is shared not by all cetaceans, but only by delphinoids. However, this sequence is conservative in all modern cetaceans, implying that this de novo sequence potentially plays important roles for marine adaptation in cetaceans.

摘要

特定分类群的从头蛋白质编码序列被认为对特定分类群的环境适应很重要。最近一项研究表明,宽吻海豚获得了一种通过可变剪接产生的水通道蛋白2新亚型(可变AQP2),这有助于海豚生活在高渗海水中。AQP2基因由四个外显子组成,但可变AQP2基因缺少第四个外显子,取而代之的是一个更长的第三个外显子,该外显子包括原来的第三个外显子和原来第三个内含子的一部分。在这里,我们表明可变AQP2第三个外显子的后半部分源自一个非蛋白质编码序列。这个从头序列的完整开放阅读框并非为所有鲸类所共有,而仅为海豚类所共有。然而,该序列在所有现代鲸类中都是保守的,这意味着这个从头序列可能在鲸类的海洋适应中发挥重要作用。

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