Hashiguchi Y, Lee J M, Shiraishi M, Komatsu S, Miki S, Shimasaki Y, Mochioka N, Kusakabe T, Oshima Y
Department of Biology, Osaka Medical College, Takatsuki, Osaka, Japan.
Laboratory of Silkworm Science, Faculty of Agriculture, Kyushu University, Fukuoka, Japan.
J Evol Biol. 2015 May;28(5):1103-18. doi: 10.1111/jeb.12634. Epub 2015 May 12.
Understanding the evolutionary mechanisms of toxin accumulation in pufferfishes has been long-standing problem in toxicology and evolutionary biology. Pufferfish saxitoxin and tetrodotoxin-binding protein (PSTBP) is involved in the transport and accumulation of tetrodotoxin and is one of the most intriguing proteins related to the toxicity of pufferfishes. PSTBPs are fusion proteins consisting of two tandem repeated tributyltin-binding protein type 2 (TBT-bp2) domains. In this study, we examined the evolutionary dynamics of TBT-bp2 and PSTBP genes to understand the evolution of toxin accumulation in pufferfishes. Database searches and/or PCR-based cDNA cloning in nine pufferfish species (6 toxic and 3 nontoxic) revealed that all species possessed one or more TBT-bp2 genes, but PSTBP genes were found only in 5 toxic species belonging to genus Takifugu. These toxic Takifugu species possessed two or three copies of PSTBP genes. Phylogenetic analysis of TBT-bp2 and PSTBP genes suggested that PSTBPs evolved in the common ancestor of Takifugu species by repeated duplications and fusions of TBT-bp2 genes. In addition, a detailed comparison of Takifugu TBT-bp2 and PSTBP gene sequences detected a signature of positive selection under the pressure of gene conversion. The complicated evolutionary dynamics of TBT-bp2 and PSTBP genes may reflect the diversity of toxicity in pufferfishes.
了解河豚毒素积累的进化机制一直是毒理学和进化生物学中的一个长期问题。河豚河鲀毒素和河豚毒素结合蛋白(PSTBP)参与河豚毒素的运输和积累,是与河豚毒性相关的最引人关注的蛋白质之一。PSTBPs是由两个串联重复的三丁基锡结合蛋白2型(TBT-bp2)结构域组成的融合蛋白。在本研究中,我们研究了TBT-bp2和PSTBP基因的进化动态,以了解河豚毒素积累的进化过程。对9种河豚(6种有毒和3种无毒)进行数据库搜索和/或基于PCR的cDNA克隆,结果显示所有物种都拥有一个或多个TBT-bp2基因,但仅在属于Takifugu属的5种有毒物种中发现了PSTBP基因。这些有毒的Takifugu物种拥有两个或三个PSTBP基因拷贝。对TBT-bp2和PSTBP基因的系统发育分析表明,PSTBPs在Takifugu物种的共同祖先中通过TBT-bp2基因的重复复制和融合而进化。此外,对Takifugu TBT-bp2和PSTBP基因序列的详细比较检测到在基因转换压力下的正选择特征。TBT-bp2和PSTBP基因复杂的进化动态可能反映了河豚毒性的多样性。