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首页> 外文期刊>Genome Biology and Evolution >Duplicated Myosin V Genes in Teleosts Show Evolutionary Rate Variations among the Motor and Cargo-Binding Domains
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Duplicated Myosin V Genes in Teleosts Show Evolutionary Rate Variations among the Motor and Cargo-Binding Domains

机译:硬骨鱼中的重复肌球蛋白V基因显示出运动和货物结合域之间的进化速率变化。

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We analyzed evolutionary rates of conserved, duplicated myosin V (myo5) genes in nine teleost species to examine the outcomes of duplication events. Syntenic analysis and ancestral chromosome mapping suggest one tandem gene duplication event leading to the appearance of myo5a and myo5c, two rounds of whole genome duplication for vertebrates, and an additional round of whole genome duplication for teleosts account for the presence and location of the myo5 genes and their duplicates in teleosts and other vertebrates and the timing of the duplication events. Phylogenetic analyses reveal a previously unidentified myo5 clade that we refer to now as myo5bb. Analysis using dN/dS rate comparisons revealed large regions within duplicated myo5 genes that are highly conserved. Codons identified in other studies as encoding functionally important portions of the Myo5a and Myo5b proteins are shown to be highly conserved within the newly identified myo5bb clade and in other myo5 duplicates. As much as 30% of 319 codons encoding the cargo-binding domain in the myo5aa genes are conserved in all three codon positions in nine teleost species. For the myo5bb cargo-binding domain, 6.6% of 336 codons have zero substitutions in all nine teleost species. Using molecular evolution assays, we identify the myo5bb branch as being subject to evolutionary rate variation with the cargo-binding domain, having 20% of the sites under positive selection and the motor domain having 8% of its sites under positive selection. The high number of invariant codons coupled with relatively high dN/dS values in the region of the myo5 genes encoding the ATP-binding domain suggests the encoded proteins retain function and may have acquired novel functions associated with changes to the cargo-binding domain.
机译:我们分析了九种硬骨鱼物种中保守的,重复的肌球蛋白V(myo5)基因的进化速率,以检查重复事件的结果。同步分析和祖先染色体定位表明一个串联基因复制事件导致了myo5a和myo5c的出现,脊椎动物进行了两轮全基因组复制,而硬骨鱼又进行了另一轮全基因组复制说明了myo5基因的存在和位置及其在硬骨鱼类和其他脊椎动物中的复制品以及复制事件的时间。系统发育分析揭示了以前未知的myo5进化枝,我们现在将其称为myo5bb。使用dN / dS速率比较的分析显示,重复的myo5基因中的区域较大,高度保守。在其他研究中鉴定为编码Myo5a和Myo5b蛋白功能上重要部分的密码子在新鉴定的myo5bb进化枝和其他myo5复制品中被高度保守。编码myo5aa基因中货物结合结构域的319个密码子中,多达30%在9个硬骨鱼物种的所有三个密码子位置均保守。对于myo5bb货物绑定域,在所有9个硬骨鱼物种中,336个密码子中有6.6%的置换为零。使用分子进化分析,我们确定myo5bb分支受货物绑定结构域的进化速率变化的影响,其中正选择有20%的位点,运动区域正选择有8%的运动位点。在编码ATP结合域的myo5基因区域中,大量的不变密码子与相对较高的dN / dS值相结合,表明编码的蛋白质保留了功能,并且可能已获得了与货物结合域变化相关的新功能。

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