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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Diversity and evolution of conotoxins in Conus virgo, Conus eburneus, Conus imperialis and Conus marmoreus from the South China Sea.
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Diversity and evolution of conotoxins in Conus virgo, Conus eburneus, Conus imperialis and Conus marmoreus from the South China Sea.

机译:南中国海的圆锥形处女座,圆锥形中生的,圆锥形中的和圆锥形中的毒素的多样性和进化。

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摘要

The venom peptides of cone snails are encoded by a large gene family, and can selectively bind to voltage-gated ion channels (Na+, K+ and Ca2+ channels) and to membrane receptors (nAChR, 5-HT3R, NMDAR). To identify novel conotoxin genes and analyze the evolution of typical conotoxin superfamily genes from different Conus species, we have constructed cDNA libraries derived from the venom ducts of Conus virgo, Conus eburneus, Conus imperialis and Conus marmoreus, which were collected from the South China Sea. 1312 transcripts from four Conus venom duct cDNA libraries were analyzed and 38.7-49.6% of the transcripts encoded conotoxin sequences. In addition to known conotoxins, 34 novel conotoxins have been identified and can be classified into eleven superfamilies, some of which showed unique patterns of cysteines or different signal peptide sequences. The evolutionary trees of T- and A-superfamily conotoxins were analyzed. Likelihood approaches revealed that T-superfamily conotoxins from the four Conus species undergo positive selection, mostly located in the mature toxin region. These findings contribute to a better understanding of the diversity and evolution of conotoxins from the South China Sea, and some novel conotoxins are valuable for further functional investigations.
机译:锥蜗牛的毒肽由一个大的基因家族编码,并且可以选择性地与电压门控离子通道(Na + ,K + 和Ca 2 + 通道)和膜受体(nAChR,5-HT3R,NMDAR)。为了鉴定新的芋螺毒素基因并分析来自不同锥虫的典型芋螺毒素超家族基因的进化,我们构建了cDNA文库,该文库来自南海的Conus virgo,Conus eburneus,Conus imperialis和Conus marmoreus的毒液管道。 。分析了来自四个Conus毒液导管cDNA文库的1312个转录本,其中38.7-49.6%的转录本编码了芋螺毒素序列。除已知的芋螺毒素外,已鉴定出34种新型芋螺毒素,它们可分为11个超家族,其中一些显示半胱氨酸的独特模式或不同的信号肽序列。分析了T-和A-超家族毒素的进化树。可能性方法表明,来自四个Conus物种的T超家族芋螺毒素正选择,主要位于成熟毒素区域。这些发现有助于更好地了解南海芋螺毒素的多样性和进化,并且一些新型芋螺毒素对于进一步的功能研究非常有价值。

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