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首页> 外文期刊>Journal of proteomics >Cobra venom proteome and glycome determined from individual snakes of Naja atra reveal medically important dynamic range and systematic geographic variation
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Cobra venom proteome and glycome determined from individual snakes of Naja atra reveal medically important dynamic range and systematic geographic variation

机译:根据眼镜蛇毒蛇的蛇毒测定的眼镜蛇毒蛋白质组和糖蛋白揭示了医学上重要的动态范围和系统的地理变异

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Recent progress in snake venomics has shed much light on the intra-species variation among the toxins from different geographical regions and has provided important information for better snakebite management. Most previous reports on snake venomics were based on venoms pooled from different snakes. In this study, we present the proteomic and glycomic profiles of venoms from individual Naja atra snakes. The results reveal wide dynamic range of three-finger toxins. Systematic classification based on cardiotoxin (CTX-) profiles of A2/A4 and A6, respectively, allowed the identification of two putative subspecies of Taiwan cobra from the eastern and western regions. We also identified four major N-glycan moieties on cobra snake venom metalloproteinase on the bi-antennary glycan core. ELISA showed that these glycoproteins (<3%) could elicit much higher antibody response in antiserum when compared to other high-abundance cobra venom toxins such as small molecular weight CTXs (-60%). By removing these high-molecular weight glycoproteins from the immunogen, we demonstrated better protection than that achieved with conventional crude venom immunization in mice challenged by crude venom. We conclude that both intra-species and inter-individual variations of proteomic and glycomic profiles of snake venomics should be considered to provide better antivenomic approach for snakebite management.
机译:蛇病毒学的最新进展为不同地理区域毒素之间的种内变异提供了很多启示,并为更好的蛇咬管理提供了重要信息。以前关于蛇的经济学研究的大多数报道都是基于从不同蛇身上收集的毒液。在这项研究中,我们介绍了来自个别眼镜蛇的毒液的蛋白质组学和糖原学特征。结果表明三指毒素的动态范围很广。通过分别基于A2 / A4和A6的心毒素(CTX-)谱进行系统分类,可以鉴定来自东部和西部地区的台湾眼镜蛇的两个假定亚种。我们还确定了双天线聚糖核心上的眼镜蛇蛇毒金属蛋白酶的四个主要的N-聚糖部分。 ELISA显示,与其他高丰度眼镜蛇毒毒素(例如小分子量CTX)(-60%)相比,这些糖蛋白(<3%)可以在抗血清中引发更高的抗体反应。通过从免疫原中去除这些高分子量糖蛋白,我们证明了在受到粗毒液攻击的小鼠中,其保护作用优于传统的粗毒液免疫。我们得出的结论是,应该考虑蛇病毒经济学的蛋白质组学和糖组学谱的种内和个体间变异,以为蛇咬管理提供更好的抗真菌方法。

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