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响尾蛇蛇毒蛋白成分的荟萃分析。

A Meta-Analysis of the Protein Components in Rattlesnake Venom.

机构信息

Division of Biology, University of Tennessee, Knoxville, TN 37996, USA.

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR 72701, USA.

出版信息

Toxins (Basel). 2021 May 23;13(6):372. doi: 10.3390/toxins13060372.

Abstract

The specificity and potency of venom components give them a unique advantage in developing various pharmaceutical drugs. Though venom is a cocktail of proteins, rarely are the synergy and association between various venom components studied. Understanding the relationship between various components of venom is critical in medical research. Using meta-analysis, we observed underlying patterns and associations in the appearance of the toxin families. For , Dis has the most associations with the following toxins: PDE; BPP; CRL; CRiSP; LAAO; SVMP P-I and LAAO; SVMP P-III and LAAO. In venom, CTL and NGF have the most associations. These associations can predict the presence of proteins in novel venom and understand synergies between venom components for enhanced bioactivity. Using this approach, the need to revisit the classification of proteins as major components or minor components is highlighted. The revised classification of venom components is based on ubiquity, bioactivity, the number of associations, and synergies. The revised classification can be expected to trigger increased research on venom components, such as NGF, which have high biomedical significance. Using hierarchical clustering, we observed that the genera's venom compositions were similar, based on functional characteristics rather than phylogenetic relationships.

摘要

毒液成分的特异性和效价使它们在开发各种药物方面具有独特的优势。尽管毒液是蛋白质的混合物,但很少研究各种毒液成分之间的协同作用和关联。了解毒液中各种成分之间的关系对医学研究至关重要。通过荟萃分析,我们观察到毒素家族出现的潜在模式和关联。例如,Dis 与以下毒素的关联最多:PDE;BPP;CRL;CRiSP;LAAO;SVMP P-I 和 LAAO;SVMP P-III 和 LAAO。在 Centruroides 毒液中,CTL 和 NGF 的关联最多。这些关联可以预测新型毒液中蛋白质的存在,并了解毒液成分之间的协同作用,以提高生物活性。通过这种方法,突出了重新审视蛋白质作为主要成分或次要成分分类的必要性。基于普遍性、生物活性、关联数量和协同作用,对毒液成分进行了修订分类。预计修订后的分类将引发对具有高生物医学意义的 NGF 等毒液成分的更多研究。通过层次聚类,我们观察到基于功能特征而不是系统发育关系,属的毒液组成相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d901/8224588/9bf3f45d7d58/toxins-13-00372-g001.jpg

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