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首页> 外文期刊>Journal of proteome research >Comprehensive Study of the Proteome and Transcriptome of the Venom of the Most Venomous European Viper: Discovery of a New Subclass of Ancestral Snake Venom Metalloproteinase Precursor-Derived Proteins
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Comprehensive Study of the Proteome and Transcriptome of the Venom of the Most Venomous European Viper: Discovery of a New Subclass of Ancestral Snake Venom Metalloproteinase Precursor-Derived Proteins

机译:最有毒欧洲毒蛇毒液的蛋白质组和转录组综合研究:发现祖先蛇毒液金属蛋白酶前体衍生蛋白的新亚类

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The nose-horned viper, its nominotypical subspecies Vipera ammodytes ammodytes (Vaa), in particular, is, medically, one of the most relevant snakes in Europe. The local and systemic clinical manifestations of poisoning by the venom of this snake are the result of the pathophysiological effects inflicted by enzymatic and nonenzymatic venom components acting, most prominently, on the blood, cardiovascular, and nerve systems. This venom is a very complex mixture of pharmacologically active proteins and peptides. To help improve the current antivenom therapy toward higher specificity and efficiency and to assist drug discovery, we have constructed, by combining transcriptomic and proteomic analyses, the most comprehensive library yet of the Vaa venom proteins and peptides. Sequence analysis of the venom gland cDNA library has revealed the presence of messages encoding 12 types of polypeptide precursors. The most abundant are those for metalloproteinase inhibitors (MPis), bradykinin-potentiating peptides (BPPs), and natriuretic peptides (NPs) (all three on a single precursor), snake C-type lectin-like proteins (snaclecs), serine proteases (SVSPs), P-II and P-III metalloproteinases (SVMPs), secreted phospholipases A(2) (sPLA(2)s), and disintegrins (Dis). These constitute >88% of the venom transcriptome. At the protein level, 57 venom proteins belonging to 16 different protein families have been identified and, with SVSPs, sPLA(2)s, snaclecs, and SVMPs, comprise similar to 80% of all venom proteins. Peptides detected in the venom include NPs, BPPs, and inhibitors of SVSPs and SVMPs. Of particular interest, a transcript coding for a protein similar to P-III SVMPs but lacking the MP domain was also found at the protein level in the venom. The existence of such proteins, also supported by finding similar venom gland transcripts in related snake species, has been demonstrated for the first time, justifying the proposal of a new P-IIIe subclass of ancestral SVMP precursor-deriv
机译:鼻角毒蛇,其提名型亚种Vipera vipera ammodytes ammodytes(vaa),特别是医学上是欧洲最相关的蛇之一。这种蛇的毒液中毒的局部和全身临床表现是酶促和非酶毒液成分的病理生理学效应,最突出地在血液,心血管和神经系统上作用。该毒液是药理学活性蛋白质和肽的非常复杂的混合物。为了通过组合转录组和蛋白质组学分析,改善目前的抗动子治疗更高的特异性和效率,并协助药物发现,我们构建了VAA毒液蛋白和肽的最全面的图书馆。毒腺CDNA文库的序列分析表明,存在编码12种多肽前体的消息。最丰富的是金属蛋白酶抑制剂(MPI),BradykinIn - 增强肽(BPP)和Natriuretic肽(NPS)(所有三个在单个前体上),Snake C型凝集素样蛋白(SnaClecs),丝氨酸蛋白酶( SVSPS),P-II和P-III金属蛋白酶(SVMPS),分泌的磷脂酶A(2)(SPLA(2))和解丁氨酸(DIS)。这些构成> 88%的毒液转录组。在蛋白质水平中,已经鉴定了属于16种不同蛋白质家族的57个毒液蛋白质,并且用SVSP,SPLA(2)S,SNACLEC和SVMPS,包括类似于所有毒液蛋白的80%。在毒液中检测到的肽包括NPS,BPP和SVSP和SVMP的抑制剂。特别感兴趣的是,在毒液中的蛋白质水平,也发现了类似于P-III SVMPS但缺乏MP结构域的蛋白质的转录物编码。通过在相关蛇物种中寻找类似的毒性腺体转录物,也支持这种蛋白质的存在,这是首次证明的,证明了祖先SVMP前体 - 德国的新P-IIIE子类的提议

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