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三种矛头蝮蛇蛇毒的肽组学研究:对蛋白质组和肽组分子多样性的深入了解。

Peptidomics of three Bothrops snake venoms: insights into the molecular diversification of proteomes and peptidomes.

机构信息

Laboratório Especial de Toxinologia Aplicada, CAT-cepid, Instituto Butantan, São Paulo, Brazil.

出版信息

Mol Cell Proteomics. 2012 Nov;11(11):1245-62. doi: 10.1074/mcp.M112.019331. Epub 2012 Aug 6.

Abstract

Snake venom proteomes/peptidomes are highly complex and maintenance of their integrity within the gland lumen is crucial for the expression of toxin activities. There has been considerable progress in the field of venom proteomics, however, peptidomics does not progress as fast, because of the lack of comprehensive venom sequence databases for analysis of MS data. Therefore, in many cases venom peptides have to be sequenced manually by MS/MS analysis or Edman degradation. This is critical for rare snake species, as is the case of Bothrops cotiara (BC) and B. fonsecai (BF), which are regarded as near threatened with extinction. In this study we conducted a comprehensive analysis of the venom peptidomes of BC, BF, and B. jararaca (BJ) using a combination of solid-phase extraction and reversed-phase HPLC to fractionate the peptides, followed by nano-liquid chromatography-tandem MS (LC-MS/MS) or direct infusion electrospray ionization-(ESI)-MS/MS or MALDI-MS/MS analyses. We detected marked differences in the venom peptidomes and identified peptides ranging from 7 to 39 residues in length by de novo sequencing. Forty-four unique sequences were manually identified, out of which 30 are new peptides, including 17 bradykinin-potentiating peptides, three poly-histidine-poly-glycine peptides and interestingly, 10 L-amino acid oxidase fragments. Some of the new bradykinin-potentiating peptides display significant bradykinin potentiating activity. Automated database search revealed fragments from several toxins in the peptidomes, mainly from l-amino acid oxidase, and allowed the determination of the peptide bond specificity of proteinases and amino acid occurrences for the P4-P4' sites. We also demonstrate that the venom lyophilization/resolubilization process greatly increases the complexity of the peptidome because of the imbalance caused to the venom proteome and the consequent activity of proteinases on venom components. The use of proteinase inhibitors clearly showed different outcomes in the peptidome characterization and suggested that degradomic-peptidomic analysis of snake venoms is highly sensitive to the conditions of sampling procedures.

摘要

蛇毒蛋白质组/肽组非常复杂,在腺管腔内保持其完整性对于毒素活性的表达至关重要。在毒液蛋白质组学领域已经取得了相当大的进展,然而,由于缺乏全面的毒液序列数据库来分析 MS 数据,肽组学的进展并不快。因此,在许多情况下,毒液肽必须通过 MS/MS 分析或 Edman 降解手动测序。对于稀有蛇种来说,这是至关重要的,比如 Bothrops cotiara(BC)和 B. fonsecai(BF),它们被认为濒临灭绝。在这项研究中,我们使用固相萃取和反相 HPLC 对毒液肽进行了综合分析,对肽进行了分级,然后进行纳升液相色谱-串联 MS(LC-MS/MS)或直接进样电喷雾电离-(ESI)-MS/MS 或 MALDI-MS/MS 分析。我们检测到 BC、BF 和 B. jararaca(BJ)毒液肽组之间存在明显差异,并通过从头测序鉴定出长度为 7 至 39 个残基的肽。通过手动鉴定,共鉴定出 44 个独特序列,其中 30 个是新肽,包括 17 个缓激肽增强肽、3 个多组氨酸-多甘氨酸肽,有趣的是,还有 10 个 L-氨基酸氧化酶片段。一些新的缓激肽增强肽显示出显著的缓激肽增强活性。自动数据库搜索揭示了肽组中的几种毒素的片段,主要来自 L-氨基酸氧化酶,并确定了蛋白酶的肽键特异性和 P4-P4' 位点的氨基酸出现情况。我们还证明,由于毒液蛋白质组的不平衡以及随后对毒液成分的蛋白酶的活性,毒液冻干/复溶过程大大增加了肽组的复杂性。使用蛋白酶抑制剂在肽组学特征分析中明显产生了不同的结果,并表明蛇毒液的降解组-肽组学分析对采样过程的条件非常敏感。

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