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Dealing with the identification of protein species in ancient amphorae

机译:处理古代安瓿中的蛋白质种类

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This manuscript deals with the identification of protein residues in amphorae, including particularly identification of protein species. The work described was performed on fishes, the anchovy (Engraulis encrasicolus) and bonito (Sarda sarda) species frequently found in the Mediterranean area. Based on proteomic techniques, the analytical strategy was adapted to analysis of protein residues from tiny ceramic fragments. The major difficulty was to extract proteins and limit their hydrolysis during the sample preparation; consequently, multiple soft extraction techniques were evaluated. The most valuable results were obtained using a solution containing high amounts of denaturing agents, urea and thiourea, reducing agent, dithiothreitol, and detergent, 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate. The analysis using nano liquid chromatography–nano electrospray ionization double quadrupole time-of-flight mass spectrometry resulted in the identification of up to 200 proteins for the anchovy and bonito species, among which 73 peptides were found to be fish-specific. Because bonito and anchovy species are not documented and fully sequenced in genomic databases, the preliminary protein identification was realized via sequence homology to other fish sequenced species. Amino acid substitutions of peptides were assigned on the basis of the interpretation of tandem mass spectrometry spectra using de novo sequencing; these peptides, not reported up to now in databases, constitute species-specific markers. The method developed was finally applied to an archaeological sample replica impregnated with a mixture of fish tissue from both species; this experiment successfully led to the identification of 17 fish proteins, including 33 fish-specific peptides. This work shows that the analytical method developed has great potential for the identification of protein species in complex archaeological samples.
机译:该手稿涉及安瓿中蛋白质残基的鉴定,特别是蛋白质种类的鉴定。描述的工作是在地中海地区常见的鱼类,the鱼(Engraulis encrasicolus)和鱼(Sarda sarda)物种上进行的。基于蛋白质组学技术,该分析策略适用于分析微小陶瓷碎片中的蛋白质残留。主要困难是在样品制备过程中提取蛋白质并限制其水解。因此,对多种软提取技术进行了评估。使用含有大量变性剂,尿素和硫脲,还原剂,二硫苏糖醇和去污剂3-[((3-胆酰胺基丙基)二甲基氨基] -1-丙烷磺酸盐]的溶液可获得最有价值的结果。使用纳米液相色谱-纳米电喷雾电离双四极杆飞行时间质谱分析可鉴定出多达200种用于proteins鱼和鱼的蛋白质,其中73种肽具有鱼类特异性。由于鱼和an鱼没有记录,没有在基因组数据库中进行完全测序,因此初步的蛋白质鉴定是通过与其他鱼类测序物种的序列同源性实现的。肽的氨基酸取代是根据使用de novo测序的串联质谱图的解释进行分配的;这些尚未在数据库中报道的肽构成了物种特异性标记。最终开发出的方法应用于浸有两种鱼类组织混合物的考古样本复制品。该实验成功鉴定出17种鱼蛋白,包括33种鱼特异性肽。这项工作表明,开发的分析方法在鉴定复杂考古样品中的蛋白质种类方面具有巨大的潜力。

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