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蛋白质组学策略在绘画中鉴定蛋白质结合物的应用。

Proteomic strategies for the identification of proteinaceous binders in paintings.

机构信息

Dipartimento di Chimica Organica e Biochimica, Università di Napoli Federico II, 80126 Naples, Italy.

出版信息

Anal Bioanal Chem. 2009 Dec;395(7):2269-80. doi: 10.1007/s00216-009-3185-y. Epub 2009 Oct 6.

Abstract

The identification of proteinaceous components in paintings remains a challenging task for several reasons. In addition to the minute amount of sample available, complex and variable chemical composition of the paints themselves, possible simultaneous presence of several binders and contaminants, and degradation of the original materials due to aging and pollution are complicating factors. We proposed proteomic strategies for the identification of proteins in binders of paintings that can be adapted to overcome the requirements and difficulties presented by specific samples. In particular, we worked on (1) the development of a minimally invasive method based on the direct tryptic cleavage of the sample without protein extraction; (2) the use of microwave to enhance the enzymatic digestion yield, followed by the analysis of the peptide mixtures by nanoLC-MS/MS with electrospray ionization (ESI). Moreover, as an additional tool to tackle the problem of contaminating proteins, we exploited the possibility of generating an exclusion list of the mass signals that in a first run had been fragmented and that the mass spectrometer had to ignore for fragmentation in a subsequent run. The methods, tested on model samples, allowed the identification of milk proteins in a sample from paintings attributed to Cimabue and Giotto, thirteenth-century Italian masters, decorating the vaults of the upper church in the Basilica of St. Francis in Assisi, Italy.

摘要

鉴定画作中的蛋白质成分仍然是一项具有挑战性的任务,原因有几个。除了可用样本量极小之外,涂料本身的复杂多变的化学成分、可能同时存在几种粘合剂和污染物,以及由于老化和污染导致原始材料降解,这些都是复杂的因素。我们提出了用于鉴定画作中粘合剂中蛋白质的蛋白质组学策略,可以适应特定样品提出的要求和困难。特别是,我们致力于:(1) 开发一种基于直接胰蛋白酶切割样品而无需蛋白质提取的微创方法;(2) 使用微波增强酶解产率,然后通过纳升液相色谱-串联质谱联用仪(ESI)分析肽混合物。此外,作为解决污染蛋白质问题的附加工具,我们利用生成质量信号排除列表的可能性,在第一次运行中对这些质量信号进行了碎片化,而质谱仪在随后的运行中必须忽略这些信号的碎片化。这些方法在模型样品上进行了测试,能够鉴定出意大利十三世纪大师契马布埃和乔托装饰于意大利阿西西圣方济各圣殿上教堂拱顶的一幅画作样本中的牛奶蛋白。

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