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古代牙齿中成熟釉质蛋白的恢复与鉴定。

Recovery and identification of mature enamel proteins in ancient teeth.

作者信息

Porto Isabel M, Laure Helen J, Tykot Robert H, de Sousa Frederico B, Rosa Jose C, Gerlach Raquel F

机构信息

Department of Morphology, Dental School of Piracicaba, State University of Campinas, FOP/UNICAMP, Piracicaba, São Paulo, Brazil.

出版信息

Eur J Oral Sci. 2011 Dec;119 Suppl 1:83-7. doi: 10.1111/j.1600-0722.2011.00885.x.

Abstract

Proteins in mineralized tissues provide a window to the past, and dental enamel is peculiar in being highly resistant to diagenesis and providing information on a very narrow window of time, such as the developing period; however, to date, complete proteins have not been extracted successfully from ancient teeth. In this work we tested the ability of a whole-crown micro-etch technique to obtain enamel protein samples from mature enamel of recently extracted (n = 2) and ancient (n = 2; ad 800 to 1100) third molars. Samples were analyzed using matrix-assisted laser desorption/ionization time-of-flight/time-of-flight (MALDI-TOF/TOF) mass spectrometry, and the resulting spectra were searched against the Swiss-Prot protein database using the Mascot software for protein identification. In our protocol, the separation of proteins in gel is not necessary. Successful identification of specific enamel proteins was obtained after whole-crown superficial enamel etching with 10% HCl. Most protein fragments recovered from dry teeth and mummy teeth contained amino-terminal amelogenin peptides. Only one peptide specific for the amelogenin X-isoform was identified. In conclusion, the reported techniques allowed the successful recovery of proteins specific to dental enamel from samples obtained in a very conservative manner, which may also be important in forensic and/or archeological science.

摘要

矿化组织中的蛋白质为了解过去提供了一扇窗口,而牙釉质的独特之处在于它对成岩作用具有高度抗性,并能提供关于非常狭窄时间段(如发育时期)的信息;然而,迄今为止,尚未成功从古代牙齿中提取出完整的蛋白质。在这项工作中,我们测试了全冠微蚀刻技术从近期拔除的(n = 2)和古代的(n = 2;公元800年至1100年)第三磨牙的成熟牙釉质中获取牙釉质蛋白质样本的能力。使用基质辅助激光解吸/电离飞行时间/飞行时间(MALDI-TOF/TOF)质谱对样本进行分析,并使用Mascot软件在Swiss-Prot蛋白质数据库中搜索所得光谱以进行蛋白质鉴定。在我们的方案中,无需在凝胶中分离蛋白质。用10%盐酸对全冠表面牙釉质进行蚀刻后,成功鉴定出了特定的牙釉质蛋白质。从干牙和木乃伊牙齿中回收的大多数蛋白质片段都含有氨基末端釉原蛋白肽。仅鉴定出一种特定于釉原蛋白X异构体的肽。总之,所报道的技术能够以非常保守的方式从样本中成功回收牙釉质特有的蛋白质,这在法医学和/或考古学中可能也很重要。

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