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深度古蛋白组学和微断层扫描显示,Blessed Pauline Jaricot 的心脏遗物无心脏缺陷,也没有任何防腐痕迹。

Deep Paleoproteotyping and Microtomography Revealed No Heart Defect nor Traces of Embalming in the Cardiac Relics of Blessed Pauline Jaricot.

机构信息

Museum of Quai Branly-Jacques Chirac, 222 rue de l'Université, 75007 Paris, France.

Laboratory Anthropology, Archaeology, Biology (LAAB), UFR of Health Sciences (Paris-Saclay University), 2 avenue de la Source de la Bièvre, 78180 Montigny-Le-Bretonneux, France.

出版信息

Int J Mol Sci. 2023 Feb 3;24(3):3011. doi: 10.3390/ijms24033011.

Abstract

Scientific examination of the heart of Blessed Pauline Jaricot-a French missionary figure-was carried out in 2022. As tandem mass spectrometry proteotyping has proven to be valuable to obtain the broad taxonomic repertoire of a given sample without any a priori information, we aimed at exploring the conditions of preservation of the relics and possible conditions of death. Metaproteomics and high-resolution microtomography imaging approaches were combined. A dataset comprising 6731 high-resolution MS/MS spectra was acquired and 968 of these spectra could be assigned to specific peptidic biomolecules. Based on the taxonomical information encompassed by the identified peptide sequences, 5 phyla were identified amongst eukaryota (94% of the biomass): Ascomycota (55%), with the species , and , corresponding to expected cadaverous fungal flora; Chordata (42%), represented by a unique species, ; Streptophyta (3%); and Arthropoda (traces). Bacteria (6% of the biomass) were poorly represented. No trace of embalming substance could be retrieved, nor any pathogens. Imaging evidenced no heart defect nor embalming traces. No evidence that was inconsistent with natural and spontaneous conservation could be retrieved. This study prefigures the power of modern molecular techniques such as paleoproteotyping coupled to microtomography to gain insight into historical relics.

摘要

2022 年对法国传教士Blessed Pauline Jaricot 的心脏进行了科学检查。由于串联质谱蛋白质组学已被证明在没有任何先验信息的情况下获取给定样本的广泛分类群 repertoire 非常有价值,因此我们旨在探索遗物的保存条件和可能的死亡条件。我们将代谢蛋白质组学和高分辨率微断层扫描成像方法结合使用。获得了包含 6731 个高分辨率 MS/MS 光谱的数据组,其中 968 个光谱可以分配给特定的肽生物分子。基于鉴定的肽序列所包含的分类学信息,在真核生物中鉴定出 5 个门(占生物量的 94%):子囊菌门(55%),包括物种 、 和 ,对应于预期的尸体真菌菌群;脊索动物门(42%),由一个独特的物种 代表;木贼门(3%);节肢动物门(微量)。细菌(占生物量的 6%)的代表性较差。未检索到任何防腐剂痕迹,也未发现任何病原体。成像未发现心脏缺陷或防腐痕迹。未发现与自然和自发保存不一致的证据。这项研究预示着现代分子技术(如古蛋白质组学与微断层扫描相结合)的强大功能,可以深入了解历史文物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/312f/9917977/68756ae48a6b/ijms-24-03011-g001.jpg

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