2025/04/23 by Zandra Fagernäs, Viridiana Villa-Islas, Gaudry Troché +6 · 1 voice · 2 citations
Social Sciences · Arts and Humanities · Biochemistry, Genetics and Molecular Biology · #Pleistocene-Era Hominins and Archaeology #Forensic Anthropology and Bioarchaeology Studies #Yersinia bacterium, plague, ectoparasites research
paper · doi:10.1016/j.jas.2025.106228
The study of ancient proteins preserved in a range of archaeological, cultural heritage, and palaeontological materials is increasingly contributing to our understanding of human evolution and archaeological research questions. Many of the specimens studied have been excavated and stored for a significant duration prior to their proteomic analysis. Human handling and storage environments therefore provide ample opportunities for protein contamination onto and into specimens of interest to palaeoproteomic studies. As such, modern protein contamination limits access to endogenous proteomes. Here, we compare five approaches of bone protein decontamination applied to a Pleistocene Equus sp. bone fragment contaminated with a modern dog proteome. We find that all tested methods reduce the protein contamination, but with different efficiencies. We find that a brief bleach wash is the most effective approach in removing modern protein contamination, and that no additional damage is caused to the endogenous proteome by this treatment. Next, we apply this approach to a hominin tooth found at Khudji, a Late Pleistocene archaeological site in Tajikistan. We demonstrate that a brief bleach wash removes almost all human skin protein contamination while retaining the endogenous hominin dentine proteome. Subsequent phylogenetic analysis of the Khudji dentine proteome allowed determination that the specimen likely represents a Neanderthal, extending the fossil evidence for Neanderthals in Central Asia. • Protein decontamination methods are compared on an artificially contaminated Pleistocene bone. • Contamination alters the reconstructed proteome, even when not included in the analysis. • A brief bleach wash removes protein contamination without impacting the endogenous proteome. • Bleaching is applied to a hominin tooth with protein contamination from Tajikistan. • Identification of the tooth adds to the knowledge of Neanderthals in Central Asia.