The dental proteome of Homo antecessor

peer-reviewed · Nature · 2020

peer-reviewed · Nature · 2020. Frido Welker et al. The phylogenetic relationships between hominins of the Early Pleistocene epoch in Eurasia, such as Homo…
Date 2020-04-01
Type peer-reviewed
Venue Nature
Publisher Springer Science and Business Media LLC
Contribution downstream-application
DOI 10.1038/s41586-020-2153-8
Citations (OpenAlex) 172
Venue 2-year citedness 17.18

Abstract

The phylogenetic relationships between hominins of the Early Pleistocene epoch in Eurasia, such as Homo antecessor, and hominins that appear later in the fossil record during the Middle Pleistocene epoch, such as Homo sapiens, are highly debated1–5. For the oldest remains, the molecular study of these relationships is hindered by the degradation of ancient DNA. However, recent research has demonstrated that the analysis of ancient proteins can address this challenge6–8. Here we present the dental enamel proteomes of H. antecessor from Atapuerca (Spain)9,10 and Homo erectus from Dmanisi (Georgia)1, two key fossil assemblages that have a central role in models of Pleistocene hominin morphology, dispersal and divergence. We provide evidence that H. antecessor is a close sister lineage to subsequent Middle and Late Pleistocene hominins, including modern humans, Neanderthals and Denisovans. This placement implies that the modern-like face of H. antecessor—that is, similar to that of modern humans—may have a considerably deep ancestry in the genus Homo, and that the cranial morphology of Neanderthals represents a derived form. By recovering AMELY-specific peptide sequences, we also conclude that the H. antecessor molar fragment from Atapuerca that we analysed belonged to a male individual. Finally, these H. antecessor and H. erectus fossils preserve evidence of enamel proteome phosphorylation and proteolytic digestion that occurred in vivo during tooth formation. Our results provide important insights into the evolutionary relationships between H. antecessor and other hominin groups, and pave the way for future studies using enamel proteomes to investigate hominin biology across the existence of the genus Homo. Analyses of the proteomes of dental enamel from Homo antecessor and Homo erectus demonstrate that the Early Pleistocene H. antecessor is a close sister lineage of later Homo sapiens, Neanderthal and Denisovan populations in Eurasia.

Authors

  1. Frido Welker · Max Planck Institute for Evolutionary Anthropology, University of Copenhagen
  2. Jazmín Ramos-Madrigal · University of Copenhagen
  3. Petra Gutenbrunner · Ludwig-Maximilians-Universität München, Max Planck Institute of Biochemistry
  4. Meaghan Mackie · University of Copenhagen
  5. Shivani Tiwary · Max Planck Institute of Biochemistry
  6. Rosa Rakownikow Jersie-Christensen · University of Copenhagen
  7. Cristina Chiva · Barcelona Institute of Science and Technology, University Pompeu Fabra
  8. Marc R. Dickinson · University of York
  9. Martin Kuhlwilm · Universitat Pompeu Fabra, University Pompeu Fabra
  10. Marc de Manuel · Universitat Pompeu Fabra, University Pompeu Fabra
  11. Pere Gelabert · University Pompeu Fabra
  12. María Martinón-Torres · Centro Nacional de Investigación sobre la Evolución Humana (CENIEH), University College London
  13. Ann Margvelashvili · Georgian National Museum
  14. Juan Luis Arsuaga · Universidad Complutense de Madrid
  15. Eudald Carbonell · Universidad Rovira i Virgili, Universitat Rovira i Virgili
  16. Tomas Marques-Bonet · Barcelona Institute of Science and Technology, Institució Catalana de Recerca i Estudis Avançats (ICREA), Universitat Autònoma de Barcelona, Universitat Pompeu Fabra, University Pompeu Fabra
  17. Kirsty Penkman · University of York
  18. Eduard Sabidó · Barcelona Institute of Science and Technology, University Pompeu Fabra
  19. Jürgen Cox · Max Planck Institute of Biochemistry, University of Bergen
  20. Jesper V. Olsen · University of Copenhagen
  21. David Lordkipanidze · Georgian National Museum, Tbilisi State University
  22. Fernando Racimo · University of Copenhagen
  23. Carles Lalueza-Fox · Universitat Pompeu Fabra, University Pompeu Fabra
  24. José María Bermúdez de Castro · Centro Nacional de Investigación sobre la Evolución Humana (CENIEH), University College London
  25. Eske Willerslev · University of Cambridge, University of Copenhagen, University of Southern Denmark, Wellcome Trust Sanger Institute
  26. Enrico Cappellini · University of Copenhagen

Methods and tools

  • Homo antecessor enamel proteome: Palaeoproteomic de novo + tag-search workflow that recovers enamel proteome from a ~800,000-year-old Homo antecessor tooth and uses the resulting sequences to place the lineage on the hominin tree.

Cites (4)

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