Evolutionary analysis identifies a Golgi pathway and correlates lineage-specific factors with endomembrane organelle emergence in apicomplexans

Christen M. Klinger, Elena Jimenez-Ruiz, Tobias Mourier, Andreas Klingl, Leandro Lemgruber, Arnab Pain, Joel B. Dacks*, Markus Meissner*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

The organelle paralogy hypothesis (OPH) aims to explain the evolution of non-endosymbiotically derived organelles. It predicts that lineage-specific pathways or organelles should result when identity-encoding membrane-trafficking components duplicate and co-evolve. Here, we investigate the presence of such lineage-specific membrane-trafficking machinery paralogs in Apicomplexa, a globally important parasitic lineage. We are able to identify 18 paralogs of known membrane-trafficking machinery, in several cases co-incident with the presence of new endomembrane organelles in apicomplexans or their parent lineage, the Alveolata. Moreover, focused analysis of the apicomplexan Arf-like small GTPases (i.e., ArlX3) revealed a specific post-Golgi trafficking pathway. This pathway appears involved in delivery of proteins to micronemes and rhoptries, with knockdown demonstrating reduced invasion capacity. Overall, our data have identified an unforeseen post-Golgi trafficking pathway in apicomplexans and are consistent with the OPH mechanism acting to produce endomembrane pathways or organelles at various evolutionary stages across the alveolate lineage.

Original languageEnglish (US)
Article number113740
JournalCell reports
Volume43
Issue number2
DOIs
StatePublished - Feb 27 2024

Bibliographical note

Publisher Copyright:
© 2024 The Authors

Keywords

  • Apicomplexa
  • Arl
  • CP: Cell biology
  • evolution
  • evolutionary cell biology
  • Golgi
  • membrane trafficking
  • molecular evolution
  • phylogenetic screen
  • Toxoplasma
  • Toxoplasma gondii

ASJC Scopus subject areas

  • General Biochemistry, Genetics and Molecular Biology

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