Co-evolution of Eukaryotic-like Vps4 and ESCRT-III Subunits in the Asgard Archaea
Lu, Z.; Fu, T.; Li, T.; Liu, Y.; Zhang, S.; Li, J.; Dai, J.; Koonin, E. V.; Li, G.; Chu, H.; Li, M.
Show abstract
The emergence of the endomembrane system is a key step in the evolution of cellular complexity during eukaryogenesis. The Endosomal Sorting Complex Required for Transport (ESCRT) machinery is essential and required for the endomembrane system functions in eukaryotic cells. Recently, genes encoding eukaryote-like ESCRT protein components have been identified in the genomes of Asgard archaea, a newly proposed archaeal superphylum that is thought to include the closest extant prokaryotic relatives of eukaryotes. However, structural and functional features of Asgard ESCRT remain uncharacterized. Here we show that Vps4, Vps2/24/46, and Vps20/32/60, the core functional components of the Asgard ESCRT, co-evolved eukaryote-like structural and functional features. Phylogenetic analysis shows that Asgard Vps4, Vps2/24/46, and Vps20/32/60 are closely related to their eukaryotic counterparts. Molecular dynamic simulation and biochemical assays indicate that Asgard Vps4 contains a eukaryote-like Microtubule Interacting and Transport (MIT) domain that binds the distinct type-1 MIT Interacting Motif and type-2 MIT Interacting Motif in Vps2/24/46, and Vps20/32/60, respectively. The Asgard Vps4 partly, but much more efficiently than homologs from other archaea, complements the vps4 null mutant of Saccharomyces cerevisiae, further supporting the functional similarity between the membrane remodeling machineries of Asgard archaea and eukaryotes. Thus, this work provides evidence that the ESCRT complexes from Asgard archaea and eukaryotes are evolutionarily related and functionally similar. Thus, despite the apparent absence of endomembranes in Asgard archaea, the eukaryotic ESCRT seems to have been directly inherited from an Asgard ancestor, to become a key component of the emerging endomembrane system. IMPORTANCEThe discovery of Asgard archaea has changed the exiting ideas on the origins of Eukaryotes. Researchers propose that eukaryotic cells evolve from Asgard archaea. This hypothesis partly stems from the presence of multiple eukaryotic signature proteins in Asgard archaea, including homologues of ESCRT proteins that are essential components of the endomembrane system in eukaryotes. However, structural and functional features of Asgard ESCRT remain unknown. Our study provides evidence that Asgard ESCRT is functionally comparable to the eukaryotic counterparts suggesting that, despite the apparent absence of endomembranes in archaea, eukaryotic ESCRT was inherited from an Asgard archaeal ancestor, alongside the emergence of endomembrane system during eukaryogenesis.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Common scab disease: structural basis of elicitor recognition in pathogenic Streptomyces species 94%
- Conserved GYXLI motif of FlhA is involved in dynamic domain motions of FlhA required for flagellar protein export 94%
- Transcriptome analysis of protein kinase MoCK2 affect acetyl-CoA metabolism and import of CK2 interacting mitochondrial proteins into mitochondria in rice blast fungus Magnaporthe oryzae 93%
Similar papers in this journal
Similar papers in this journal
- A TPR scaffold couples signal detection to OdhI phosphorylation in metabolic control by the protein kinase PknG 94%
- Histidine-Triad Hydrolases Provide Resistance to Peptide-Nucleotide Antibiotics 94%
- Structural characterization of the essential cell division protein FtsE and its interaction with FtsX in Streptococcus pneumoniae 94%
Similar papers in this journal
- Characterization of a glycolipid glycosyltransferase with broad substrate specificity from the marine bacterium Candidatus Pelagibacter sp. HTCC7211 95%
- Bacterial catabolic system of acetovanillone and acetosyringone useful for upgrading aromatic compounds obtained through chemical lignin depolymerization 94%
- Identification of Six Thiolases and their Effects on Fatty Acid and Ergosterol Biosynthesis in Aspergillus oryzae 93%
Similar papers in this journal
- The archaeal triphosphate tunnel metalloenzyme SaTTM defines structural determinants for the diverse activities in the CYTH protein family 94%
- YhcB (DUF1043), a novel cell division protein conserved across gamma-proteobacteria 94%
- Structural basis for phosphatidylcholine synthesis by bacterial phospholipid N-methyltransferases 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.