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Updated: Sep 18, 2025

Super-Resolution Microscopy of the Synaptonemal Complex Within the Caenorhabditis elegans Germline
Published on: September 13, 2022
Repeated duplications and losses shaped SMC complex evolution from archaeal ancestors to modern eukaryotes
Jolien J E van Hooff1, Maximilian W D Raas2, Eelco C Tromer3
1Unité d'Ecologie Systématique et Evolution, CNRS, Université Paris-Saclay, AgroParisTech, Site IDEEV 12, Route 128, 91190 Gif-sur-Yvette, France; Laboratory of Microbiology, Wageningen University and Research, Helix (Building 124), Stippeneng 4, 6708WE Wageningen, the Netherlands.
None:
Across life, structural maintenance of chromosomes (SMC) complexes organize chromosomes. While most prokaryotes have one, eukaryotes usually possess four (condensin I, condensin II, cohesin, and SMC5/6), shaping their considerably larger genomes. Although essential, SMC complexes differ among model eukaryotes, suggesting underexplored diversity. Here, we reconstruct eukaryotic SMC complex evolution, revealing that the last eukaryotic common ancestor (LECA) had all four complexes, supporting a sophisticated LECA. Subsequently, condensin II was lost at least 30 times, making it one of the most frequently lost eukaryotic machineries. Moreover, multiple SMC complex components are more ancient and widespread than previously appreciated. Tracing prokaryotic origins, we propose that the SMC complex was already duplicated in the Thaumarchaeota-Aigarchaeota-Crenarchaeota-Korarchaeota (TACK) and Asgard archaeal ancestor, suggesting sophisticated chromosome organization in eukaryotes' archaeal ancestor. Gene duplications further expanded the eukaryotic SMC complex inventory, highlighting their significance in establishing eukaryotic complexity. Altogether, our work suggests major shifts in genome organization throughout eukaryote history.
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