Altered assembly paths mitigate interference among paralogous complexes
Protein complexes are fundamental to all cellular processes, so understanding their evolutionary history and assembly processes is important. Gene duplication followed by divergence is considered a primary mechanism for diversifying protein complexes. Nonetheless, to what extent assembly of present-...
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Veröffentlicht in: | Nature communications 2024-08, Vol.15 (1), p.7169-18, Article 7169 |
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Sprache: | eng |
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Zusammenfassung: | Protein complexes are fundamental to all cellular processes, so understanding their evolutionary history and assembly processes is important. Gene duplication followed by divergence is considered a primary mechanism for diversifying protein complexes. Nonetheless, to what extent assembly of present-day paralogous complexes has been constrained by their long evolutionary pathways and how cross-complex interference is avoided remain unanswered questions. Subunits of protein complexes are often stabilized upon complex formation, whereas unincorporated subunits are degraded. How such cooperative stability influences protein complex assembly also remains unclear. Here, we demonstrate that subcomplexes determined by cooperative stabilization interactions serve as building blocks for protein complex assembly. We further develop a protein stability-guided method to compare the assembly processes of paralogous complexes in cellulo. Our findings support that oligomeric state and the structural organization of paralogous complexes can be maintained even if their assembly processes are rearranged. Our results indicate that divergent assembly processes by paralogous complexes not only enable the complexes to evolve new functions, but also reinforce their segregation by establishing incompatibility against deleterious hybrid assemblies.
Understanding assembly processes of protein complexes is crucial. The authors have developed a method to deduce protein complex assembly paths in living cells, revealing that the altered assembly pathways of paralogous complexes enable neo-functionalization and mitigate cross-complex interference. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-024-51286-w |