Centromere drive and suppression by parallel pathways for recruiting microtubule destabilizers
Kumon, T.; Ma, J.; Stefanik, D.; Nordgren, E. C.; Akins, R. B.; Kim, J.; Levine, M. T.; Lampson, M.
Show abstract
Selfish centromere DNA sequences bias their transmission to the egg in female meiosis. Evolutionary theory suggests that centromere proteins evolve to suppress costs of this "centromere drive". In hybrid mouse models with genetically different maternal and paternal centromeres, selfish centromere DNA exploits a kinetochore pathway to recruit microtubule-destabilizing proteins that act as drive effectors. We show that such functional differences are suppressed by a parallel pathway for effector recruitment by heterochromatin, which is similar between centromeres in this system. Disrupting heterochromatin by CENP-B deletion amplifies functional differences between centromeres, whereas disrupting the kinetochore pathway with a divergent allele of CENP-C reduces the differences. Molecular evolution analyses using newly sequenced Murinae genomes identify adaptive evolution in proteins in both pathways. We propose that centromere proteins have recurrently evolved to minimize the kinetochore pathway, which is exploited by selfish DNA, relative to the heterochromatin pathway that equalizes centromeres, while maintaining essential functions.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Cryo-EM structure of the complete inner kinetochore of the budding yeast point centromere 97%
- Centrioles generate two scaffolds with distinct biophysical properties to build mitotic centrosomes 94%
- An orthologous gene coevolution network provides insight into eukaryotic cellular and genomic structure and function 94%
Similar papers in this journal
- Robust designation of meiotic crossover sites by CDK-2 through phosphorylation of the MutSγ complex 96%
- Structural basis for Rad54- and Hed1-mediated regulation of Rad51 during the transition from mitotic to meiotic recombination 95%
- Ku70 suppresses alternative end-joining in G1-arrested progenitor B cells 95%
Similar papers in this journal
- Poly(ADP-ribose) glycohydrolase promotes formation and homology-directed repair of meiotic DNA double-strand breaks independent of its catalytic activity 96%
- Release of Histone H3K4-reading transcription factors from chromosomes in mitosis is independent of adjacent H3 phosphorylation 96%
- The control of transcriptional memory by stable mitotic bookmarking 95%
"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.