Epigenetic, genetic and maternal effects enable stable centromere inheritance
Author:
Funder
U.S. Department of Health & Human Services | National Institutes of Health
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology
Link
https://www.nature.com/articles/s41556-022-00897-w.pdf
Reference58 articles.
1. Kixmoeller, K., Allu, P. K. & Black, B. E. The centromere comes into focus: from CENP-A nucleosomes to kinetochore connections with the spindle. Open Biol. 10, 200051 (2020).
2. Dumont, M. & Fachinetti, D. DNA sequences in centromere formation and function. Prog. Mol. Subcell. Biol. 56, 305–336 (2017).
3. Chmátal, L., Schultz, R. M., Black, B. E. & Lampson, M. A. Cell biology of cheating-transmission of centromeres and other selfish elements through asymmetric meiosis. Prog. Mol. Subcell. Biol. 56, 377–396 (2017).
4. Iwata-Otsubo, A. et al. Expanded satellite repeats amplify a discrete CENP-A nucleosome assembly site on chromosomes that drive in female meiosis. Curr. Biol. 27, 2365–2373.e8 (2017).
5. Akera, T., Trimm, E. & Lampson, M. A. Molecular strategies of meiotic cheating by selfish centromeres. Cell 178, 1132–1144 (2019).
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