Berry, J., Weber, S.C., Vaidya, N., Haataja, M., Brangwynne, C.P., 2015. RNA transcription modulates phase transition-driven nuclear body assembly. Proc. Natl. Acad. Sci. U.S.A. 112, E5237-E5245.
|
Broekmans, F.J., Klinkert, E.R., 2004. Female age in ART: when to stop? Gynecol. Obstet. Invest. 58, 225-234.
|
Duncan, F.E., Gerton, J.L., 2018. Mammalian oogenesis and female reproductive aging. Aging (Albany NY) 10, 162-163.
|
Feric, M., Vaidya, N., Harmon, T.S., Mitrea, D.M., Zhu, L., Richardson, T.M., Kriwacki, R.W., Pappu, R.V., Brangwynne, C.P., 2016. Coexisting liquid phases underlie nucleolar subcompartments. Cell 165, 1686-1697.
|
Frost, J.M., Kim, M.Y., Park, G.T., Hsieh, P.H., Nakamura, M., Lin, S.J.H., Yoo, H., Choi, J., Ikeda, Y., Kinoshita, T., et al., 2018. FACT complex is required for DNA demethylation at heterochromatin during reproduction in Arabidopsis. Proc. Natl. Acad. Sci. U.S.A. 115, E4720-E4729.
|
Gruhn, J.R., Zielinska, A.P., Shukla, V., Blanshard, R., Capalbo, A., Cimadomo, D., Nikiforov, D., Chan, A.C., Newnham, L.J., Vogel, I., et al., 2019. Chromosome errors in human eggs shape natural fertility over reproductive life span. Science 365, 1466-1469.
|
Isola, J.V.V., Ocanas, S. R., Hubbart, C.R., Ko, S., Mondal, S.A., Hense, J.D., Carter, H.N.C., Schneider, A., Kovats, S., Alberola-Ila, J., et al., 2024. A single-cell atlas of the aging mouse ovary. Nat. Aging 4, 145-162.
|
Jumper, J., Evans, R., Pritzel, A., Green, T., Figurnov, M., Ronneberger, O., Tunyasuvunakool, K., Bates, R., Zidek, A., Potapenko, A., et al., 2021. Highly accurate protein structure prediction with AlphaFold. Nature 596, 583-589.
|
Koltowska, K., Apitz, H., Stamataki, D., Hirst, E.M., Verkade, H., Salecker, I., Ober, E.A., 2013. Ssrp1a controls organogenesis by promoting cell cycle progression and RNA synthesis. Development 140, 1912-1918.
|
Kolundzic, E., Ofenbauer, A., Bulut, S.I., Uyar, B., Baytek, G., Sommermeier, A., Seelk, S., He, M., Hirsekorn, A., Vucicevic, D., et al., 2018. FACT Sets a barrier for cell fate reprogramming in Caenorhabditis elegans and human cells. Dev. Cell 46, 611-626.
|
Orphanides, G., Wu, W.H., Lane, W.S., Hampsey, M., Reinberg, D., 1999. The chromatin-specific transcription elongation factor FACT comprises human SPT16 and SSRP1 proteins. Nature 400, 284-288.
|
Suggs, B.Z., Latham, A.L., Dawes, A. T., Chamberlin, H.M., 2018. FACT complex gene duplicates exhibit redundant and non-redundant functions in C. elegans. Dev. Biol. 444, 71-82.
|
Tasnin, M.S., Kay, B.J., Peek, T., Merkel, K., Clarke, A.R., 2021. Age-related changes in the reproductive potential of the Queensland fruit fly. J. Insect Physiol. 131, 104245.
|
Toraason, E., Adler, V.L., Libuda, D.E., 2022. Aging and sperm signals alter DNA break formation and repair in the C. elegans germline. PLoS Genet. 18, e1010282.
|
Wang, J., Choi, J.M., Holehouse, A.S., Lee, H.O., Zhang, X., Jahnel, M., Maharana, S., Lemaitre, R., Pozniakovsky, A., Drechsel, D., et al., 2018. A molecular grammar governing the driving forces for phase separation of Prion-like RNA binding proteins. Cell 174, 688-699.
|
Wang, P., Fan, N., Yang, W., Cao, P., Liu, G., Zhao, Q., Guo, P., Li, X., Lin, X., Jiang, N., et al., 2024a. Transcriptional regulation of FACT involves coordination of chromatin accessibility and CTCF binding. J. Biol. Chem. 300, 105538.
|
Wang, R., Li, J., Tian, Y., Sun, Y., Zhang, Y., Liu, M., Zhang, R., Zhao, L., Li, Q., Meng, X., et al., 2024b. The dynamic recruitment of LAB proteins senses meiotic chromosome axis differentiation in C. elegans. J. Cell Biol. 223, e202212035.
|
Yang, Y., Wang, N., Liu, G., Nan, W., Wang, B., Gartner, A., Zhang, H.,Hong, Y., 2024. COSA-1 mediated pro-crossover complex formation promotes meiotic crossing over in C. elegans. Nucleic Acids Res. 52, 4375-4392.
|
Yuan, L., Li, P., Jing, H., Zheng, Q., Xiao, H., 2022. trim-21 promotes proteasomal degradation of CED-1 for apoptotic cell clearance in C. elegans. Elife 11, e76436.
|
Zhang, Z., Xie, S., Wang, R., Guo, S., Zhao, Q., Nie, H., Liu, Y., Zhang, F., Chen, M., Liu, L., et al., 2020. Multivalent weak interactions between assembly units drive synaptonemal complex formation. J. Cell Biol. 219, e201910086.
|