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Volume 51 Issue 12
Dec.  2024
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Article Contents

HMG-3 contributes to meiotic chromosome maintenance and inhibits reproductive aging in C. elegans

doi: 10.1016/j.jgg.2024.08.005
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This work was supported by Jinan Municipal Health Commission Science and Technology Project (2023-2-13 to F.Z.), the Joint Fund of the Natural Science Foundation of Shandong Province (ZR2022LZL005 to X.L.), and Postdoctoral Innovation Project of Shandong Province (SDCX-ZG-202201001 to X.L.).

  • Received Date: 2024-04-27
    Available Online: 2025-06-05
  • Publish Date: 2024-08-28
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  • 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.
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