bioRxiv
A conserved BAH module within mammalian BAHD1 connects H3K27me3 to Polycomb gene silencing
Publication
, Preprint
Fan, H; Guo, Y; Tsai, Y-H; Storey, A; Kim, A; Gong, W; Edmondson, R; Mackintosh, S; Li, H; Byrum, S; Tackett, A; Cai, L; Wang, GG
2021
Duke Scholars
Citation
APA
Chicago
ICMJE
MLA
NLM
Fan, H., Guo, Y., Tsai, Y.-H., Storey, A., Kim, A., Gong, W., … Wang, G. G. (2021). A conserved BAH module within mammalian BAHD1 connects H3K27me3 to Polycomb gene silencing. bioRxiv. https://doi.org/10.1101/2021.03.11.435004
Fan, Huitao, Yiran Guo, Yi-Hsuan Tsai, Aaron Storey, Arum Kim, Weida Gong, Ricky Edmondson, et al. “A conserved BAH module within mammalian BAHD1 connects H3K27me3 to Polycomb gene silencing.” BioRxiv, 2021. https://doi.org/10.1101/2021.03.11.435004.
Fan H, Guo Y, Tsai Y-H, Storey A, Kim A, Gong W, et al. A conserved BAH module within mammalian BAHD1 connects H3K27me3 to Polycomb gene silencing. bioRxiv. 2021.
Fan, Huitao, et al. “A conserved BAH module within mammalian BAHD1 connects H3K27me3 to Polycomb gene silencing.” BioRxiv, 2021. Epmc, doi:10.1101/2021.03.11.435004.
Fan H, Guo Y, Tsai Y-H, Storey A, Kim A, Gong W, Edmondson R, Mackintosh S, Li H, Byrum S, Tackett A, Cai L, Wang GG. A conserved BAH module within mammalian BAHD1 connects H3K27me3 to Polycomb gene silencing. bioRxiv. 2021.