Toshio Tsukiyama

Affiliations: 
University of Washington, Seattle, Seattle, WA 
Area:
Molecular Biology, Biochemistry, Cell Biology
Website:
https://sharedresources.fredhutch.org/profile/tsukiyama-toshio
Google:
"Toshio Tsukiyama"
Bio:

https://oh.sciencehistory.org/oral-histories/tsukiyama-toshio

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Publications

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Duan S, Nodelman IM, Zhou H, et al. (2025) H3K56 acetylation regulates chromatin maturation following DNA replication. Nature Communications. 16: 134
Cucinotta C, Dell R, Alavattam K, et al. (2024) Sir2 is required for the quiescence-specific condensed three-dimensional chromatin structure of rDNA. Biorxiv : the Preprint Server For Biology
Greenlaw AC, Alavattam KG, Tsukiyama T. (2023) Post-transcriptional regulation shapes the transcriptome of quiescent budding yeast. Nucleic Acids Research
Breeden LL, Tsukiyama T. (2022) Quiescence in . Annual Review of Genetics. 56: 253-278
Raman P, Rominger MC, Young JM, et al. (2022) Novel classes and evolutionary turnover of histone H2B variants in the mammalian germline. Molecular Biology and Evolution
Swygert SG, Lin D, Portillo-Ledesma S, et al. (2021) Local chromatin fiber folding represses transcription and loop extrusion in quiescent cells. Elife. 10
Cucinotta CE, Dell RH, Braceros KC, et al. (2021) RSC primes the quiescent genome for hypertranscription upon cell cycle re-entry. Elife. 10
Poramba-Liyanage DW, Korthout T, Cucinotta CE, et al. (2020) Inhibition of transcription leads to rewiring of locus-specific chromatin proteomes. Genome Research
Chong SY, Cutler S, Lin JJ, et al. (2020) H3K4 methylation at active genes mitigates transcription-replication conflicts during replication stress. Nature Communications. 11: 809
Swygert SG, Tsukiyama T. (2019) Unraveling quiescence-specific repressive chromatin domains. Current Genetics
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