Robert G. Roeder
Affiliations: | 1971-1982 | Washington University School of Medicine, St. Louis, MO, United States | |
1982- | Rockefeller University, New York, NY, United States |
Area:
Molecular BiologyWebsite:
https://www.rockefeller.edu/our-scientists/heads-of-laboratories/895-robert-g-roeder/Google:
""Robert G. Roeder Rockefeller""Bio:
http://www.nasonline.org/member-directory/members/8908.html
https://lab.rockefeller.edu/roeder/
Mean distance: 8.61 (cluster 17) | S | N | B | C | P |
Cross-listing: Cell Biology Tree - DevTree
Parents
Sign in to add mentorWilliam J. Rutter | grad student | 1969 | University of Washington |
Donald D. Brown | post-doc | 1969-1971 | Carnegie Institution of Washington |
Children
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Publications
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Crump NT, Smith AL, Godfrey L, et al. (2023) MLL-AF4 cooperates with PAF1 and FACT to drive high-density enhancer interactions in leukemia. Nature Communications. 14: 5208 |
Perlee S, Kikuchi S, Nakadai T, et al. (2023) SETD1A function in leukemia is mediated through interaction with mitotic regulators BuGZ/BUB3. Embo Reports. e57108 |
Malik S, Roeder RG. (2023) Regulation of the RNA polymerase II pre-initiation complex by its associated coactivators. Nature Reviews. Genetics |
Liu N, Konuma T, Sharma R, et al. (2023) Histone H3 lysine 27 crotonylation mediates gene transcriptional repression in chromatin. Molecular Cell |
Nakadai T, Shimada M, Ito K, et al. (2023) Two target gene activation pathways for orphan ERR nuclear receptors. Cell Research. 33: 165-183 |
Lyons H, Veettil RT, Pradhan P, et al. (2022) Functional partitioning of transcriptional regulators by patterned charge blocks. Cell |
Sun J, Li X, Hou X, et al. (2022) Structural basis of human SNAPc recognizing proximal sequence element of snRNA promoter. Nature Communications. 13: 6871 |
Chen Q, Cevher MA, Jiang Q, et al. (2022) LYL1 facilitates AETFC assembly and gene activation by recruiting CARM1 in t(8;21) AML. Proceedings of the National Academy of Sciences of the United States of America. 119: e2213718119 |
Zhang YF, Wang XL, Xu CH, et al. (2022) A direct comparison between AML1-ETO and ETO2-GLIS2 leukemia fusion proteins reveals context-dependent binding and regulation of target genes and opposite functions in cell differentiation. Frontiers in Cell and Developmental Biology. 10: 992714 |
Chen Z, Ye Z, Soccio RE, et al. (2022) Phosphorylated MED1 links transcription recycling and cancer growth. Nucleic Acids Research |