David Pellman
Affiliations: | Dana-Farber Cancer Institute Harvard Medical School |
Area:
Cell CycleWebsite:
http://research4.dfci.harvard.edu/pellmanlab/index.phpGoogle:
"David Pellman"Cross-listing: Chemistry Tree
Parents
Sign in to add mentorHidesaburo Hanafusa | grad student | 1986 | Rockefeller (FlyTree) |
Gerald R. Fink | post-doc | 1988-1994 | MIT (Evolution Tree) |
Children
Sign in to add traineeCatherine Gallori | research assistant | (Neurotree) | |
Pedro Carvalho | grad student | Dana-Farber Cancer Institute Harvard Medical School | |
Satoshi Yoshida | post-doc | Dana-Farber Cancer Institute Harvard Medical School |
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Publications
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Umbreit NT, Zhang CZ, Lynch LD, et al. (2020) Mechanisms generating cancer genome complexity from a single cell division error. Science (New York, N.Y.). 368 |
Lee IJ, Stokasimov E, Dempsey N, et al. (2020) Factors promoting nuclear envelope assembly independent of the canonical ESCRT pathway. The Journal of Cell Biology. 219 |
Liu S, Pellman D. (2020) The coordination of nuclear envelope assembly and chromosome segregation in metazoans. Nucleus (Austin, Tex.). 11: 35-52 |
Deng L, Wu RA, Sonneville R, et al. (2019) Mitotic CDK Promotes Replisome Disassembly, Fork Breakage, and Complex DNA Rearrangements. Molecular Cell. 73: 915-929.e6 |
Jiao AL, Perales R, Umbreit NT, et al. (2018) Human Nuclear RNAi-Defective 2 (NRDE2) is an essential RNA splicing factor. Rna (New York, N.Y.) |
Mowery CT, Reyes JM, Cabal-Hierro L, et al. (2018) Trisomy of a Down Syndrome Critical Region Globally Amplifies Transcription via HMGN1 Overexpression. Cell Reports. 25: 1898-1911.e5 |
Witwicki RM, Ekram MB, Qiu X, et al. (2018) TRPS1 Is a Lineage-Specific Transcriptional Dependency in Breast Cancer. Cell Reports. 25: 1255-1267.e5 |
Oser MG, Fonseca R, Chakraborty AA, et al. (2018) Cells Lacking the RB1 Tumor Suppressor Gene are Hyperdependent on Aurora B Kinase for Survival. Cancer Discovery |
Liu S, Kwon M, Mannino M, et al. (2018) Nuclear envelope assembly defects link mitotic errors to chromothripsis. Nature |
Marteil G, Guerrero A, Vieira AF, et al. (2018) Over-elongation of centrioles in cancer promotes centriole amplification and chromosome missegregation. Nature Communications. 9: 1258 |