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Genome Biology|March 5, 2021
Pluripotent stem cell-derived models of neurological diseases reveal early transcriptional heterogeneityMatan Sorek, Walaa Oweis, Malka Nissim-Rafinia, et al.Elife|February 19, 2025
SMARCAD1 and TOPBP1 contribute to heterochromatin maintenance at the transition from the 2C-like to the pluripotent stateRuben Sebastian-Perez, Shoma Nakagawa, Xiaochuan Tu, et al.Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|August 23, 2024
Genetic Screen in a Preclinical Model of Sarcoma Development Defines Drivers and Therapeutic VulnerabilitiesJack Freeland, Maria Muñoz, Edmond O'Donnell, et al.Nature Communications|March 26, 2021
SARS-CoV-2 infection rewires host cell metabolism and is potentially susceptible to mTORC1 inhibitionPeter J Mullen, Gustavo Garcia, Arunima Purkayastha, et al.Cell Stem Cell|May 13, 2020
A Human Skeletal Muscle Atlas Identifies the Trajectories of Stem and Progenitor Cells across Development and from Human Pluripotent Stem CellsHaibin Xi, Justin Langerman, Shan Sabri, et al.Cell|January 5, 2024
XIST directly regulates X-linked and autosomal genes in naive human pluripotent cellsIris Dror, Tsotne Chitiashvili, Shawn Y X Tan, et al.Nature Methods|August 22, 2018
Reduced MEK inhibition preserves genomic stability in naive human embryonic stem cellsBruno Di Stefano, Mai Ueda, Shan Sabri, et al.Stem Cell Reports|May 10, 2018
Loss of MECP2 Leads to Activation of P53 and Neuronal SenescenceMinori Ohashi, Elena Korsakova, Denise Allen, et al.Science Advances|March 25, 2022
Genome-wide screening identifies Polycomb repressive complex 1.3 as an essential regulator of human naïve pluripotent cell reprogrammingAmanda J Collier, Adam Bendall, Charlene Fabian, et al.Nature|April 21, 2006
Polycomb complexes repress developmental regulators in murine embryonic stem cellsLaurie A Boyer, Kathrin Plath, Julia Zeitlinger, et al.Pageof 23