Mitochondrial Dynamics Impacts Stem Cell Identity and Fate Decisions by Regulating a Nuclear Transcriptional Program
Khacho, Mireille, Clark, Alysen, Svoboda, Devon S., Azzi, Joelle, MacLaurin, Jason G., Meghaizel, Cynthia, Sesaki, Hiromi, Lagace, Diane C., Germain, Marc, Harper, Mary-Ellen, Park, David S., Slack, Ruth S.
Published in Cell stem cell (04.08.2016)
Published in Cell stem cell (04.08.2016)
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Opposing Regulation of Sox2 by Cell-Cycle Effectors E2f3a and E2f3b in Neural Stem Cells
Julian, Lisa M., Vandenbosch, Renaud, Pakenham, Catherine A., Andrusiak, Matthew G., Nguyen, Angela P., McClellan, Kelly A., Svoboda, Devon S., Lagace, Diane C., Park, David S., Leone, Gustavo, Blais, Alexandre, Slack, Ruth S.
Published in Cell stem cell (04.04.2013)
Published in Cell stem cell (04.04.2013)
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Human iPSC-derived microglia assume a primary microglia-like state after transplantation into the neonatal mouse brain
Svoboda, Devon S., Barrasa, M. Inmaculada, Shu, Jian, Rietjens, Rosalie, Zhang, Shupei, Mitalipova, Maya, Berube, Peter, Fu, Dongdong, Shultz, Leonard D., Bell, George W., Jaenisch, Rudolf
Published in Proceedings of the National Academy of Sciences - PNAS (10.12.2019)
Published in Proceedings of the National Academy of Sciences - PNAS (10.12.2019)
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Mitochondrial dysfunction underlies cognitive defects as a result of neural stem cell depletion and impaired neurogenesis
Khacho, Mireille, Clark, Alysen, Svoboda, Devon S, MacLaurin, Jason G, Lagace, Diane C, Park, David S, Slack, Ruth S
Published in Human molecular genetics (01.09.2017)
Published in Human molecular genetics (01.09.2017)
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MeCP2 links heterochromatin condensates and neurodevelopmental disease
Li, Charles H., Coffey, Eliot L., Dall’Agnese, Alessandra, Hannett, Nancy M., Tang, Xin, Henninger, Jonathan E., Platt, Jesse M., Oksuz, Ozgur, Zamudio, Alicia V., Afeyan, Lena K., Schuijers, Jurian, Liu, X. Shawn, Markoulaki, Styliani, Lungjangwa, Tenzin, LeRoy, Gary, Svoboda, Devon S., Wogram, Emile, Lee, Tong Ihn, Jaenisch, Rudolf, Young, Richard A.
Published in Nature (London) (15.10.2020)
Published in Nature (London) (15.10.2020)
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The A53T Mutation in α-Synuclein Enhances Proinflammatory Activation in Human Microglia Upon Inflammatory Stimulus
Krzisch, Marine, Yuan, Bingbing, Chen, Wenyu, Osaki, Tatsuya, Fu, Dongdong, Garrett-Engele, Carrie M., Svoboda, Devon S., Andrykovich, Kristin R., Gallagher, Michael D., Sur, Mriganka, Jaenisch, Rudolf
Published in Biological psychiatry (1969) (01.07.2024)
Published in Biological psychiatry (1969) (01.07.2024)
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The A53T mutation in α-synuclein enhances pro-inflammatory activation in human microglia upon inflammatory stimulus
Krzisch, Marine, Yuan, Bingbing, Chen, Wenyu, Osaki, Tatsuya, Fu, Dongdong, Garrett-Engele, Carrie M, Svoboda, Devon S, Andrykovich, Kristin R, Gallagher, Michael D, Sur, Mriganka, Jaenisch, Rudolf
Published in Biological psychiatry (1969) (17.07.2024)
Published in Biological psychiatry (1969) (17.07.2024)
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