Azad Bonni
Affiliations: | Harvard University, Cambridge, MA, United States |
Area:
Development, Morphogenesis, Signal Transduction, ApoptosisWebsite:
http://hmcnet.harvard.edu/pathol/labs/bonni/Google:
"Azad Bonni"Mean distance: 14.11 (cluster 31) | S | N | B | C | P |
Parents
Sign in to add mentorMichael E. Greenberg | grad student | 1991-1999 | Harvard Medical School | |
(grad student & post-doc) |
Children
Sign in to add traineeLuis De La Torre-Ubieta | grad student | ||
Genevieve Konopka | grad student | 2000-2004 | Harvard |
Esther B E Becker | grad student | 2000-2005 | Harvard |
Maria Kristiina Lehtinen | grad student | 2006 | Harvard |
Aryaman K. Shalizi | grad student | 2000-2006 | Harvard |
Parizad Maheyar Bilimoria | grad student | 2010 | Harvard |
Mai Anh Huynh | grad student | 2010 | Harvard |
Yue Yang | grad student | 2010 | Harvard |
Sidharth Venkata Puram | grad student | 2011 | Harvard |
Nadia Kathryn Litterman | grad student | 2005-2011 | Harvard |
Luis Antonio Mejia | grad student | 2013 | Harvard |
Jiayang Chen | grad student | 2018-2019 | Washington University School of Medicine |
Xiaoying Chen | post-doc | ||
Arezu Jahani Asl | post-doc | Harvard | |
Albert H. Kim | post-doc | Harvard Medical School | |
Kah Leong Lim | post-doc | 2002-2003 | Harvard Medical School |
Judith Stegmuller | post-doc | 2003-2008 | Harvard Medical School |
Chi Zhang | post-doc | 2013 | Harvard |
Yoshiho Ikeuchi | post-doc | 2007-2013 | Harvard Medical School |
BETA: Related publications
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Publications
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Chen H, Ferguson CJ, Mitchell DC, et al. (2025) The Hao-Fountain syndrome protein USP7 regulates neuronal connectivity in the brain via a novel p53-independent ubiquitin signaling pathway. Cell Reports. 44: 115231 |
Nettles SA, Ikeuchi Y, Lefton KB, et al. (2023) MeCP2 represses the activity of topoisomerase IIβ in long neuronal genes. Cell Reports. 42: 113538 |
Chen H, Ferguson CJ, Mitchell DC, et al. (2023) The Hao-Fountain syndrome protein USP7 regulates neuronal connectivity in the brain via a novel p53-independent ubiquitin signaling pathway. Biorxiv : the Preprint Server For Biology |
Ledvin L, Gassaway BM, Tawil J, et al. (2023) The anaphase-promoting complex controls a ubiquitination-phosphoprotein axis in chromatin during neurodevelopment. Developmental Cell |
Chen X, Du Y, Broussard GJ, et al. (2022) Transcriptomic mapping uncovers Purkinje neuron plasticity driving learning. Nature |
Ferguson CJ, Urso O, Bodrug T, et al. (2021) APC7 mediates ubiquitin signaling in constitutive heterochromatin in the developing mammalian brain. Molecular Cell |
Reddy NC, Majidi SP, Kong L, et al. (2021) CHARGE syndrome protein CHD7 regulates epigenomic activation of enhancers in granule cell precursors and gyrification of the cerebellum. Nature Communications. 12: 5702 |
Smith SE, Chen X, Brier LM, et al. (2020) Astrocyte deletion of α2-Na/K ATPase triggers episodic motor paralysis in mice via a metabolic pathway. Nature Communications. 11: 6164 |
Karve K, Netherton S, Deng L, et al. (2020) Regulation of epithelial-mesenchymal transition and organoid morphogenesis by a novel TGFβ-TCF7L2 isoform-specific signaling pathway. Cell Death & Disease. 11: 704 |
Chanda A, Ikeuchi Y, Karve K, et al. (2020) Correction: PIAS1 and TIF1γ collaborate to promote SnoN SUMOylation and suppression of epithelial-mesenchymal transition. Cell Death and Differentiation |