Azad Bonni

Affiliations: 
Harvard University, Cambridge, MA, United States 
Area:
Development, Morphogenesis, Signal Transduction, Apoptosis
Website:
http://hmcnet.harvard.edu/pathol/labs/bonni/
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"Azad Bonni"
Mean distance: 14.11 (cluster 31)
 
SNBCP

Parents

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Michael E. Greenberg grad student 1991-1999 Harvard Medical School
 (grad student & post-doc)

Children

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Luis 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
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
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Publications

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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
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
Chanda A, Ikeuchi Y, Karve K, et al. (2020) PIAS1 and TIF1γ collaborate to promote SnoN SUMOylation and suppression of epithelial-mesenchymal transition. Cell Death and Differentiation
Goodman JV, Yamada T, Yang Y, et al. (2020) The chromatin remodeling enzyme Chd4 regulates genome architecture in the mouse brain. Nature Communications. 11: 3419
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