Thomas L. Schwarz

Harvard University, Cambridge, MA, United States 
Drosophila Neurobiology
"Thomas Schwarz"
Mean distance: 12.51 (cluster 11)
Cross-listing: FlyTree


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Edward Kravitz grad student Harvard
Lily Y. Jan post-doc 1983-1989 UCSF


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Peter T. Lin research assistant Stanford University Medical School
John Salogiannis research assistant 2005-2007 Harvard
Wei Wei research assistant 2016-2018 Harvard - Boston Children's Hospital
Ghazaleh Ashrafi grad student
Aaron DiAntonio grad student Stanford Medical School
Misao Higashi grad student 2002- Harvard
Peri Kurshan grad student 2005- Harvard
Huaiyu Mi grad student 1989-1995 Stanford
Robert Burgess grad student 1990-1996 Stanford
Ross G. Vickery grad student 1990-1996 Harvard
Joshua Jacob Zaritsky grad student 2001 Stanford
Wonil Edward Jung grad student 2002 Stanford
Mala Murthy grad student 1997-2003 Stanford
Dion K. Dickman grad student 2005 Harvard
Elizabeth Glater grad student 2001-2006 Harvard
Eunju Chung grad student 2002-2008 Harvard
Misao E. Kovtun grad student 2009 Harvard
Timothy James Mosca grad student 2009 Harvard
Tim Mosca grad student 2004-2009 Harvard
GaYoung Lee grad student 2012-2016 Harvard Medical School
Michelle A. Cronin post-doc Children's Hospital
Rita Teodoro post-doc 2002- Harvard
Sarah Webster post-doc 2005- Harvard
Xinnan Wang post-doc 2007- Harvard
Asli Oztan post-doc 2008- Children's Hospital, Harvard Medical School
Gulcin Pekkurnaz post-doc 2009- Children's Hospital Boston, Harvard Medical School
Stephen J. Raiker post-doc 2011- Children's Hospital Boston/ Harvard Medical School
Tal Kramer post-doc 2012- Children's Hospital Boston/Harvard Medical School
Guoli Zhao post-doc 2016-
Bryan A. Stewart post-doc 1996-1998 Stanford
Ann Goldstein post-doc 2005-2012 Harvard


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Inseyah Bagasrawala collaborator (FlyTree)
BETA: Related publications


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Basu H, Schwarz TL. (2020) QuoVadoPro, an Autonomous Tool for Measuring Intracellular Dynamics using Temporal Variance. Current Protocols in Cell Biology. 87: e108
Basu H, Ding L, Pekkurnaz G, et al. (2020) Kymolyzer, a Semi-Autonomous Kymography Tool to Analyze Intracellular Motility. Current Protocols in Cell Biology. 87: e107
Shlevkov E, Basu H, Bray MA, et al. (2019) A High-Content Screen Identifies TPP1 and Aurora B as Regulators of Axonal Mitochondrial Transport. Cell Reports. 28: 3224-3237.e5
Zhao G, Oztan A, Ye Y, et al. (2019) Kinetochore Proteins Have a Post-Mitotic Function in Neurodevelopment. Developmental Cell
Cartoni R, Pekkurnaz G, Wang C, et al. (2017) A high mitochondrial transport rate characterizes CNS neurons with high axonal regeneration capacity. Plos One. 12: e0184672
Cartoni R, Norsworthy MW, Bei F, et al. (2017) The Mammalian-Specific Protein Armcx1 Regulates Mitochondrial Transport during Axon Regeneration. Neuron. 94: 689
Su C, Schwarz TL. (2017) O-GlcNAc Transferase is Essential for Sensory Neuron Survival and Maintenance. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Cartoni R, Norsworthy MW, Bei F, et al. (2016) The Mammalian-Specific Protein Armcx1 Regulates Mitochondrial Transport during Axon Regeneration. Neuron. 92: 1294-1307
Lee G, Schwarz TL. (2016) Filamin, a synaptic organizer in Drosophila, determines glutamate receptor composition and membrane growth. Elife. 5
Shlevkov E, Kramer T, Schapansky J, et al. (2016) Miro phosphorylation sites regulate Parkin recruitment and mitochondrial motility. Proceedings of the National Academy of Sciences of the United States of America
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