Jan Pielage, Prof. Dr.

Affiliations: 
1999-2002 Department of Neurobiology University of Münster, Germany 
 2003-2007 University of California, San Francisco, San Francisco, CA 
 2008-2016 Friedrich Miescher Institut for Biomedical Research, Basel, Basel-Stadt, Switzerland 
 2016- Division of Zoology and Neurobiology Technical University of Kaiserslautern 
Area:
Synaptic Stability and Maintenance
Website:
https://www.bio.uni-kl.de/zoologie/
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Parents

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Christian Klämbt grad student 1999-2002 University of Muenster (FlyTree)
Graeme W. Davis post-doc 2003-2007 UCSF
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Publications

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Stephan R, Goellner B, Moreno E, et al. (2015) Hierarchical microtubule organization controls axon caliber and transport and determines synaptic structure and stability. Developmental Cell. 33: 5-21
Bulat V, Rast M, Pielage J. (2014) Presynaptic CK2 promotes synapse organization and stability by targeting Ankyrin2. The Journal of Cell Biology. 204: 77-94
Enneking EM, Kudumala SR, Moreno E, et al. (2013) Transsynaptic coordination of synaptic growth, function, and stability by the L1-type CAM Neuroglian. Plos Biology. 11: e1001537
Schmidt N, Basu S, Sladecek S, et al. (2012) Agrin regulates CLASP2-mediated capture of microtubules at the neuromuscular junction synaptic membrane. The Journal of Cell Biology. 198: 421-37
Pielage J, Bulat V, Zuchero JB, et al. (2011) Hts/Adducin controls synaptic elaboration and elimination. Neuron. 69: 1114-31
Massaro CM, Pielage J, Davis GW. (2009) Molecular mechanisms that enhance synapse stability despite persistent disruption of the spectrin/ankyrin/microtubule cytoskeleton. The Journal of Cell Biology. 187: 101-17
Frank CA, Pielage J, Davis GW. (2009) A presynaptic homeostatic signaling system composed of the Eph receptor, ephexin, Cdc42, and CaV2.1 calcium channels. Neuron. 61: 556-69
Pielage J, Cheng L, Fetter RD, et al. (2008) A presynaptic giant ankyrin stabilizes the NMJ through regulation of presynaptic microtubules and transsynaptic cell adhesion. Neuron. 58: 195-209
Hülsmeier J, Pielage J, Rickert C, et al. (2007) Distinct functions of alpha-Spectrin and beta-Spectrin during axonal pathfinding. Development (Cambridge, England). 134: 713-22
Pielage J, Fetter RD, Davis GW. (2006) A postsynaptic spectrin scaffold defines active zone size, spacing, and efficacy at the Drosophila neuromuscular junction. The Journal of Cell Biology. 175: 491-503
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