Julie L. Lefebvre
Affiliations: | Harvard University, Cambridge, MA, United States |
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"Julie Lefebvre"Cross-listing: Neurotree
Parents
Sign in to add mentorMichael Granato | grad student | 2005 | Penn | |
(Muscle-derived signaling coordinate motor axon guidance and synapse formation.) | ||||
Joshua R. Sanes | post-doc | Harvard (Neurotree) |
Children
Sign in to add traineeNeil Merovitch | grad student | 2017-2023 | Hospital for Sick Children/University of Toronto (Neurotree) |
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Publications
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Long RM, Ong H, Wang WX, et al. (2023) The role of Protocadherin gamma in adult sensory neurons and skin reinnervation. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience |
Wang WX, Lefebvre JL. (2022) Morphological pseudotime ordering and fate mapping reveal diversification of cerebellar inhibitory interneurons. Nature Communications. 13: 3433 |
Lefebvre JL. (2021) Molecular mechanisms that mediate dendrite morphogenesis. Current Topics in Developmental Biology. 142: 233-282 |
Ing-Esteves S, Kostadinov D, Marocha J, et al. (2018) Combinatorial effects of Alpha- and Gamma-Protocadherins on neuronal survival and dendritic self-avoidance. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience |
Lefebvre JL. (2017) Neuronal Territory Formation by the Atypical Cadherins and Clustered Protocadherins. Seminars in Cell & Developmental Biology |
Lefebvre JL, Sanes JR, Kay JN. (2015) Development of Dendritic Form and Function. Annual Review of Cell and Developmental Biology |
Gibson DA, Tymanskyj S, Yuan RC, et al. (2014) Dendrite self-avoidance requires cell-autonomous slit/robo signaling in cerebellar purkinje cells. Neuron. 81: 1040-56 |
Chen WV, Alvarez FJ, Lefebvre JL, et al. (2012) Functional significance of isoform diversification in the protocadherin gamma gene cluster. Neuron. 75: 402-9 |
Lefebvre JL, Kostadinov D, Chen WV, et al. (2012) Protocadherins mediate dendritic self-avoidance in the mammalian nervous system. Nature. 488: 517-21 |
Jing L, Lefebvre JL, Gordon LR, et al. (2009) Wnt signals organize synaptic prepattern and axon guidance through the zebrafish unplugged/MuSK receptor. Neuron. 61: 721-33 |