Clarissa L. Waites, Phd
Affiliations: | Columbia University, New York, NY | ||
2001 | University of California, San Francisco, San Francisco, CA |
Area:
Neural Degeneration and Repair, Cellular/Molecular/Developmental Neuroscience, Neurobiology of Learning and Memory, Synapses and CircuitsGoogle:
"Clarissa Waites"Mean distance: 16.6 (cluster 32) | S | N | B | C | P |
Parents
Sign in to add mentorRobert H. Edwards | grad student | 2001 | UCSF | |
(Targeting of an integral membrane protein to the regulated secretory pathway.) |
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Publications
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Birdsall V, Kirwan K, Zhu M, et al. (2022) Axonal transport of Hrs is activity dependent and facilitates synaptic vesicle protein degradation. Life Science Alliance. 5 |
Waites C, Qu X, Bartolini F. (2021) The synaptic life of microtubules. Current Opinion in Neurobiology. 69: 113-123 |
Qu X, Kumar A, Blockus H, et al. (2019) Activity-Dependent Nucleation of Dynamic Microtubules at Presynaptic Boutons Controls Neurotransmission. Current Biology : Cb |
Birdsall V, Waites CL. (2018) Autophagy at the synapse. Neuroscience Letters |
Okerlund ND, Schneider K, Leal-Ortiz S, et al. (2018) Bassoon Controls Presynaptic Autophagy through Atg5. Neuron. 97: 727 |
Goodman L, Baddeley D, Ambroziak W, et al. (2017) N-terminal SAP97 isoforms differentially regulate synaptic structure and postsynaptic surface pools of AMPA receptors. Hippocampus |
Sheehan P, Waites CL. (2017) Coordination of synaptic vesicle trafficking and turnover by the Rab35 signaling network. Small Gtpases. 1-10 |
Terry-Lorenzo RT, Torres VI, Wagh D, et al. (2016) Trio, a Rho Family GEF, Interacts with the Presynaptic Active Zone Proteins Piccolo and Bassoon. Plos One. 11: e0167535 |
Sheehan P, Zhu M, Beskow A, et al. (2016) Activity-Dependent Degradation of Synaptic Vesicle Proteins Requires Rab35 and the ESCRT Pathway. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 8668-86 |
Ackermann F, Waites CL, Garner CC. (2015) Presynaptic active zones in invertebrates and vertebrates. Embo Reports. 16: 923-38 |