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Publications of Thomas M. Newpher    :chronological  alphabetical  combined  bibtex listing:

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Journal Articles

  1. Newpher, TM (2022). Methods to Visualize Structural and Functional Changes at Synapses.. Journal of Visualized Experiments : Jove, 179(179). [doi]  [abs]
  2. Ng, M; Newpher, TM (2021). Class Size and Student Performance in a Team-Based Learning Course.. Journal of Undergraduate Neuroscience Education, 20(1), A49-A57.  [abs]
  3. Ng, M; Newpher, TM (2020). Comparing Active Learning to Team-Based Learning in Undergraduate Neuroscience.. Journal of Undergraduate Neuroscience Education, 18(2), A102-A111.  [abs]
  4. Newpher, TM; Harris, S; Pringle, J; Hamilton, C; Soderling, S (2018). Regulation of spine structural plasticity by Arc/Arg3.1.. Semin Cell Dev Biol, 77, 25-32. [doi]  [abs]
  5. Chi, RJ; Torres, OT; Segarra, VA; Lansley, T; Chang, JS; Newpher, TM; Lemmon, SK (2012). Role of Scd5, a protein phosphatase-1 targeting protein, in phosphoregulation of Sla1 during endocytosis.. Journal of Cell Science, 125(Pt 20), 4728-4739. [doi]  [abs]
  6. Grötsch, H; Giblin, JP; Idrissi, F-Z; Fernández-Golbano, I-M; Collette, JR; Newpher, TM; Robles, V; Lemmon, SK; Geli, M-I (2010). Calmodulin dissociation regulates Myo5 recruitment and function at endocytic sites.. The Embo Journal, 29(17), 2899-2914. [doi]  [abs]
  7. Shaked, NT; Newpher, TM; Ehlers, MD; Wax, A (2010). Parallel on-axis holographic phase microscopy of biological cells and unicellular microorganism dynamics.. Applied Optics, 49(15), 2872-2878. [doi]  [abs]
  8. Newpher, TM; Ehlers, MD (2009). Spine microdomains for postsynaptic signaling and plasticity.. Trends in Cell Biology, 19(5), 218-227. [doi]  [abs]
  9. Newpher, TM; Ehlers, MD (2008). Glutamate receptor dynamics in dendritic microdomains.. Neuron, 58(4), 472-497. [doi]  [abs]
  10. Lu, J; Helton, TD; Blanpied, TA; Rácz, B; Newpher, TM; Weinberg, RJ; Ehlers, MD (2007). Postsynaptic positioning of endocytic zones and AMPA receptor cycling by physical coupling of dynamin-3 to Homer.. Neuron, 55(6), 874-889. [doi]  [abs]
  11. Newpher, TM; Idrissi, F-Z; Geli, MI; Lemmon, SK (2006). Novel function of clathrin light chain in promoting endocytic vesicle formation.. Molecular Biology of the Cell, 17(10), 4343-4352. [doi]  [abs]
  12. Newpher, TM; Lemmon, SK (2006). Clathrin is important for normal actin dynamics and progression of Sla2p-containing patches during endocytosis in yeast.. Traffic (Copenhagen, Denmark), 7(5), 574-588. [doi]  [abs]
  13. Newpher, TM; Smith, RP; Lemmon, V; Lemmon, SK (2005). In vivo dynamics of clathrin and its adaptor-dependent recruitment to the actin-based endocytic machinery in yeast.. Developmental Cell, 9(1), 87-98. [doi]  [abs]
  14. Newpher, TM; Lemmon, SK (2004). Clathrin accumulates with endocytic factors at the cell cortex upon disruption of the actin cytoskeleton in yeast. Molecular Biology of the Cell, 15, 5A-5A.
  15. Henry, KR; D'Hondt, K; Chang, J; Newpher, T; Huang, K; Hudson, RT; Riezman, H; Lemmon, SK (2002). Scd5p and clathrin function are important for cortical actin organization, endocytosis, and localization of sla2p in yeast.. Molecular Biology of the Cell, 13(8), 2607-2625. [doi]  [abs]

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