Paul Forscher

Yale University, New Haven, CT 
"Paul Forscher"
Mean distance: 14.47 (cluster 11)


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Chi-Hung Lin grad student 1990-1995 Yale
Nelson A. Medeiros grad student 2006 Yale
Dylan T. Brunette grad student 2007 Yale
David W. Van Goor grad student 2010 Yale
Qing Hellen Yang grad student 2012 Yale
Callen Hyland grad student 2014 Yale
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Zhang Y, Zhang XF, Fleming MR, et al. (2016) Kv3.3 Channels Bind Hax-1 and Arp2/3 to Assemble a Stable Local Actin Network that Regulates Channel Gating. Cell
Hyland C, Mertz AF, Forscher P, et al. (2014) Dynamic peripheral traction forces balance stable neurite tension in regenerating Aplysia bag cell neurons. Scientific Reports. 4: 4961
Hyland C, Dufresne ER, Dufrense ER, et al. (2014) Regeneration of Aplysia bag cell neurons is synergistically enhanced by substrate-bound hemolymph proteins and laminin. Scientific Reports. 4: 4617
Mejean CO, Schaefer AW, Buck KB, et al. (2013) Elastic coupling of nascent apCAM adhesions to flowing actin networks. Plos One. 8: e73389
Yang Q, Zhang XF, Van Goor D, et al. (2013) Protein kinase C activation decreases peripheral actin network density and increases central nonmuscle myosin II contractility in neuronal growth cones. Molecular Biology of the Cell. 24: 3097-114
Zhang XF, Hyland C, Van Goor D, et al. (2012) Calcineurin-dependent cofilin activation and increased retrograde actin flow drive 5-HT-dependent neurite outgrowth in Aplysia bag cell neurons. Molecular Biology of the Cell. 23: 4833-48
Yang Q, Zhang XF, Pollard TD, et al. (2012) Arp2/3 complex-dependent actin networks constrain myosin II function in driving retrograde actin flow. The Journal of Cell Biology. 197: 939-56
Craig EM, Van Goor D, Forscher P, et al. (2012) Membrane tension, myosin force, and actin turnover maintain actin treadmill in the nerve growth cone. Biophysical Journal. 102: 1503-13
Van Goor D, Hyland C, Schaefer AW, et al. (2012) The role of actin turnover in retrograde actin network flow in neuronal growth cones. Plos One. 7: e30959
Zhang XF, Forscher P. (2009) Rac1 modulates stimulus-evoked Ca(2+) release in neuronal growth cones via parallel effects on microtubule/endoplasmic reticulum dynamics and reactive oxygen species production. Molecular Biology of the Cell. 20: 3700-12
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