Shana L. Geffeney, Ph.D.

Affiliations: 
2005 Utah State University, Logan, UT, United States 
Area:
Sodium channels
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"Shana Geffeney"
Mean distance: 15.36 (cluster 11)
 
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Peter C. Ruben grad student 2005 Utah State University
 (Physiological and molecular genetic mechanisms of tetrodotoxin resistance in the garter snake, Thamnophis sirtalis.)
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Publications

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Geffeney SL, Cordingley JA, Mitchell K, et al. (2022) In Silico Analysis of Tetrodotoxin Binding in Voltage-Gated Sodium Ion Channels from Toxin-Resistant Animal Lineages. Marine Drugs. 20
Geffeney SL, Hanifin CT. (2020) Synthesizing and Expressing Native Ion Channels. Methods in Molecular Biology (Clifton, N.J.). 2068: 283-290
Geffeney SL, Williams BL, Rosenthal JJC, et al. (2019) Convergent and parallel evolution in a voltage-gated sodium channel underlies TTX-resistance in the Greater Blue-ringed Octopus: Hapalochlaena lunulata. Toxicon : Official Journal of the International Society On Toxinology
Hague MTJ, Toledo G, Geffeney SL, et al. (2018) Large-effect mutations generate trade-off between predatory and locomotor ability during arms race coevolution with deadly prey. Evolution Letters. 2: 406-416
Geffeney SL, Toledo G, Hanifin CT. (2018) Understanding Nervous System Evolution through Natural Experiments: Tetrodotoxin Resistance in Snakes Biophysical Journal. 114: 631a
Geffeney SL, Toledo G, Hanifin CT. (2017) Tetrodotoxin Resistance: Natural Experiments to Understand Voltage-Gated Sodium Channel Structure and Function Biophysical Journal. 112: 18a
Toledo G, Hanifin C, Geffeney S, et al. (2016) Convergent Evolution of Tetrodotoxin-Resistant Sodium Channels in Predators and Prey. Current Topics in Membranes. 78: 87-113
McGlothlin JW, Kobiela ME, Feldman CR, et al. (2016) Historical Contingency in a Multigene Family Facilitates Adaptive Evolution of Toxin Resistance. Current Biology : Cb
Geffeney SL, Goodman MB. (2012) How we feel: ion channel partnerships that detect mechanical inputs and give rise to touch and pain perception. Neuron. 74: 609-19
Geffeney SL, Cueva JG, Glauser DA, et al. (2011) DEG/ENaC but not TRP channels are the major mechanoelectrical transduction channels in a C. elegans nociceptor. Neuron. 71: 845-57
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