Hannah A. DeBerg, Ph.D.

Affiliations: 
2013 Physics University of Illinois, Urbana-Champaign, Urbana-Champaign, IL 
Area:
General Biophysics
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"Hannah DeBerg"
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Parents

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Yann R. Chemla grad student 2013 UIUC
 (Studies of huntington's disease associated motor domain phosphorylation of kinesin-1.)
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Publications

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Bankston JR, DeBerg HA, Stoll S, et al. (2017) Mechanism for the inhibition of the cAMP dependence of HCN ion channels by the auxiliary subunit TRIP8b. The Journal of Biological Chemistry
Collauto A, DeBerg HA, Kaufmann R, et al. (2017) Rates and equilibrium constants of the ligand-induced conformational transition of an HCN ion channel protein domain determined by DEER spectroscopy. Physical Chemistry Chemical Physics : Pccp
DeBerg HA, Brzovic PS, Flynn GE, et al. (2015) Structure and Energetics of Allosteric Regulation of HCN2 Ion Channels by Cyclic Nucleotides. The Journal of Biological Chemistry
DeBerg HA, Bankston JR, Rosenbaum JC, et al. (2015) Structural mechanism for the regulation of HCN ion channels by the accessory protein TRIP8b. Structure (London, England : 1993). 23: 734-44
Bankston JR, DeBerg HA, Rosenbaum JC, et al. (2015) Spectroscopic and Biochemical Studies of TRIP8b Regulation of HCN Channels Biophysical Journal. 108: 348a
DeBerg HA, Islam SM, Puljung MC, et al. (2015) Allosteric Regulation of the Cyclic Nucleotide-Binding Domain in HCN Channels Biophysical Journal. 108: 192a-193a
Puljung MC, DeBerg HA, Zagotta WN, et al. (2014) Double electron-electron resonance reveals cAMP-induced conformational change in HCN channels. Proceedings of the National Academy of Sciences of the United States of America. 111: 9816-21
Wang Y, Liu Y, Deberg HA, et al. (2014) Single molecule FRET reveals pore size and opening mechanism of a mechano-sensitive ion channel. Elife. 3: e01834
Wang Y, Liu Y, DeBerg HA, et al. (2014) Author response: Single molecule FRET reveals pore size and opening mechanism of a mechano-sensitive ion channel Elife
DeBerg HA, Puljung MC, Zagotta WN, et al. (2014) Double Electron-Electron Resonance Studies of Ligand Induced Rearrangements of HCN Channels Biophysical Journal. 106: 737a
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