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Alice Lee

Researcher at Rockefeller University

Publications -  12
Citations -  8552

Alice Lee is an academic researcher from Rockefeller University. The author has contributed to research in topics: KcsA potassium channel & Gating. The author has an hindex of 12, co-authored 12 publications receiving 8236 citations. Previous affiliations of Alice Lee include Howard Hughes Medical Institute.

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X-ray structure of a voltage-dependent K+ channel

TL;DR: The structure of KvAP, a voltage-dependent K+ channel from Aeropyrum pernix, is presented and a crystal structure of the full-length channel at a resolution of 3.2 Å is determined, which suggests that the voltage-sensor paddles move in response to membrane voltage changes, carrying their positive charge across the membrane.
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Crystal structure and mechanism of a calcium-gated potassium channel

TL;DR: This work has cloned, expressed, analysed electrical properties, and determined the crystal structure of a K+ channel (MthK) from Methanobacterium thermoautotrophicum in the Ca2+-bound, opened state.
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The open pore conformation of potassium channels.

TL;DR: Amino-acid sequence conservation suggests a common structural basis for gating in a wide range of K+ channels, both ligand- and voltage-gated.
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Crystal structures of a complexed and peptide-free membrane protein-binding domain: molecular basis of peptide recognition by PDZ.

TL;DR: X-ray crystallographic structures of the third PDZ domain from the synaptic protein PSD-95 in complex with and in the absence of its peptide ligand have been determined and reveal that specific side chain interactions and a prominent hydrophobic pocket explain the selective recognition of the C-terminal consensus sequence.
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The principle of gating charge movement in a voltage-dependent K + channel

TL;DR: It is concluded that the voltage-sensor paddles operate somewhat like hydrophobic cations attached to levers, enabling the membrane electric field to open and close the pore.