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Merck
CN
  • Side chain flexibilities in the human ether-a-go-go related gene potassium channel (hERG) together with matched-pair binding studies suggest a new binding mode for channel blockers.

Side chain flexibilities in the human ether-a-go-go related gene potassium channel (hERG) together with matched-pair binding studies suggest a new binding mode for channel blockers.

Journal of medicinal chemistry (2009-06-19)
Ulrich Zachariae, Fabrizio Giordanetto, Andrew G Leach
摘要

The cardiac hERG K(+) channel constitutes a long-standing and expensive antitarget for the drug industry. From a study of the flexibility of hERG around its internal binding cavity, we have developed a new structural model of drug binding to hERG, which involves binding orthogonal to the pore channel and therefore can exploit the up to 4-fold symmetry of the tetrameric channel. This binding site has a base formed by four tyrosine side chains that complement reported ligand-based pharmacophores. The model is able to rationalize reduced hERG potency in matched molecular pair studies and suggests design guidelines to optimize against hERG not relying simply on lipophilicity reduction. The binding model also suggests a molecular mechanism for the link between high-affinity hERG binding and C-type inactivation.

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Sigma-Aldrich
氯氮平N-氧化物
Sigma-Aldrich
酮康唑, 99.0-101.0% (EP, titration)
Sigma-Aldrich
特非那定
Supelco
(−)-尼古丁 溶液, 1.0 mg/mL, analytical standard, for drug analysis
Sigma-Aldrich
N -去甲基氯氮平