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Schweinitz, Andrea
Open Access
John von Neumann - Institut für Computing; NIC
AND
Jülich Supercomputing Center; JSC
Disinhibition and inhibition of HCN2 channel function by ligand binding to the cyclic nucleotide bin
AND
Forschergruppe Gohlke
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Schweinitz, Andrea
Open Access
John von Neumann - Institut für Computing; NIC
AND
Jülich Supercomputing Center; JSC
Disinhibition and inhibition of HCN2 channel function by ligand binding to the cyclic nucleotide bin
AND
Forschergruppe Gohlke
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Journal Article
Hydrophobic alkyl chains substituted to the 8-position of cyclic nucleotides enhance activation of CNG and HCN channels by an intricate enthalpy - entropy compensation
Otte, Maik
2018
Scientific reports, 8 (2018) 1, S. 14960
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Schweinitz, Andrea
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Research Program
Biological Key Regulators and Small Chemical Compounds
1
Computational Science and Mathematical Methods
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Disease Mechanisms and Model Systems
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Disinhibition and inhibition of HCN2 channel function by ligand binding to the cyclic nucleotide bin
Forschergruppe Gohlke
Contributing Institute
John von Neumann - Institut für Computing; NIC
Jülich Supercomputing Center; JSC
Strukturbiochemie; ICS-6
1
Scientific Report
2018
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