Pages that link to "Q27648268"
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The following pages link to Structural insight into Ca2+ specificity in tetrameric cation channels (Q27648268):
Displaying 29 items.
- Distinct gating mechanisms revealed by the structures of a multi-ligand gated K(+) channel (Q21128796) (← links)
- Potassium channel protein BC0669 (Q23511185) (← links)
- Tuning the ion selectivity of tetrameric cation channels by changing the number of ion binding sites (Q24597879) (← links)
- Molecular bases of NMDA receptor subtype-dependent properties (Q27012689) (← links)
- Structural implications of weak Ca2+ block in Drosophila cyclic nucleotide-gated channels (Q27308730) (← links)
- Structural analysis of ion selectivity in the NaK channel (Q27653200) (← links)
- High-resolution structure of the open NaK channel (Q27653201) (← links)
- Structural studies of ion permeation and Ca 2+ blockage of a bacterial channel mimicking the cyclic nucleotide-gated channel pore (Q27666398) (← links)
- Structural basis for Ca2+ selectivity of a voltage-gated calcium channel (Q27680676) (← links)
- Structure-based studies on the metal binding of two-metal-dependent sugar isomerases (Q27690726) (← links)
- A single GluN2 subunit residue controls NMDA receptor channel properties via intersubunit interaction (Q30505755) (← links)
- Does cation break the cyano bond? A critical evaluation of nitrile-cation interaction (Q30810013) (← links)
- Structural studies of ion selectivity in tetrameric cation channels (Q34865545) (← links)
- K⁺-dependent selectivity and external Ca²⁺ block of Shab K⁺ channels. (Q35583659) (← links)
- Evolutionary and structural perspectives of plant cyclic nucleotide-gated cation channels (Q35994252) (← links)
- The Outer Pore and Selectivity Filter of TRPA1 (Q36185728) (← links)
- All atom NMDA receptor transmembrane domain model development and simulations in lipid bilayers and water. (Q36392889) (← links)
- Nonselective conduction in a mutated NaK channel with three cation-binding sites (Q36439522) (← links)
- Conduction of Na+ and K+ through the NaK channel: molecular and Brownian dynamics studies (Q36791195) (← links)
- The selectivity of K+ ion channels: testing the hypotheses (Q36981780) (← links)
- Studies of ion channels using expressed protein ligation (Q37802072) (← links)
- Gating at the selectivity filter of ion channels that conduct Na+ and K+ ions. (Q38597998) (← links)
- TRPV1 shows dynamic ionic selectivity during agonist stimulation. (Q39994761) (← links)
- Semisynthesis of NaK, a Na(+) and K(+) conducting ion channel (Q41242607) (← links)
- The nociceptor ion channel TRPA1 is potentiated and inactivated by permeating calcium ions. (Q41984053) (← links)
- Calcium-dependent decrease in the single-channel conductance of TRPV1. (Q42139744) (← links)
- Understanding Ion Channels Using Computational Approaches (Q44764966) (← links)
- Equilibrium selectivity alone does not create K+-selective ion conduction in K+ channels. (Q46263046) (← links)
- Divalent ions are potential permeating blockers of the non-selective NaK ion channel: combined QM and MD based investigations (Q47856398) (← links)