Pages that link to "Q40638939"
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The following pages link to Syntaxin 1A co-associates with native rat brain and cloned large conductance, calcium-activated potassium channels in situ (Q40638939):
Displaying 19 items.
- Activation of brain calcineurin (Cn) by Cu-Zn superoxide dismutase (SOD1) depends on direct SOD1-Cn protein interactions occurring in vitro and in vivo (Q24298397) (← links)
- Dynamin-1 co-associates with native mouse brain BKCa channels: proteomics analysis of synaptic protein complexes (Q28508367) (← links)
- The beta1 subunit of Na+/K+-ATPase interacts with BKCa channels and affects their steady-state expression on the cell surface (Q28588911) (← links)
- RACK1 is a BKCa channel binding protein (Q33266501) (← links)
- The large-conductance Ca(2+)-activated K(+) channel interacts with the apolipoprotein ApoA1 (Q33484494) (← links)
- Identification and functional characterization of ankyrin-repeat family protein ANKRA as a protein interacting with BKCa channel (Q33913542) (← links)
- Interactions between β-catenin and the HSlo potassium channel regulates HSlo surface expression (Q34109981) (← links)
- Melatonin attenuates intermittent hypoxia-induced lipid peroxidation and local inflammation in rat adrenal medulla (Q34486843) (← links)
- Spatial association of the Cav1.2 calcium channel with α5β1-integrin. (Q34717948) (← links)
- Distinct domain-dependent effect of syntaxin1A on amiloride-sensitive sodium channel (ENaC) currents in HT-29 colonic epithelial cells (Q35161501) (← links)
- MaxiK channel partners: physiological impact (Q36292595) (← links)
- Hair cells--beyond the transducer (Q36506405) (← links)
- BK Channels in Cardiovascular Diseases and Aging (Q36603651) (← links)
- Molecular mechanisms of BK channel activation (Q37223668) (← links)
- CSPα-chaperoning presynaptic proteins (Q38210203) (← links)
- Syntaxin-1A binds to and modulates the Slo calcium-activated potassium channel via an interaction that excludes syntaxin binding to calcium channels (Q40501617) (← links)
- The calcium-dependent activity of large-conductance, calcium-activated K+ channels is enhanced by Pyk2- and Hck-induced tyrosine phosphorylation (Q44884873) (← links)
- Electrophysiological properties of BK channels in Xenopus motor nerve terminals (Q47870928) (← links)
- Molecular assembly and dynamics of fluorescent protein-tagged single KCa1.1 channel in expression system and vascular smooth muscle cells. (Q50503225) (← links)