AbstractInwardly rectifying K+ channels are distantly related to their voltage-gated counterparts and possess a structural motif of only two putative transmembrane segments in each subunit. They are formed by the assembly of an unknown number of subunits. We have examined the subunit stolchiometry of a strongly rectifying K+ channel, IRK1, by linking together the coding sequence of three or four subunits and distinguishing channels with different numbers of subunits carrying a double mutation that alters inward rectification and single-channel properties. We find that IRK1 channels, like voltage-gated K+ channels, are tetrameric channels. Interestingly, the high sensitivity to Mg2+ and polyamines, cations that produce inward rectification b...
Inwardly-rectifying potassium (Kir) channels comprise a transmembrane domain (TMD) that makes up the...
Potassium conduction through unblocked inwardly rectifying (IRK1, Kir2.1) potassium channels was mea...
AbstractUsing the recently unveiled crystal structure, and molecular and Brownian dynamics simulatio...
AbstractInwardly rectifying K+ channels are distantly related to their voltage-gated counterparts an...
AbstractInwardly rectifying K+ channels conduct more inward than outward current as a result of volt...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
Inwardly rectifying potassium (K+) channels (IRK1) were incorporated into lipid bilayers to test the...
AbstractInwardly rectifying K+ channels bind intracellular magnesium and polyamines to generate inwa...
Inwardly rectifying K+ channels are highly selective for K+ ions and show strong interaction with io...
AbstractInward rectifier potassium (Kir) channels act as cellular diodes, allowing unrestricted flow...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
Some algal viruses have coding sequences for proteins with structural and functional characteristics...
Voltage-gated potassium (K+) channels are present in all living systems. Despite high structural sim...
AbstractThe gating characteristics of two ion channels in the inward-rectifier K+ channel superfamil...
Some algal viruses have coding sequences for proteins with structural and functional characteristics...
Inwardly-rectifying potassium (Kir) channels comprise a transmembrane domain (TMD) that makes up the...
Potassium conduction through unblocked inwardly rectifying (IRK1, Kir2.1) potassium channels was mea...
AbstractUsing the recently unveiled crystal structure, and molecular and Brownian dynamics simulatio...
AbstractInwardly rectifying K+ channels are distantly related to their voltage-gated counterparts an...
AbstractInwardly rectifying K+ channels conduct more inward than outward current as a result of volt...
AbstractInwardly rectifying potassium channels have an important role in determining the resting pot...
Inwardly rectifying potassium (K+) channels (IRK1) were incorporated into lipid bilayers to test the...
AbstractInwardly rectifying K+ channels bind intracellular magnesium and polyamines to generate inwa...
Inwardly rectifying K+ channels are highly selective for K+ ions and show strong interaction with io...
AbstractInward rectifier potassium (Kir) channels act as cellular diodes, allowing unrestricted flow...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
Some algal viruses have coding sequences for proteins with structural and functional characteristics...
Voltage-gated potassium (K+) channels are present in all living systems. Despite high structural sim...
AbstractThe gating characteristics of two ion channels in the inward-rectifier K+ channel superfamil...
Some algal viruses have coding sequences for proteins with structural and functional characteristics...
Inwardly-rectifying potassium (Kir) channels comprise a transmembrane domain (TMD) that makes up the...
Potassium conduction through unblocked inwardly rectifying (IRK1, Kir2.1) potassium channels was mea...
AbstractUsing the recently unveiled crystal structure, and molecular and Brownian dynamics simulatio...