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1 KCNE1 (MinK), producing a slowly activating voltage-dependent channel.
2 everely distorted measurements and recruited voltage-dependent channels.
3 micron) representing a high-density array of voltage-dependent channels.
4 through the opsin, rather than through other voltage-dependent channels.
5 E3) is essential for the specific control of voltage-dependent channel activation characteristics of
8 hat reside within C99 significantly increase voltage-dependent channel activity beyond that induced b
9 trated sources of calcium are influx through voltage-dependent channels, and release of calcium from
10 odgkin-Katz (GHK) configuration that employs voltage-dependent channel binding functions for external
11 CNS physiology depend critically on powerful voltage-dependent channel block by external Mg(2+) (Mg(2
13 tification of their currents, which reflects voltage-dependent channel block by intracellular spermin
17 specialized inactivation gate, as for other voltage-dependent channels, but by reclosure of the same
18 astrocytes occurs, at least in part, through voltage-dependent channels, but the exact mechanisms inv
20 mitochondrial burden can be traced to L-type voltage-dependent channels (channels for which there are
21 452A nearly eliminated the effects of Rg3 on voltage-dependent channel gating but did not prevent the
23 of putative mechanisms underlying Ca2+- and voltage-dependent channel inactivation, and (b) close fi
25 alcium homeostasis modulator 1 (CALHM1) is a voltage-dependent channel involved in neuromodulation an
26 lving cytosolic calcium entry through L-type voltage-dependent channels is required for PACAP to evok
27 elated potassium channel (hERG, Kv11.1) is a voltage-dependent channel known for its role in repolari
28 Priming the stores with Ca2+ entry through voltage dependent channels modulated wave properties but
29 dependence on L-type Ca2+ channels and other voltage-dependent channels (Na+ and K+ channels) in the
31 ]i and tension are the entry of Ca2+ through voltage-dependent channels opened by depolarization or d
32 te how sensor coupling to the pore generates voltage-dependent channel opening, we solved the crystal
35 k calcium release from ER and influx through voltage-dependent channels prevented mitochondrial ROS a
39 ubthreshold synaptic inputs are modulated by voltage-dependent channels, raising the possibility that
40 results establish the general principles of voltage-dependent channel structure in a biological memb
42 The mechanism by which Ca(2+) entry through voltage-dependent channels supports both co-ordinated co
45 5.4 mmol/L K+; pipette, 140 mmol/L K+), two voltage-dependent channels were recorded with conductanc
46 nese hamster ovary cells produced Ca2+ - and voltage-dependent channels with macroscopic and unitary
47 wo structures provide atomic descriptions of voltage-dependent channels with unprecedented clarity.