Stability of N-type inactivation and the coupling between N-type and C-type inactivation in the Aplysia Kv1 channel
Iwamuro, T.; Itohara, K.; Furukawa, Y.
Show abstract
The voltage-dependent potassium channels (Kv channels) show several different types of inactivation. N-type inactivation is a fast inactivating mechanism, which is essentially an open pore blockade by the amino-terminal structure of the channel itself or the auxiliary subunit. There are several functionally discriminatable slow inactivation (C-type, P-type, U-type), the mechanism of which is supposed to include rearrangement of the pore region. In some Kv1 channels, the actual inactivation is brought about by coupling of N- type and C-type inactivation (N-C coupling). In the present study, we focused on the N-C coupling of the Aplysia Kv1 channel (AKv1). AKv1 shows a robust N-type inactivation, but its recovery is almost thoroughly from C-type inactivated state owing to the efficient N-C coupling. In the I8Q mutant of AKv1, we found that the inactivation as well as its recovery showed two kinetic components apparently correspond to N-type and C-type inactivation. Also, the cumulative inactivation which depends on N-type mechanism in AKv1 was hindered in I8Q, suggesting that N-type inactivation of I8Q is less stable. We also found that Zn2+ specifically accelerates C-type inactivation of AKv1, and that H382 in the pore turret is involved in the Zn2+ binding. Because the region around Ile8 (I8) in AKv1 has been suggested to be involved in the pre-block binding of the amino-terminal structure, our results strengthen a hypothesis that the stability of the pre-block state is important for stable N-type inactivation as well as the N-C coupling in the Kv1 channel inactivation.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Proton-Dependent Inhibition, Inverted Voltage Activation, and Slow Gating of CLC-0 Chloride Channel 97%
- Cannabidiol increases gramicidin current in human embryonic kidney cells: An observational study 93%
- Mecamylamine inhibits seizure-like activity in CA1-CA3 hippocampus through antagonism to nicotinic receptors 92%
Similar papers in this journal
- Intracellular helix-loop-helix domain modulates inactivation kinetics of mammalian TRPV5 and TRPV6 channels. 92%
- Deletion of Trpm4 alters the function and expression of NaV1.5 channel in murine cardiac myocytes 91%
- Gain-of-function dynamin-2 mutations linked to centronuclear myopathy impair Ca2+-induced exocytosis in human myoblasts 90%
Similar papers in this journal
Similar papers in this journal
- Intrinsic Mechanisms in the Gating of Resurgent Na+ Currents 94%
- Voltage-clamp fluorometry analysis of structural rearrangements of ATP-gated channel P2X2 upon hyperpolarization 94%
- Polyunsaturated fatty acid analogues differentially affect cardiac Nav, Cav, and Kv channels through unique mechanisms 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.