Literature DB >> 15136567

Disinactivation of N-type inactivation of voltage-gated K channels by an erbstatin analogue.

Zhi-Hao Zhang1, Kenneth J Rhodes, Wayne E Childers, Thomas M Argentieri, Qiang Wang.   

Abstract

In some A-type voltage-gated K channels, rapid inactivation is achieved through the binding of an N-terminal domain of the pore-forming alpha-subunit or an associated beta-subunit to a cytoplasmic acceptor located at or near the channel pore using the ball-and-chain machinery (1-5). This inactivation involving the N terminus is known as N-type inactivation. Here, we describe an erbstatin (Erb) analogue as a small molecule inhibitor of the N-type inactivation in channels of Kv1.4 and Kv1.1+Kvbeta1. We show that this inhibition of inactivation (designated as "disinactivation") is potent and selective for N-type inactivation in heterologous cells (Chinese hamster ovary and Xenopus oocytes) expressing these A-type channels. In Chinese hamster ovary cells, Erb increased the inactivation time constant of Kv1.4 from 86.5 +/- 9.5 to 150 +/- 10 ms (n = 6, p < 0.0 1). Similarly, Erb increased the inactivation time constant of Kv1.1+Kvbeta1 from 10 +/- 0.9 to 49.3 +/- 7 ms (n = 7, p < 0.01). The EC(50) for disinactivating Kv1.1+Kvbeta1 was 10.4 +/- 0.9 microm (n = 2-9). Erb had no effect upon another A-channel, Kv4.3, which does not utilize the ball-and-chain mechanism. The mechanism of Erb-induced disinactivation was also investigated. Neither cysteine oxidation nor tyrosine kinase inhibition was involved. The results demonstrate that Erb can be used as a base structure to identify potent, selective small molecule inhibitors of intracellular protein-protein interactions, and that these disinactivators may offer another therapeutic approach to the treatment of seizure disorders.

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Year:  2004        PMID: 15136567     DOI: 10.1074/jbc.M403290200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  9 in total

Review 1.  Use of Kv1.3 blockers for inflammatory skin conditions.

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2.  A novel N-terminal motif of dipeptidyl peptidase-like proteins produces rapid inactivation of KV4.2 channels by a pore-blocking mechanism.

Authors:  Henry H Jerng; Kevin Dougherty; Manuel Covarrubias; Paul J Pfaffinger
Journal:  Channels (Austin)       Date:  2009-11-30       Impact factor: 2.581

Review 3.  Voltage-gated potassium channels as therapeutic targets.

Authors:  Heike Wulff; Neil A Castle; Luis A Pardo
Journal:  Nat Rev Drug Discov       Date:  2009-12       Impact factor: 84.694

4.  Age-dependent differences in the inhibition of HCN2 current in rat ventricular myocytes by the tyrosine kinase inhibitor erbstatin.

Authors:  Yelena Kryukova; Vitalyi O Rybin; Jihong Qu; Susan F Steinberg; Richard B Robinson
Journal:  Pflugers Arch       Date:  2008-08-12       Impact factor: 3.657

5.  Discovery of a small molecule modulator of the Kv1.1/Kvβ1 channel complex that reduces neuronal excitability and in vitro epileptiform activity.

Authors:  Isabelle Niespodziany; Brice Mullier; Véronique Marie André; Philippe Ghisdal; Eric Jnoff; David Moreno-Delgado; Dominique Swinnen; Zara Sands; Martyn Wood; Christian Wolff
Journal:  CNS Neurosci Ther       Date:  2018-09-21       Impact factor: 5.243

6.  S-glutathionylation of an auxiliary subunit confers redox sensitivity to Kv4 channel inactivation.

Authors:  Henry H Jerng; Paul J Pfaffinger
Journal:  PLoS One       Date:  2014-03-27       Impact factor: 3.240

7.  Kv2 Ion Channels Determine the Expression and Localization of the Associated AMIGO-1 Cell Adhesion Molecule in Adult Brain Neurons.

Authors:  Hannah I Bishop; Melanie M Cobb; Michael Kirmiz; Laxmi K Parajuli; Danielle Mandikian; Ashleigh M Philp; Mikhail Melnik; Juha Kuja-Panula; Heikki Rauvala; Ryuichi Shigemoto; Karl D Murray; James S Trimmer
Journal:  Front Mol Neurosci       Date:  2018-01-19       Impact factor: 5.639

8.  Antibody-based validation of CNS ion channel drug targets.

Authors:  Kenneth J Rhodes; James S Trimmer
Journal:  J Gen Physiol       Date:  2008-04-14       Impact factor: 4.086

9.  A conserved pre-block interaction motif regulates potassium channel activation and N-type inactivation.

Authors:  Paul J Pfaffinger
Journal:  PLoS One       Date:  2013-11-13       Impact factor: 3.240

  9 in total

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