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PredicateObject
rdf:type
lifeskim:mentions
pubmed:issue
28
pubmed:dateCreated
2004-7-5
pubmed:abstractText
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.
pubmed:language
eng
pubmed:journal
pubmed:citationSubset
IM
pubmed:chemical
http://linkedlifedata.com/resource/pubmed/chemical/2,2'-dithiobis(5-nitropyridine), http://linkedlifedata.com/resource/pubmed/chemical/Enzyme Inhibitors, http://linkedlifedata.com/resource/pubmed/chemical/Hydroquinones, http://linkedlifedata.com/resource/pubmed/chemical/KCNA1 protein, human, http://linkedlifedata.com/resource/pubmed/chemical/KCNA4 protein, human, http://linkedlifedata.com/resource/pubmed/chemical/Kv1.1 Potassium Channel, http://linkedlifedata.com/resource/pubmed/chemical/Kv1.4 Potassium Channel, http://linkedlifedata.com/resource/pubmed/chemical/Potassium Channels, http://linkedlifedata.com/resource/pubmed/chemical/Potassium Channels, Voltage-Gated, http://linkedlifedata.com/resource/pubmed/chemical/Protein-Tyrosine Kinases, http://linkedlifedata.com/resource/pubmed/chemical/Pyridines, http://linkedlifedata.com/resource/pubmed/chemical/erbstatin
pubmed:status
MEDLINE
pubmed:month
Jul
pubmed:issn
0021-9258
pubmed:author
pubmed:issnType
Print
pubmed:day
9
pubmed:volume
279
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
29226-30
pubmed:dateRevised
2009-11-19
pubmed:meshHeading
pubmed-meshheading:15136567-Animals, pubmed-meshheading:15136567-CHO Cells, pubmed-meshheading:15136567-Cricetinae, pubmed-meshheading:15136567-Enzyme Inhibitors, pubmed-meshheading:15136567-Humans, pubmed-meshheading:15136567-Hydroquinones, pubmed-meshheading:15136567-Kv1.1 Potassium Channel, pubmed-meshheading:15136567-Kv1.4 Potassium Channel, pubmed-meshheading:15136567-Membrane Potentials, pubmed-meshheading:15136567-Models, Molecular, pubmed-meshheading:15136567-Molecular Structure, pubmed-meshheading:15136567-Oocytes, pubmed-meshheading:15136567-Patch-Clamp Techniques, pubmed-meshheading:15136567-Potassium Channels, pubmed-meshheading:15136567-Potassium Channels, Voltage-Gated, pubmed-meshheading:15136567-Protein Structure, Secondary, pubmed-meshheading:15136567-Protein-Tyrosine Kinases, pubmed-meshheading:15136567-Pyridines, pubmed-meshheading:15136567-Xenopus
pubmed:year
2004
pubmed:articleTitle
Disinactivation of N-type inactivation of voltage-gated K channels by an erbstatin analogue.
pubmed:affiliation
Department of Women's Health and Bone, Wyeth Research, Collegeville, Pennsylvania 19426, USA.
pubmed:publicationType
Journal Article