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J. Biol. Chem., Vol. 276, Issue 17, 13600-13605, April 27, 2001
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From the Aventis Pharma Deutschland GmbH, DG Cardiovascular
Diseases, Building H821, D-65926 Frankfurt am Main, Germany
KCNQ1 inactivation bears
electrophysiological characteristics different from classical N- and
C-type inactivation in Shaker-like potassium channels.
However, the molecular site of KCNQ1 inactivation has not yet been
determined. KCNQ2 channels do not exert a fast inactivation in contrast
to KCNQ1 channels. By expressing functional chimeras between KCNQ1 and
KCNQ2 in Xenopus oocytes, we mapped the region of this
inactivation to transmembrane domain S5 and the pore loop H5 and
finally narrowed down the site to positions Gly272 and
Val307 in KCNQ1. Exchanging these two amino acids
individually with the analogous KCNQ2 residue abolished inactivation.
Furthermore, a KCNQ1-like inactivation was introduced into KCNQ2 by
mutagenesis in the corresponding region, confirming its relevance for
the inactivation process. As KCNQ1 inactivation involves the
regions S5 and H5, it exhibits a geography distinct from N- or C-type inactivation. Native cardiac IKs channels
comprising KCNQ1 and accessory MinK subunits do not inactivate because
of the functional interaction of KCNQ1 with MinK. Mutations in
KCNQ1 can lead to long QT1 syndrome, an inherited form of
arrhythmia. The long QT1 mutant KCNQ1(L273F) displays a pronounced
KCNQ1 inactivation. Here we show that when expressing mutant
IKs channels formed from KCNQ1(L273F) and
MinK, MinK association no longer eliminates KCNQ1 inactivation. This
results in smaller repolarizing currents in the heart and therefore
represents a novel mechanism leading to long QT syndrome.
Identification of Specific Pore Residues Mediating KCNQ1
Inactivation
A NOVEL MECHANISM FOR LONG QT SYNDROME*
*
The costs of publication of this
article were defrayed in part by the
payment of page charges. The article
must therefore be hereby marked
"advertisement" in
accordance with 18 U.S.C. Section
1734 solely to indicate this fact.
To whom correspondence should be addressed. Tel.: 33-673-846986;
Fax: 49-69-305-16393; E-mail: christian.lerche@aventis.com.
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