JBC INTERFERin siRNA transfection reagent

HOME HELP FEEDBACK SUBSCRIPTIONS ARCHIVE SEARCH TABLE OF CONTENTS
 QUICK SEARCH:   [advanced]


     


Originally published In Press as doi:10.1074/jbc.M008373200 on January 17, 2001

J. Biol. Chem., Vol. 276, Issue 17, 13600-13605, April 27, 2001
This Article
Right arrow Full Text
Right arrow Full Text (PDF)
Right arrow All Versions of this Article:
276/17/13600    most recent
M008373200v1
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Right arrow Citation Map
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Seebohm, G.
Right arrow Articles by Lerche, C.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Seebohm, G.
Right arrow Articles by Lerche, C.
Social Bookmarking
 Add to CiteULike   Add to Complore   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati  
What's this?

Identification of Specific Pore Residues Mediating KCNQ1 Inactivation
A NOVEL MECHANISM FOR LONG QT SYNDROME*

Guiscard Seebohm, Constanze R. Scherer, Andreas E. Busch, and Christian LercheDagger

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.


* 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.

Dagger To whom correspondence should be addressed. Tel.: 33-673-846986; Fax: 49-69-305-16393; E-mail: christian.lerche@aventis.com.


Copyright © 2001 by The American Society for Biochemistry and Molecular Biology, Inc.
Add to CiteULike CiteULike   Add to Complore Complore   Add to Connotea Connotea   Add to Del.icio.us Del.icio.us   Add to Digg Digg   Add to Reddit Reddit   Add to Technorati Technorati    What's this?


This article has been cited by other articles:


Home page
J. Biol. Chem.Home page
Z. Gao, Q. Xiong, H. Sun, and M. Li
Desensitization of Chemical Activation by Auxiliary Subunits: CONVERGENCE OF MOLECULAR DETERMINANTS CRITICAL FOR AUGMENTING KCNQ1 POTASSIUM CHANNELS
J. Biol. Chem., August 15, 2008; 283(33): 22649 - 22658.
[Abstract] [Full Text] [PDF]


Home page
Biophys. JHome page
G. Gibor, D. Yakubovich, A. Rosenhouse-Dantsker, A. Peretz, H. Schottelndreier, G. Seebohm, N. Dascal, D. E. Logothetis, Y. Paas, and B. Attali
An Inactivation Gate in the Selectivity Filter of KCNQ1 Potassium Channels
Biophys. J., December 15, 2007; 93(12): 4159 - 4172.
[Abstract] [Full Text] [PDF]


Home page
Mol. Pharmacol.Home page
C. Lerche, I. Bruhova, H. Lerche, K. Steinmeyer, A. D. Wei, N. Strutz-Seebohm, F. Lang, A. E. Busch, B. S. Zhorov, and G. Seebohm
Chromanol 293B Binding in KCNQ1 (Kv7.1) Channels Involves Electrostatic Interactions with a Potassium Ion in the Selectivity Filter
Mol. Pharmacol., June 1, 2007; 71(6): 1503 - 1511.
[Abstract] [Full Text] [PDF]


Home page
Biophys. JHome page
H. S. Jensen, M. Grunnet, and S.-P. Olesen
Inactivation as a New Regulatory Mechanism for Neuronal Kv7 Channels
Biophys. J., April 15, 2007; 92(8): 2747 - 2756.
[Abstract] [Full Text] [PDF]


Home page
J. Physiol.Home page
G. C. L. Bett, M. J. Morales, D. L. Beahm, M. E. Duffey, and R. L. Rasmusson
Ancillary subunits and stimulation frequency determine the potency of chromanol 293B block of the KCNQ1 potassium channel
J. Physiol., November 1, 2006; 576(3): 755 - 767.
[Abstract] [Full Text] [PDF]


Home page
Biophys. JHome page
G. Seebohm, N. Strutz-Seebohm, O. N. Ureche, R. Baltaev, A. Lampert, G. Kornichuk, K. Kamiya, T. V. Wuttke, H. Lerche, M. C. Sanguinetti, et al.
Differential Roles of S6 Domain Hinges in the Gating of KCNQ Potassium Channels
Biophys. J., March 15, 2006; 90(6): 2235 - 2244.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
N. Gamper, Y. Li, and M. S. Shapiro
Structural Requirements for Differential Sensitivity of KCNQ K+ Channels to Modulation by Ca2+/Calmodulin
Mol. Biol. Cell, August 1, 2005; 16(8): 3538 - 3551.
[Abstract] [Full Text] [PDF]


Home page
DiabetesHome page
S. Ullrich, S. Berchtold, F. Ranta, G. Seebohm, G. Henke, A. Lupescu, A. F. Mack, C.-M. Chao, J. Su, R. Nitschke, et al.
Serum- and Glucocorticoid-Inducible Kinase 1 (SGK1) Mediates Glucocorticoid-Induced Inhibition of Insulin Secretion
Diabetes, April 1, 2005; 54(4): 1090 - 1099.
[Abstract] [Full Text] [PDF]


Home page
Mol. Pharmacol.Home page
T. V. Wuttke, G. Seebohm, S. Bail, S. Maljevic, and H. Lerche
The New Anticonvulsant Retigabine Favors Voltage-Dependent Opening of the Kv7.2 (KCNQ2) Channel by Binding to Its Activation Gate
Mol. Pharmacol., April 1, 2005; 67(4): 1009 - 1017.
[Abstract] [Full Text] [PDF]


Home page
J. Physiol.Home page
G. Seebohm, P. Westenskow, F. Lang, and M. C Sanguinetti
Mutation of colocalized residues of the pore helix and transmembrane segments S5 and S6 disrupt deactivation and modify inactivation of KCNQ1 K+ channels
J. Physiol., March 1, 2005; 563(2): 359 - 368.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
A. Etxeberria, I. Santana-Castro, M. P. Regalado, P. Aivar, and A. Villarroel
Three Mechanisms Underlie KCNQ2/3 Heteromeric Potassium M-Channel Potentiation
J. Neurosci., October 13, 2004; 24(41): 9146 - 9152.
[Abstract] [Full Text] [PDF]


Home page
CirculationHome page
C. Bellocq, A. C.G. van Ginneken, C. R. Bezzina, M. Alders, D. Escande, M. M.A.M. Mannens, I. Baro, and A. A.M. Wilde
Mutation in the KCNQ1 Gene Leading to the Short QT-Interval Syndrome
Circulation, May 25, 2004; 109(20): 2394 - 2397.
[Abstract] [Full Text] [PDF]


Home page
BrainHome page
N. A. Singh, P. Westenskow, C. Charlier, C. Pappas, J. Leslie, J. Dillon, V. E. Anderson, M. C. Sanguinetti, and M. F. Leppert
KCNQ2 and KCNQ3 potassium channel genes in benign familial neonatal convulsions: expansion of the functional and mutation spectrum
Brain, December 1, 2003; 126(12): 2726 - 2737.
[Abstract] [Full Text] [PDF]


Home page
Circ. Res.Home page
G. Seebohm, M. Pusch, J. Chen, and M. C. Sanguinetti
Pharmacological Activation of Normal and Arrhythmia-Associated Mutant KCNQ1 Potassium Channels
Circ. Res., November 14, 2003; 93(10): 941 - 947.
[Abstract] [Full Text] [PDF]


Home page
Mol. Pharmacol.Home page
G. Seebohm, J. Chen, N. Strutz, C. Culberson, C. Lerche, and M. C. Sanguinetti
Molecular Determinants of KCNQ1 Channel Block by a Benzodiazepine
Mol. Pharmacol., July 1, 2003; 64(1): 70 - 77.
[Abstract] [Full Text] [PDF]




HOME HELP FEEDBACK SUBSCRIPTIONS ARCHIVE SEARCH TABLE OF CONTENTS
 All ASBMB Journals   Molecular and Cellular Proteomics 
 Journal of Lipid Research   ASBMB Today 
Copyright © 2001 by the American Society for Biochemistry and Molecular Biology.