Literature DB >> 17333249

Gating of the HypoPP-1 mutations: I. Mutant-specific effects and cooperativity.

Alexey Kuzmenkin1, Chao Hang, Elza Kuzmenkina, Karin Jurkat-Rott.   

Abstract

Hypokalemic periodic paralysis type 1 (HypoPP-1) is a hereditary muscular disorder caused by point mutations in the gene encoding the voltage-gated Ca(2+) channel alpha subunit (Ca(v)1.1). Despite extensive research, the results on HypoPP-1 mutations are minor and controversial, as it is difficult to analyse Ca(2+) channel activation macroscopically due to an existence of two open states. In this study, we heterologously expressed the wild-type and HypoPP-1 mutations introduced into the rabbit cardiac Ca(2+) channel (R650H, R1362H, R1362G) in HEK-293 cells. To examine the cooperative effects of the mutations on channel gating, we expressed two double mutants (R650H/R1362H, R650H/R1362G). We performed whole-cell patch-clamp and, to obtain more information, applied a global fitting procedure whereby several current traces elicited by different potentials were simultaneously fit to the kinetic model containing four closed, two open and two inactivated states. We found that all HypoPP-1 mutations have "loss-of-function" features: D4/S4 mutations shift the equilibrium to the closed states, which results in reduced open probability, shorter openings and, therefore, in smaller currents, and the D2/S4 mutant slows the activation. In addition, HypoPP-1 histidine mutants favored the second open state O(2) with a possibly lower channel selectivity. Cooperativity between the D2/S4 and D4/S4 HypoPP-1 mutations manifested in dominant effects of the D4/S4 mutations on kinetics of the double mutants, suggesting different roles of D2/S4 and D4/S4 voltage sensors in the gating of voltage-gated calcium channels.

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Year:  2007        PMID: 17333249     DOI: 10.1007/s00424-007-0225-3

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  41 in total

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4.  Structural parts involved in activation and inactivation of the sodium channel.

Authors:  W Stühmer; F Conti; H Suzuki; X D Wang; M Noda; N Yahagi; H Kubo; S Numa
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7.  Voltage-sensor sodium channel mutations cause hypokalemic periodic paralysis type 2 by enhanced inactivation and reduced current.

Authors:  K Jurkat-Rott; N Mitrovic; C Hang; A Kouzmekine; P Iaizzo; J Herzog; H Lerche; S Nicole; J Vale-Santos; D Chauveau; B Fontaine; F Lehmann-Horn
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8.  Absence of Ca2+ current facilitation in skeletal muscle of transgenic mice lacking the type 1 ryanodine receptor.

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  9 in total

1.  Gating of the HypoPP-1 mutations: II. Effects of a calcium-channel agonist BayK 8644.

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Review 4.  Channelopathies of skeletal muscle excitability.

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Journal:  Curr Opin Neurol       Date:  2009-10       Impact factor: 5.710

6.  Recent advances in the pathogenesis and drug action in periodic paralyses and related channelopathies.

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7.  Hypokalemic periodic paralysis; two different genes responsible for similar clinical manifestations.

Authors:  Hunmin Kim; Hee Hwang; Hae Il Cheong; Hye Won Park
Journal:  Korean J Pediatr       Date:  2011-11-30

8.  Pathophysiological role of omega pore current in channelopathies.

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9.  A gating model for wildtype and R1448H Nav1.4 channels in paramyotonia.

Authors:  Boris Holzherr; Frank Lehmann-Horn; Elza Kuzmenkina; Chunxiang Fan; Karin Jurkat-Rott
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  9 in total

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