Literature DB >> 15924245

Molecular regions underlying the activation of low- and high-voltage activating calcium channels.

Junying Li1, Louisa Stevens, Dennis Wray.   

Abstract

We have studied two aspects of calcium channel activation. First, we investigated the molecular regions that are important in determining differences in activation between low- and high-voltage activated channels. For this, we made chimeras between the low-voltage activating Ca(V)3.1 channel and the high-voltage activating Ca(V)1.2 channel. Chimeras were expressed in oocytes, and calcium channel currents recorded by voltage clamp. For domain I, we found that the molecular region that is important in determining the voltage dependence of activation comprises the pore regions S5-P as well as P-S6, but surprisingly not the voltage sensor S1-S4 region, which might have been expected to play a major part. By contrast, the smaller, but still significant, modulating effects of domain II on activation properties were due to effects involving both S1-S4 and S5-S6 but not the I/II linker. Second, during channel activation we studied movement of the S4 segment in domain I of one of the chimeras, using cysteine-scanning mutagenesis. The reagent parachloromercuribenzensulfonate inhibited currents for mutants V263, A265, L266 and A268, but not for F269 and V271, and voltage dependence of inhibition for residue V263 indicated S4 movement, which occurred before channel opening. The data indicate movement outwards upon depolarisation so as to expose amino acids up to residue 268 in S4.

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Year:  2005        PMID: 15924245     DOI: 10.1007/s00249-005-0487-7

Source DB:  PubMed          Journal:  Eur Biophys J        ISSN: 0175-7571            Impact factor:   1.733


  41 in total

1.  Molecular determinants of inactivation within the I-II linker of alpha1E (CaV2.3) calcium channels.

Authors:  L Berrou; G Bernatchez; L Parent
Journal:  Biophys J       Date:  2001-01       Impact factor: 4.033

2.  Voltage sensors in domains III and IV, but not I and II, are immobilized by Na+ channel fast inactivation.

Authors:  A Cha; P C Ruben; A L George; E Fujimoto; F Bezanilla
Journal:  Neuron       Date:  1999-01       Impact factor: 17.173

3.  The interaction between the I-II loop and the III-IV loop of Cav2.1 contributes to voltage-dependent inactivation in a beta -dependent manner.

Authors:  Sandrine Geib; Guillaume Sandoz; Veronique Cornet; Kamel Mabrouk; Odile Fund-Saunier; Delphine Bichet; Michel Villaz; Toshinori Hoshi; Jean-Marc Sabatier; Michel De Waard
Journal:  J Biol Chem       Date:  2002-01-14       Impact factor: 5.157

4.  Functional expression and characterization of a voltage-gated CaV1.3 (alpha1D) calcium channel subunit from an insulin-secreting cell line.

Authors:  A Scholze; T D Plant; A C Dolphin; B Nürnberg
Journal:  Mol Endocrinol       Date:  2001-07

Review 5.  The impact of splice isoforms on voltage-gated calcium channel alpha1 subunits.

Authors:  Karin Jurkat-Rott; Frank Lehmann-Horn
Journal:  J Physiol       Date:  2003-11-28       Impact factor: 5.182

Review 6.  Subunit interaction sites in voltage-dependent Ca2+ channels: role in channel function.

Authors:  D Walker; M De Waard
Journal:  Trends Neurosci       Date:  1998-04       Impact factor: 13.837

7.  Potentiation by the beta subunit of the ratio of the ionic current to the charge movement in the cardiac calcium channel.

Authors:  A Neely; X Wei; R Olcese; L Birnbaumer; E Stefani
Journal:  Science       Date:  1993-10-22       Impact factor: 47.728

8.  Roles of molecular regions in determining differences between voltage dependence of activation of CaV3.1 and CaV1.2 calcium channels.

Authors:  Junying Li; Louisa Stevens; Norbert Klugbauer; Dennis Wray
Journal:  J Biol Chem       Date:  2004-04-20       Impact factor: 5.157

9.  Pore structure influences gating properties of the T-type Ca2+ channel alpha1G.

Authors:  Karel Talavera; Annelies Janssens; Norbert Klugbauer; Guy Droogmans; Bernd Nilius
Journal:  J Gen Physiol       Date:  2003-05-12       Impact factor: 4.086

10.  Coupling interactions between voltage sensors of the sodium channel as revealed by site-specific measurements.

Authors:  Baron Chanda; Osei Kwame Asamoah; Francisco Bezanilla
Journal:  J Gen Physiol       Date:  2004-03       Impact factor: 4.086

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  6 in total

1.  A single amino acid change in Ca(v)1.2 channels eliminates the permeation and gating differences between Ca(2+) and Ba(2+).

Authors:  Zhe Li; Xianming Wang; Guofeng Gao; Dongmei Qu; Buwei Yu; Congxin Huang; Keith S Elmslie; Blaise Z Peterson
Journal:  J Membr Biol       Date:  2010-01-23       Impact factor: 1.843

2.  Alternative splicing within the I-II loop controls surface expression of T-type Ca(v)3.1 calcium channels.

Authors:  Aleksandr Shcheglovitov; Iuliia Vitko; Isabelle Bidaud; Joel P Baumgart; Manuel F Navarro-Gonzalez; T Hilton Grayson; Philippe Lory; Caryl E Hill; Edward Perez-Reyes
Journal:  FEBS Lett       Date:  2008-10-16       Impact factor: 4.124

3.  The effect of the outermost basic residues in the S4 segments of the Ca(V)3.1 T-type calcium channel on channel gating.

Authors:  Martina Kurejová; L'ubica Lacinová; Michaela Pavlovicová; Martin Eschbach; Norbert Klugbauer
Journal:  Pflugers Arch       Date:  2007-07-19       Impact factor: 3.657

Review 4.  Selectivity filters and cysteine-rich extracellular loops in voltage-gated sodium, calcium, and NALCN channels.

Authors:  Robert F Stephens; W Guan; Boris S Zhorov; J David Spafford
Journal:  Front Physiol       Date:  2015-05-19       Impact factor: 4.566

5.  Role of individual S4 segments in gating of Cav3.1 T-type calcium channel by voltage.

Authors:  Bohumila Jurkovicova-Tarabova; Katarina Mackova; Lucia Moravcikova; Maria Karmazinova; Lubica Lacinova
Journal:  Channels (Austin)       Date:  2018       Impact factor: 2.581

6.  Contribution of S4 segments and S4-S5 linkers to the low-voltage activation properties of T-type CaV3.3 channels.

Authors:  Ana Laura Sanchez-Sandoval; Zazil Herrera Carrillo; Clara Estela Díaz Velásquez; Dulce María Delgadillo; Heriberto Manuel Rivera; Juan Carlos Gomora
Journal:  PLoS One       Date:  2018-02-23       Impact factor: 3.240

  6 in total

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