Literature DB >> 11211100

Cytoskeletal interactions determine the electrophysiological properties of human EAG potassium channels.

J Camacho1, A Sánchez, W Stühmer, L A Pardo.   

Abstract

The electrophysiological properties of ether a go-go (EAG) potassium channels are modified during the cell cycle when they are expressed in heterologous systems. In Chinese hamster ovary (CHO) mammalian somatic cells we found that the cell-cycle-dependent modulation of human EAG (hEAG) channels occurs during the M phase. This modulation has three components: reduction in current density, increased sensitivity to block by intracellular sodium, and increased selectivity for potassium ions. In this work, these three properties have been used to define the mitotic phenotype of EAG currents. The signaling pathway leading to such changes of channel properties is unknown. We tested the hypothesis that cytoskeletal interactions might affect the electrophysiological changes observed during the cell cycle. The disruption of actin filaments induces a significant increase in current density, without inducing the cell-cycle-related phenotype. In contrast, disturbance of the microtubules, achieved by pharmacological means or by mechanical excision of the membrane patch, does induce the cell-cycle-related phenotype. Our results demonstrate that hEAG channels establish complex interactions with cytoskeletal elements, and that these interactions strongly influence the properties of the channels. We also conclude that the electrophysiological changes observed during the cell cycle are most likely due to reorganization of the cytoskeleton during the G2/M transition.

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Year:  2000        PMID: 11211100     DOI: 10.1007/s004240000420

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


  21 in total

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Journal:  Am J Physiol Cell Physiol       Date:  2013-11-06       Impact factor: 4.249

2.  Tubulin as a binding partner of the heag2 voltage-gated potassium channel.

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3.  Expression of Eag1 K+ channel and ErbBs in human pituitary adenomas: cytoskeleton arrangement patterns in cultured cells.

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Journal:  Int J Clin Exp Pathol       Date:  2013-02-15

Review 4.  Eag1 Voltage-Dependent Potassium Channels: Structure, Electrophysiological Characteristics, and Function in Cancer.

Authors:  Xuzhao Wang; Yafei Chen; Yuhong Zhang; Shuai Guo; Li Mo; Hailong An; Yong Zhan
Journal:  J Membr Biol       Date:  2017-02-03       Impact factor: 1.843

5.  Characterization of Eag1 channel lateral mobility in rat hippocampal cultures by single-particle-tracking with quantum dots.

Authors:  David Gómez-Varela; Tobias Kohl; Manuela Schmidt; María E Rubio; Hiroshi Kawabe; Ralf B Nehring; Stephan Schäfer; Walter Stühmer; Luis A Pardo
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Review 6.  Kv10.1 K(+) channel: from physiology to cancer.

Authors:  Halima Ouadid-Ahidouch; Ahmed Ahidouch; Luis A Pardo
Journal:  Pflugers Arch       Date:  2016-01-08       Impact factor: 3.657

7.  The voltage dependence of hEag currents is not determined solely by membrane-spanning domains.

Authors:  Eva Lörinczi; Joanna Napp; Constanza Contreras-Jurado; Luis A Pardo; Walter Stühmer
Journal:  Eur Biophys J       Date:  2008-04-01       Impact factor: 1.733

8.  Effect of S5P alpha-helix charge mutants on inactivation of hERG K+ channels.

Authors:  C E Clarke; A P Hill; J Zhao; M Kondo; R N Subbiah; T J Campbell; J I Vandenberg
Journal:  J Physiol       Date:  2006-03-23       Impact factor: 5.182

9.  Expression and prognostic roles of Eag1 in resected esophageal squamous cell carcinomas.

Authors:  Xiang-Wu Ding; Xiang-Gui Wang; He-Sheng Luo; Shi-Yun Tan; Shan Gao; Bing Luo; Hua Jiang
Journal:  Dig Dis Sci       Date:  2007-12-13       Impact factor: 3.199

10.  The potassium channel Ether à go-go is a novel prognostic factor with functional relevance in acute myeloid leukemia.

Authors:  Jasmin R Agarwal; Frank Griesinger; Walter Stühmer; Luis A Pardo
Journal:  Mol Cancer       Date:  2010-01-27       Impact factor: 27.401

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