Literature DB >> 24515291

Cav3 T-type channels: regulators for gating, membrane expression, and cation selectivity.

A Senatore1, W Guan, J D Spafford.   

Abstract

Cav3 T-type channels are low-voltage-gated channels with rapid kinetics that are classified among the calcium-selective Cav1 and Cav2 type channels. Here, we outline the fundamental and unique regulators of T-type channels. An ubiquitous and proximally located "gating brake" works in concert with the voltage-sensor domain and S6 alpha-helical segment from domain II to set the canonical low-threshold and transient gating features of T-type channels. Gene splicing of optional exon 25c (and/or exon 26) in the short III-IV linker provides a developmental switch between modes of activity, such as activating in response to membrane depolarization, to channels requiring hyperpolarization input before being available to activate. Downstream of the gating brake in the I-II linker is a key region for regulating channel expression where alternative splicing patterns correlate with functional diversity of spike patterns, pacemaking rate (especially in the heart), stage of development, and animal size. A small but persistent window conductance depolarizes cells and boosts excitability at rest. T-type channels possess an ion selectivity that can resemble not only the calcium ion exclusive Cav1 and Cav2 channels but also the sodium ion selectivity of Nav1 sodium channels too. Alternative splicing in the extracellular turret of domain II generates highly sodium-permeable channels, which contribute to low-threshold sodium spikes. Cav3 channels are more ubiquitous among multicellular animals and more widespread in tissues than the more brain centric Nav1 sodium channels in invertebrates. Highly sodium-permeant Cav3 channels can functionally replace Nav1 channels in species where they are lacking, such as in Caenorhabditis elegans.

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Year:  2014        PMID: 24515291     DOI: 10.1007/s00424-014-1449-7

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


  105 in total

1.  Lack of the burst firing of thalamocortical relay neurons and resistance to absence seizures in mice lacking alpha(1G) T-type Ca(2+) channels.

Authors:  D Kim; I Song; S Keum; T Lee; M J Jeong; S S Kim; M W McEnery; H S Shin
Journal:  Neuron       Date:  2001-07-19       Impact factor: 17.173

Review 2.  T-type calcium channel expression and function in the diseased heart.

Authors:  Leanne Cribbs
Journal:  Channels (Austin)       Date:  2010-11-01       Impact factor: 2.581

3.  Voltage sensor of Kv1.2: structural basis of electromechanical coupling.

Authors:  Stephen B Long; Ernest B Campbell; Roderick Mackinnon
Journal:  Science       Date:  2005-07-07       Impact factor: 47.728

4.  T-type calcium channel trigger p21ras signaling pathway to ERK in Cav3.1-expressed HEK293 cells.

Authors:  Juhyun Choi; Jong-Hwa Park; Oh Yeun Kwon; Sunoh Kim; Ji Hyung Chung; Dae Sik Lim; Key Sun Kim; Hyewhon Rhim; Ye Sun Han
Journal:  Brain Res       Date:  2005-08-23       Impact factor: 3.252

5.  Two distinct populations of calcium channels in a clonal line of pituitary cells.

Authors:  C M Armstrong; D R Matteson
Journal:  Science       Date:  1985-01-04       Impact factor: 47.728

6.  The I-II loop controls plasma membrane expression and gating of Ca(v)3.2 T-type Ca2+ channels: a paradigm for childhood absence epilepsy mutations.

Authors:  Iuliia Vitko; Isabelle Bidaud; Juan Manuel Arias; Alexandre Mezghrani; Philippe Lory; Edward Perez-Reyes
Journal:  J Neurosci       Date:  2007-01-10       Impact factor: 6.167

7.  Common polymorphisms in the CACNA1H gene associated with childhood absence epilepsy in Chinese Han population.

Authors:  J Liang; Y Zhang; Y Chen; J Wang; H Pan; H Wu; K Xu; X Liu; Y Jiang; Y Shen; X Wu
Journal:  Ann Hum Genet       Date:  2006-11-22       Impact factor: 1.670

8.  Axon initial segment Ca2+ channels influence action potential generation and timing.

Authors:  Kevin J Bender; Laurence O Trussell
Journal:  Neuron       Date:  2009-01-29       Impact factor: 17.173

9.  The Trichoplax genome and the nature of placozoans.

Authors:  Mansi Srivastava; Emina Begovic; Jarrod Chapman; Nicholas H Putnam; Uffe Hellsten; Takeshi Kawashima; Alan Kuo; Therese Mitros; Asaf Salamov; Meredith L Carpenter; Ana Y Signorovitch; Maria A Moreno; Kai Kamm; Jane Grimwood; Jeremy Schmutz; Harris Shapiro; Igor V Grigoriev; Leo W Buss; Bernd Schierwater; Stephen L Dellaporta; Daniel S Rokhsar
Journal:  Nature       Date:  2008-08-21       Impact factor: 49.962

10.  Beta-subunits promote the expression of Ca(V)2.2 channels by reducing their proteasomal degradation.

Authors:  Dominic Waithe; Laurent Ferron; Karen M Page; Kanchan Chaggar; Annette C Dolphin
Journal:  J Biol Chem       Date:  2011-01-13       Impact factor: 5.157

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  14 in total

1.  T-type channels become highly permeable to sodium ions using an alternative extracellular turret region (S5-P) outside the selectivity filter.

Authors:  Adriano Senatore; Wendy Guan; Adrienne N Boone; J David Spafford
Journal:  J Biol Chem       Date:  2014-03-04       Impact factor: 5.157

2.  Cooperative roles of glucose and asparagine-linked glycosylation in T-type calcium channel expression.

Authors:  Joanna Lazniewska; Yuriy Rzhepetskyy; Fang-Xiong Zhang; Gerald W Zamponi; Norbert Weiss
Journal:  Pflugers Arch       Date:  2016-09-23       Impact factor: 3.657

3.  [Rebound depolarization of substantia gelatinosa neurons and its modulatory mechanisms in rat spinal dorsal horn].

Authors:  Ling-Chao Li; Da-Ying Zhang; Si-Cong Peng; Jing Wu; Chang-Yu Jiang; Tao Liu
Journal:  Nan Fang Yi Ke Da Xue Xue Bao       Date:  2016-02-20

4.  9-Phenanthrol modulates postinhibitory rebound and afterhyperpolarizing potentials in an excitatory motor neuron of the medicinal leech.

Authors:  James D Angstadt; Joshua R Giordano; Alexander J Goncalves
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2017-05-11       Impact factor: 1.836

Review 5.  Calcium Channel CaVα₁ Splice Isoforms - Tissue Specificity and Drug Action.

Authors:  Diane Lipscombe; Arturo Andrade
Journal:  Curr Mol Pharmacol       Date:  2015       Impact factor: 3.339

Review 6.  Dendritic Excitability and Synaptic Plasticity In Vitro and In Vivo.

Authors:  Kevin C Gonzalez; Attila Losonczy; Adrian Negrean
Journal:  Neuroscience       Date:  2022-01-05       Impact factor: 3.708

7.  Contrasting the roles of the I-II loop gating brake in CaV3.1 and CaV3.3 calcium channels.

Authors:  Mária Karmažínová; Katarína Jašková; Peter Griac; Edward Perez-Reyes; Ľubica Lacinová
Journal:  Pflugers Arch       Date:  2015-08-26       Impact factor: 4.458

Review 8.  Targeting T-type/CaV3.2 channels for chronic pain.

Authors:  Song Cai; Kimberly Gomez; Aubin Moutal; Rajesh Khanna
Journal:  Transl Res       Date:  2021-01-07       Impact factor: 10.171

Review 9.  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

10.  Calmodulin regulates Cav3 T-type channels at their gating brake.

Authors:  Jean Chemin; Valentina Taiakina; Arnaud Monteil; Michael Piazza; Wendy Guan; Robert F Stephens; Ashraf Kitmitto; Zhiping P Pang; Annette C Dolphin; Edward Perez-Reyes; Thorsten Dieckmann; Joseph Guy Guillemette; J David Spafford
Journal:  J Biol Chem       Date:  2017-09-25       Impact factor: 5.157

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