Literature DB >> 23609407

Structural analysis of calmodulin binding to ion channels demonstrates the role of its plasticity in regulation.

Nadezda V Kovalevskaya1, Michiel van de Waterbeemd, Fedir M Bokhovchuk, Neil Bate, René J M Bindels, Joost G J Hoenderop, Geerten W Vuister.   

Abstract

The Ca²⁺-binding protein calmodulin (CaM) is a well-known regulator of ion-channel activity. Consequently, the Protein Data Bank contains many structures of CaM in complex with different fragments of ion channels that together display a variety of binding modes. In addition to the canonical interaction, in which CaM engages its target with both its domains, many of the ion-channel-CaM complexes demonstrate alternative non-canonical binding modes that depend on the target and experimental conditions. Based on these findings, several mechanisms of ion-channel regulation by CaM have been proposed, all exploiting its plasticity and flexibility in interacting with its targets. In this review, we focus on complexes of CaM with either the voltage-gated calcium channels; the voltage-gated sodium channels or the small conductance calcium-activated potassium channels, for which both structural and functional data are available. For each channel, the functional relevance of these structural data and possible mechanism of calcium-dependent (in)activation and/or facilitation are discussed in detail.

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Year:  2013        PMID: 23609407     DOI: 10.1007/s00424-013-1278-0

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


  67 in total

1.  Structure of the gating domain of a Ca2+-activated K+ channel complexed with Ca2+/calmodulin.

Authors:  M A Schumacher; A F Rivard; H P Bächinger; J P Adelman
Journal:  Nature       Date:  2001-04-26       Impact factor: 49.962

Review 2.  Apocalmodulin.

Authors:  L A Jurado; P S Chockalingam; H W Jarrett
Journal:  Physiol Rev       Date:  1999-07       Impact factor: 37.312

Review 3.  Sodium channel inactivation: molecular determinants and modulation.

Authors:  Werner Ulbricht
Journal:  Physiol Rev       Date:  2005-10       Impact factor: 37.312

4.  A modular switch for spatial Ca2+ selectivity in the calmodulin regulation of CaV channels.

Authors:  Ivy E Dick; Michael R Tadross; Haoya Liang; Lai Hock Tay; Wanjun Yang; David T Yue
Journal:  Nature       Date:  2008-01-30       Impact factor: 49.962

5.  Crystallographic basis for calcium regulation of sodium channels.

Authors:  Maen F Sarhan; Ching-Chieh Tung; Filip Van Petegem; Christopher A Ahern
Journal:  Proc Natl Acad Sci U S A       Date:  2012-02-13       Impact factor: 11.205

6.  Structure of calmodulin refined at 2.2 A resolution.

Authors:  Y S Babu; C E Bugg; W J Cook
Journal:  J Mol Biol       Date:  1988-11-05       Impact factor: 5.469

7.  Urinary plasmin inhibits TRPV5 in nephrotic-range proteinuria.

Authors:  Kukiat Tudpor; Sergio Laínez; Arjan J Kwakernaak; Nadezda V Kovalevskaya; Sjoerd Verkaart; Siebe van Genesen; Annemiete van der Kemp; Gerjan Navis; René J M Bindels; Joost G J Hoenderop
Journal:  J Am Soc Nephrol       Date:  2012-09-27       Impact factor: 10.121

8.  Ca2+ binding to calmodulin.

Authors:  J D Potter; P Strang-Brown; P L Walker; S Iida
Journal:  Methods Enzymol       Date:  1983       Impact factor: 1.600

9.  Solution NMR structure of Apo-calmodulin in complex with the IQ motif of human cardiac sodium channel NaV1.5.

Authors:  Benjamin Chagot; Walter J Chazin
Journal:  J Mol Biol       Date:  2010-12-15       Impact factor: 5.469

10.  Structures of CaV2 Ca2+/CaM-IQ domain complexes reveal binding modes that underlie calcium-dependent inactivation and facilitation.

Authors:  Eun Young Kim; Christine H Rumpf; Yuichiro Fujiwara; Elizabeth S Cooley; Filip Van Petegem; Daniel L Minor
Journal:  Structure       Date:  2008-10-08       Impact factor: 5.006

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  20 in total

1.  Effect of T-type calcium channel blockers on spiral ganglion neurons of aged C57BL/6J mice.

Authors:  Ya-Feng Yu; Wen-Ying Wu; Gen-Sheng Xiao; Jian Shi; Hong-Yang Ling
Journal:  Int J Clin Exp Med       Date:  2015-09-15

2.  A novel calmodulin site in the Cav1.2 N-terminus regulates calcium-dependent inactivation.

Authors:  Brett A Simms; Ivana Assis Souza; Gerald W Zamponi
Journal:  Pflugers Arch       Date:  2013-12-19       Impact factor: 3.657

3.  The CaMKII inhibitor KN93-calmodulin interaction and implications for calmodulin tuning of NaV1.5 and RyR2 function.

Authors:  Christopher N Johnson; Rekha Pattanayek; Franck Potet; Robyn T Rebbeck; Daniel J Blackwell; Roman Nikolaienko; Vasco Sequeira; Remy Le Meur; Przemysław B Radwański; Jonathan P Davis; Aleksey V Zima; Razvan L Cornea; Steven M Damo; Sandor Györke; Alfred L George; Björn C Knollmann
Journal:  Cell Calcium       Date:  2019-07-30       Impact factor: 6.817

Review 4.  Structure and function of the calcium-selective TRP channel TRPV6.

Authors:  Maria V Yelshanskaya; Kirill D Nadezhdin; Maria G Kurnikova; Alexander I Sobolevsky
Journal:  J Physiol       Date:  2020-03-13       Impact factor: 5.182

5.  The X-ray structure of juvenile hormone diol kinase from the silkworm Bombyx mori.

Authors:  Jingxu Guo; Ronan M Keegan; Daniel J Rigden; Peter T Erskine; Steve P Wood; Sheng Li; Jonathan B Cooper
Journal:  Acta Crystallogr F Struct Biol Commun       Date:  2021-11-25       Impact factor: 1.056

6.  Multiple Calmodulin-Binding Sites Positively and Negatively Regulate Arabidopsis CYCLIC NUCLEOTIDE-GATED CHANNEL12.

Authors:  Thomas A DeFalco; Christopher B Marshall; Kim Munro; Hong-Gu Kang; Wolfgang Moeder; Mitsuhiko Ikura; Wayne A Snedden; Keiko Yoshioka
Journal:  Plant Cell       Date:  2016-06-22       Impact factor: 11.277

Review 7.  Targeting the Small- and Intermediate-Conductance Ca-Activated Potassium Channels: The Drug-Binding Pocket at the Channel/Calmodulin Interface.

Authors:  Meng Cui; Guangrong Qin; Kunqian Yu; M Scott Bowers; Miao Zhang
Journal:  Neurosignals       Date:  2014-10-08

8.  Differential modulation of SK channel subtypes by phosphorylation.

Authors:  Young-Woo Nam; Dezhi Kong; Dong Wang; Razan Orfali; Rinzhin T Sherpa; Jennifer Totonchy; Surya M Nauli; Miao Zhang
Journal:  Cell Calcium       Date:  2021-01-06       Impact factor: 6.817

9.  Serotonin 5-HT3 receptor-mediated vomiting occurs via the activation of Ca2+/CaMKII-dependent ERK1/2 signaling in the least shrew (Cryptotis parva).

Authors:  Weixia Zhong; Tarun E Hutchinson; Seetha Chebolu; Nissar A Darmani
Journal:  PLoS One       Date:  2014-08-14       Impact factor: 3.240

Review 10.  Conduits of life's spark: a perspective on ion channel research since the birth of neuron.

Authors:  Ehud Y Isacoff; Lily Y Jan; Daniel L Minor
Journal:  Neuron       Date:  2013-10-30       Impact factor: 17.173

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