Literature DB >> 23575853

The neuroprotective drug riluzole acts via small conductance Ca2+-activated K+ channels to ameliorate defects in spinal muscular atrophy models.

Maria Dimitriadi1, Min Jeong Kye, Geetika Kalloo, Jill M Yersak, Mustafa Sahin, Anne C Hart.   

Abstract

Spinal muscular atrophy (SMA), a recessive neuromuscular disorder, is caused by diminished function of the Survival Motor Neuron (SMN) protein. To define the cellular processes pertinent to SMA, parallel genetic screens were undertaken in Drosophila and Caenorhabditis elegans SMA models to identify modifiers of the SMN loss of function phenotypes. One class of such genetic modifiers was the small conductance, Ca(2+)-activated K(+) (SK) channels. SK channels allow efflux of potassium ions when intracellular calcium increases and can be activated by the neuroprotective drug riluzole. The latter is the only drug with proven, albeit modest, efficacy in the treatment of amyotrophic lateral sclerosis. It is unclear if riluzole can extend life span or ameliorate symptoms in SMA patients as previous studies were limited and of insufficient power to draw any conclusions. The critical biochemical target of riluzole in motor neuron disease is not known, but the pharmacological targets of riluzole include SK channels. We examine here the impact of riluzole in two different SMA models. In vertebrate neurons, riluzole treatment restored axon outgrowth caused by diminished SMN. Additionally, riluzole ameliorated the neuromuscular defects in a C. elegans SMA model and SK channel function was required for this beneficial effect. We propose that riluzole improves motor neuron function by acting on SK channels and suggest that SK channels may be important therapeutic targets for SMA patients.

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Year:  2013        PMID: 23575853      PMCID: PMC3652322          DOI: 10.1523/JNEUROSCI.1536-12.2013

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  54 in total

1.  Molecular coupling of a Ca2+-activated K+ channel to L-type Ca2+ channels via alpha-actinin2.

Authors:  Ling Lu; Qian Zhang; Valeriy Timofeyev; Zhao Zhang; J Nilas Young; Hee-Sup Shin; Anne A Knowlton; Nipavan Chiamvimonvat
Journal:  Circ Res       Date:  2006-11-16       Impact factor: 17.367

2.  Pharmacological properties of benzazoles. I. Relationship between structure and paralyzing action.

Authors:  E F DOMINO; K R UNNA; J KERWIN
Journal:  J Pharmacol Exp Ther       Date:  1952-08       Impact factor: 4.030

3.  Increased persistent Na(+) current and its effect on excitability in motoneurones cultured from mutant SOD1 mice.

Authors:  J J Kuo; T Siddique; R Fu; C J Heckman
Journal:  J Physiol       Date:  2005-01-13       Impact factor: 5.182

Review 4.  Molecular and cellular basis of small--and intermediate-conductance, calcium-activated potassium channel function in the brain.

Authors:  P Pedarzani; M Stocker
Journal:  Cell Mol Life Sci       Date:  2008-10       Impact factor: 9.261

5.  TDP-43 overexpression enhances exon 7 inclusion during the survival of motor neuron pre-mRNA splicing.

Authors:  Jayarama Krishnan Bose; I-Fan Wang; Li Hung; Woan-Yuh Tarn; C-K James Shen
Journal:  J Biol Chem       Date:  2008-08-14       Impact factor: 5.157

6.  Riluzole-induced block of voltage-gated Na+ current and activation of BKCa channels in cultured differentiated human skeletal muscle cells.

Authors:  Ya-Jean Wang; Ming-Wei Lin; An-An Lin; Sheng-Nan Wu
Journal:  Life Sci       Date:  2007-11-01       Impact factor: 5.037

7.  Tuberous sclerosis complex proteins control axon formation.

Authors:  Yong-Jin Choi; Alessia Di Nardo; Ioannis Kramvis; Lynsey Meikle; David J Kwiatkowski; Mustafa Sahin; Xi He
Journal:  Genes Dev       Date:  2008-09-15       Impact factor: 11.361

8.  A Drosophila melanogaster model of spinal muscular atrophy reveals a function for SMN in striated muscle.

Authors:  T K Rajendra; Graydon B Gonsalvez; Michael P Walker; Karl B Shpargel; Helen K Salz; A Gregory Matera
Journal:  J Cell Biol       Date:  2007-03-12       Impact factor: 10.539

9.  Modeling spinal muscular atrophy in Drosophila.

Authors:  Howard Chia-Hao Chang; Douglas N Dimlich; Takakazu Yokokura; Ashim Mukherjee; Mark W Kankel; Anindya Sen; Vasanthi Sridhar; Tudor A Fulga; Anne C Hart; David Van Vactor; Spyros Artavanis-Tsakonas
Journal:  PLoS One       Date:  2008-09-15       Impact factor: 3.240

10.  Deletion of smn-1, the Caenorhabditis elegans ortholog of the spinal muscular atrophy gene, results in locomotor dysfunction and reduced lifespan.

Authors:  Michael Briese; Behrooz Esmaeili; Sandrine Fraboulet; Emma C Burt; Stefanos Christodoulou; Paula R Towers; Kay E Davies; David B Sattelle
Journal:  Hum Mol Genet       Date:  2008-10-01       Impact factor: 6.150

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  20 in total

Review 1.  Spinal muscular atrophy: an update on therapeutic progress.

Authors:  Joonbae Seo; Matthew D Howell; Natalia N Singh; Ravindra N Singh
Journal:  Biochim Biophys Acta       Date:  2013-08-27

2.  Subtype-selective positive modulation of KCa 2 channels depends on the HA/HB helices.

Authors:  Young-Woo Nam; Meng Cui; Naglaa Salem El-Sayed; Razan Orfali; Misa Nguyen; Grace Yang; Mohammad Asikur Rahman; Judy Lee; Miao Zhang
Journal:  Br J Pharmacol       Date:  2021-10-01       Impact factor: 8.739

3.  Activation mechanism of a human SK-calmodulin channel complex elucidated by cryo-EM structures.

Authors:  Chia-Hsueh Lee; Roderick MacKinnon
Journal:  Science       Date:  2018-05-04       Impact factor: 47.728

4.  The survival motor neuron gene smn-1 interacts with the U2AF large subunit gene uaf-1 to regulate Caenorhabditis elegans lifespan and motor functions.

Authors:  Xiaoyang Gao; Yanling Teng; Jintao Luo; Liange Huang; Min Li; Zhuohua Zhang; Yong-Chao Ma; Long Ma
Journal:  RNA Biol       Date:  2014       Impact factor: 4.652

5.  Neuroprotective Effect of the Novel Compound ITH33/IQM9.21 Against Oxidative Stress and Na(+) and Ca(2+) Overload in Motor Neuron-like NSC-34 Cells.

Authors:  Ana J Moreno-Ortega; Lamiaa Mouhid Al-Achbili; Elba Alonso; Cristóbal de Los Ríos; Antonio G García; Ana Ruiz-Nuño; María F Cano-Abad
Journal:  Neurotox Res       Date:  2016-04-28       Impact factor: 3.911

Review 6.  GEMINs: potential therapeutic targets for spinal muscular atrophy?

Authors:  Rebecca Borg; Ruben J Cauchi
Journal:  Front Neurosci       Date:  2014-10-15       Impact factor: 4.677

7.  Hydrophobic interactions between the HA helix and S4-S5 linker modulate apparent Ca2+ sensitivity of SK2 channels.

Authors:  Young-Woo Nam; Meng Cui; Razan Orfali; Adam Viegas; Misa Nguyen; Eman H M Mohammed; Khalid A Zoghebi; Simin Rahighi; Keykavous Parang; Miao Zhang
Journal:  Acta Physiol (Oxf)       Date:  2020-09-10       Impact factor: 6.311

Review 8.  In Search of a Cure: The Development of Therapeutics to Alter the Progression of Spinal Muscular Atrophy.

Authors:  Kristine S Ojala; Emily J Reedich; Christine J DiDonato; Stephen D Meriney
Journal:  Brain Sci       Date:  2021-02-05

9.  Neuron-specific knock-down of SMN1 causes neuron degeneration and death through an apoptotic mechanism.

Authors:  Ivan Gallotta; Nadia Mazzarella; Alessandra Donato; Alessandro Esposito; Justin C Chaplin; Silvana Castro; Giuseppina Zampi; Giorgio S Battaglia; Massimo A Hilliard; Paolo Bazzicalupo; Elia Di Schiavi
Journal:  Hum Mol Genet       Date:  2016-06-03       Impact factor: 6.150

10.  Structural insights into the potency of SK channel positive modulators.

Authors:  Young-Woo Nam; Razan Orfali; Tingting Liu; Kunqian Yu; Meng Cui; Heike Wulff; Miao Zhang
Journal:  Sci Rep       Date:  2017-12-07       Impact factor: 4.379

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