Literature DB >> 12428758

Structure of the sodium channel gene SCN11A: evidence for intron-to-exon conversion model and implications for gene evolution.

Sulayman D Dib-Hajj1, Lynda Tyrrell, Stephen G Waxman.   

Abstract

Exon/intron boundaries in the regions encoding the trans-membrane segments of voltage-gated Na channel genes are conserved, supporting their proposed evolution from a single domain channel, while the exons encoding the cytoplasmic loops are less conserved with their evolutionary heritage being less defined. SCN11A encodes the tetrodotoxin-resistant (TTX-R) sodium channel Nav1.9a/NaN, which is preferentially expressed in nociceptive primary sensory neurons of dorsal root ganglia (DRG) and trigeminal ganglia. SCN11A is localized to human chromosome 3 (3p21-24) close to the other TTX-R sodium channel genes SCN5A and SCN10A. An alternative transcript, Nav1.9b, has been detected in rat DRG and trigeminal ganglion. Nav1.9b is predicted to produce a truncated protein due to a frame-shift, which is introduced by the new sequence of exon 23c (E23c). In human and mouse SCN11A, divergent splicing signals prevent utilization of E23c. Unlike exons 5A/N in genes encoding TTX-sensitive sodium channels, which appear to have resulted from exon duplication, E23c might have evolved from the conversion of an intronic sequence. Although a functional role for Nav1.9b has yet to be established, intron-to-exon conversion may represent a mechanism for ion channels to acquire novel features.

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Year:  2002        PMID: 12428758     DOI: 10.1385/MN:26:2-3:235

Source DB:  PubMed          Journal:  Mol Neurobiol        ISSN: 0893-7648            Impact factor:   5.682


  53 in total

Review 1.  The neuron as a dynamic electrogenic machine: modulation of sodium-channel expression as a basis for functional plasticity in neurons.

Authors:  S G Waxman
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2000-02-29       Impact factor: 6.237

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Journal:  Neuron       Date:  2000-11       Impact factor: 17.173

3.  Trans-splicing of a voltage-gated sodium channel is regulated by nerve growth factor.

Authors:  A N Akopian; K Okuse; V Souslova; S England; N Ogata; J N Wood
Journal:  FEBS Lett       Date:  1999-02-19       Impact factor: 4.124

4.  Bimolecular exon ligation by the human spliceosome.

Authors:  K Anderson; M J Moore
Journal:  Science       Date:  1997-06-13       Impact factor: 47.728

5.  Alternative splicing of the sodium channel SCN8A predicts a truncated two-domain protein in fetal brain and non-neuronal cells.

Authors:  N W Plummer; M W McBurney; M H Meisler
Journal:  J Biol Chem       Date:  1997-09-19       Impact factor: 5.157

6.  Identification of a novel human voltage-gated sodium channel alpha subunit gene, SCN12A.

Authors:  S Y Jeong; J Goto; H Hashida; T Suzuki; K Ogata; N Masuda; M Hirai; K Isahara; Y Uchiyama; I Kanazawa
Journal:  Biochem Biophys Res Commun       Date:  2000-01-07       Impact factor: 3.575

7.  A neutral amino acid change in segment IIS4 dramatically alters the gating properties of the voltage-dependent sodium channel.

Authors:  V J Auld; A L Goldin; D S Krafte; W A Catterall; H A Lester; N Davidson; R J Dunn
Journal:  Proc Natl Acad Sci U S A       Date:  1990-01       Impact factor: 11.205

Review 8.  AT-AC introns: an ATtACk on dogma.

Authors:  S M Mount
Journal:  Science       Date:  1996-03-22       Impact factor: 47.728

9.  Analysis of canonical and non-canonical splice sites in mammalian genomes.

Authors:  M Burset; I A Seledtsov; V V Solovyev
Journal:  Nucleic Acids Res       Date:  2000-11-01       Impact factor: 16.971

10.  Sodium current density correlates with expression of specific alternatively spliced sodium channel mRNAs in single neurons.

Authors:  D K O'Dowd; J R Gee; M A Smith
Journal:  J Neurosci       Date:  1995-05       Impact factor: 6.167

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  7 in total

Review 1.  Voltage-gated Na+ channels: multiplicity of expression, plasticity, functional implications and pathophysiological aspects.

Authors:  J K J Diss; S P Fraser; M B A Djamgoz
Journal:  Eur Biophys J       Date:  2004-02-12       Impact factor: 1.733

2.  Interconversion of germline-limited and somatic DNA in a scrambled gene.

Authors:  Matthias Möllenbeck; Andre R O Cavalcanti; Franziska Jönsson; Hans J Lipps; Laura F Landweber
Journal:  J Mol Evol       Date:  2006-06-03       Impact factor: 2.395

3.  Gain-of-function mutations in SCN11A cause familial episodic pain.

Authors:  Xiang Yang Zhang; Jingmin Wen; Wei Yang; Cheng Wang; Luna Gao; Liang Hong Zheng; Tao Wang; Kaikai Ran; Yulei Li; Xiangyang Li; Ming Xu; Junyu Luo; Shenglei Feng; Xixiang Ma; Hongying Ma; Zuying Chai; Zhuan Zhou; Jing Yao; Xue Zhang; Jing Yu Liu
Journal:  Am J Hum Genet       Date:  2013-10-24       Impact factor: 11.025

4.  Cloning and expression of the two new variants of Nav1.5/SCN5A in rat brain.

Authors:  Cheng-Tao Ren; Dong-Mei Li; Shao-Wu Ou; Yun-Jie Wang; Yi Lin; Zhi-Hong Zong; Masaki Kameyama; Asako Kameyama
Journal:  Mol Cell Biochem       Date:  2012-02-14       Impact factor: 3.396

5.  Congenital insensitivity to pain: Fracturing without apparent skeletal pathobiology caused by an autosomal dominant, second mutation in SCN11A encoding voltage-gated sodium channel 1.9.

Authors:  Voraluck Phatarakijnirund; Steven Mumm; William H McAlister; Deborah V Novack; Deborah Wenkert; Karen L Clements; Michael P Whyte
Journal:  Bone       Date:  2015-12-31       Impact factor: 4.398

6.  Identification of the sensory neuron specific regulatory region for the mouse gene encoding the voltage-gated sodium channel NaV1.8.

Authors:  Henry L Puhl; Stephen R Ikeda
Journal:  J Neurochem       Date:  2008-05-07       Impact factor: 5.372

7.  SCN11A gene deletion causes sensorineural hearing loss by impairing the ribbon synapses and auditory nerves.

Authors:  Mian Zu; Wei-Wei Guo; Tao Cong; Fei Ji; Shi-Li Zhang; Yue Zhang; Xin Song; Wei Sun; David Z Z He; Wei-Guo Shi; Shi-Ming Yang
Journal:  BMC Neurosci       Date:  2021-03-22       Impact factor: 3.288

  7 in total

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