Literature DB >> 24219545

Regulation of Na(+)/K(+)-ATPase by neuron-specific transcription factor Sp4: implication in the tight coupling of energy production, neuronal activity and energy consumption in neurons.

Kaid Johar1, Anusha Priya, Margaret T T Wong-Riley.   

Abstract

A major source of energy demand in neurons is the Na(+)/K(+)-ATPase pump that restores the ionic gradient across the plasma membrane subsequent to depolarizing neuronal activity. The energy comes primarily from mitochondrial oxidative metabolism, of which cytochrome c oxidase (COX) is a key enzyme. Recently, we found that all 13 subunits of COX are regulated by specificity (Sp) factors, and that the neuron-specific Sp4, but not Sp1 or Sp3, regulates the expression of key glutamatergic receptor subunits as well. The present study sought to test our hypothesis that Sp4 also regulates Na(+)/K(+)-ATPase subunit genes in neurons. By means of multiple approaches, including in silico analysis, electrophoretic mobility shift and supershift assays, chromatin immunoprecipitation, promoter mutational analysis, over-expression, and RNA interference studies, we found that Sp4, with minor contributions from Sp1 and Sp3, functionally regulate the Atp1a1, Atp1a3, and Atp1b1 subunit genes of Na(+)/K(+)-ATPase in neurons. Transcripts of all three genes were up-regulated by depolarizing KCl stimulation and down-regulated by the impulse blocker tetrodotoxin (TTX), indicating that their expression was activity-dependent. Silencing of Sp4 blocked the up-regulation of these genes induced by KCl, whereas over-expression of Sp4 rescued them from TTX-induced suppression. The effect of silencing or over-expressing Sp4 on primary neurons was much greater than those of Sp1 or Sp3. The binding sites of Sp factors on these genes are conserved among mice, rats and humans. Thus, Sp4 plays an important role in the transcriptional coupling of energy generation and energy consumption in neurons.
© 2013 Federation of European Neuroscience Societies and John Wiley & Sons Ltd.

Entities:  

Keywords:  RNA silencing; Sp family of transcription factors; TTX; cytochrome c oxidase; depolarization; over-expression

Mesh:

Substances:

Year:  2013        PMID: 24219545      PMCID: PMC4017901          DOI: 10.1111/ejn.12415

Source DB:  PubMed          Journal:  Eur J Neurosci        ISSN: 0953-816X            Impact factor:   3.386


  59 in total

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Authors:  Jack H Kaplan
Journal:  Annu Rev Biochem       Date:  2001-11-09       Impact factor: 23.643

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Authors:  G Hagen; S Müller; M Beato; G Suske
Journal:  Nucleic Acids Res       Date:  1992-11-11       Impact factor: 16.971

Review 3.  Bigenomic regulation of cytochrome c oxidase in neurons and the tight coupling between neuronal activity and energy metabolism.

Authors:  Margaret T T Wong-Riley
Journal:  Adv Exp Med Biol       Date:  2012       Impact factor: 2.622

4.  Sp1 and AP2 enhance promoter activity of the mouse GM3-synthase gene.

Authors:  Tian Xia; Guichao Zeng; Luoyi Gao; Robert K Yu
Journal:  Gene       Date:  2005-05-23       Impact factor: 3.688

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Authors:  K Geering
Journal:  J Membr Biol       Date:  1990-05       Impact factor: 1.843

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Authors:  K J Sweadner
Journal:  Biochim Biophys Acta       Date:  1989-05-09

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Authors:  A Habiba; G Blanco; R W Mercer
Journal:  Brain Res       Date:  2000-09-01       Impact factor: 3.252

8.  Functional analysis of the rat cytochrome c oxidase subunit 6A1 promoter in primary neurons.

Authors:  Sakkapol Ongwijitwat; Margaret T T Wong-Riley
Journal:  Gene       Date:  2004-08-04       Impact factor: 3.688

9.  Regulation of Na(+)/K(+)-ATPase by nuclear respiratory factor 1: implication in the tight coupling of neuronal activity, energy generation, and energy consumption.

Authors:  Kaid Johar; Anusha Priya; Margaret T T Wong-Riley
Journal:  J Biol Chem       Date:  2012-10-09       Impact factor: 5.157

10.  Activity-dependent regulation of nuclear respiratory factor-1, nuclear respiratory factor-2, and peroxisome proliferator-activated receptor gamma coactivator-1 in neurons.

Authors:  Huan Ling Liang; Margaret T T Wong-Riley
Journal:  Neuroreport       Date:  2006-03-20       Impact factor: 1.837

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  15 in total

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2.  Specificity protein 4 (Sp4) transcriptionally regulates inhibitory GABAergic receptors in neurons.

Authors:  Bindu Nair; Kaid Johar; Anusha Priya; Margaret T T Wong-Riley
Journal:  Biochim Biophys Acta       Date:  2015-10-18

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5.  Drosophila Voltage-Gated Sodium Channels Are Only Expressed in Active Neurons and Are Localized to Distal Axonal Initial Segment-like Domains.

Authors:  Thomas A Ravenscroft; Jasper Janssens; Pei-Tseng Lee; Burak Tepe; Paul C Marcogliese; Samira Makhzami; Todd C Holmes; Stein Aerts; Hugo J Bellen
Journal:  J Neurosci       Date:  2020-09-14       Impact factor: 6.167

6.  Evaluating genomic DNA extraction methods from human whole blood using endpoint and real-time PCR assays.

Authors:  Linda Koshy; A L Anju; S Harikrishnan; V R Kutty; V T Jissa; Irin Kurikesu; Parvathy Jayachandran; A Jayakumaran Nair; A Gangaprasad; G M Nair; P R Sudhakaran
Journal:  Mol Biol Rep       Date:  2016-09-29       Impact factor: 2.316

7.  Nuclear respiratory factor 2 regulates the transcription of AMPA receptor subunit GluA2 (Gria2).

Authors:  Anusha Priya; Kaid Johar; Bindu Nair; Margaret T T Wong-Riley
Journal:  Biochim Biophys Acta       Date:  2014-09-22

8.  Autism and Intellectual Disability-Associated KIRREL3 Interacts with Neuronal Proteins MAP1B and MYO16 with Potential Roles in Neurodevelopment.

Authors:  Ying F Liu; Sarah M Sowell; Yue Luo; Alka Chaubey; Richard S Cameron; Hyung-Goo Kim; Anand K Srivastava
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Review 9.  Transcriptional regulators of Na,K-ATPase subunits.

Authors:  Zhiqin Li; Sigrid A Langhans
Journal:  Front Cell Dev Biol       Date:  2015-10-26

10.  Brain Na(+), K(+)-ATPase Activity In Aging and Disease.

Authors:  Georgina Rodríguez de Lores Arnaiz; María Graciela López Ordieres
Journal:  Int J Biomed Sci       Date:  2014-06
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