Literature DB >> 12726778

Methylation and acetylation in nervous system development and neurodegenerative disorders.

Mark P Mattson1.   

Abstract

The cytoarchitecture and cellular signaling mechanisms of the nervous system are complex, and this complexity is reflected at the molecular level with more genes being expressed in the nervous system than in any other tissue. Gene expression and protein function in neural cells can be regulated by methylation and acetylation. Studies of mice deficient in enzymes that control DNA methylation and of animals with a dietary deficiency of folate have established critical roles for methylation in development of the nervous system. Various neuronal proteins including histones and tubulin are regulated by acetylation which appears to serve important functions in the development, stability and plasticity of neuronal networks. Some inherited neurological disorders have recently been linked to mutations in genes that regulate DNA methylation, and alterations in DNA and protein methylation and/or acetylation have been documented in studies of age-related neurodegenerative disorders including Alzheimer's disease (AD), Parkinson's disease (PD) and Huntington's disease (HD). Manipulations of methylation and acetylation can affect the vulnerability of neurons to degeneration and apoptosis in experimental models of neurodegenerative disorders, suggesting a contribution to altered methylation and acetylation to the disease processes. Interestingly, dietary factors that influence DNA methylation may affect the risk of neurodegenerative disorders, for example, individuals with low dietary folate intake are at increased risk of Alzheimer's and Parkinson's diseases.

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Year:  2003        PMID: 12726778     DOI: 10.1016/s1568-1637(03)00013-8

Source DB:  PubMed          Journal:  Ageing Res Rev        ISSN: 1568-1637            Impact factor:   10.895


  29 in total

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Authors:  Jessica Sarthi; Felice Elefant
Journal:  PLoS One       Date:  2011-10-27       Impact factor: 3.240

2.  Molecular diversity of rat brain proteins as revealed by proteomic analysis.

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Journal:  Mol Divers       Date:  2005       Impact factor: 2.943

3.  A maternal methyl-containing diet alters learning ability in the Morris swimming test in adult rats.

Authors:  I Z Plyusnina; I N Os'kina; O A Shchepina; L A Prasolova; L N Trut
Journal:  Neurosci Behav Physiol       Date:  2007-06

4.  Choline: clinical nutrigenetic/nutrigenomic approaches for identification of functions and dietary requirements.

Authors:  Steven H Zeisel
Journal:  J Nutrigenet Nutrigenomics       Date:  2011-04-06

Review 5.  Protein S-nitrosylation: role for nitric oxide signaling in neuronal death.

Authors:  Neelam Shahani; Akira Sawa
Journal:  Biochim Biophys Acta       Date:  2011-07-23

Review 6.  Cellular stress responses, the hormesis paradigm, and vitagenes: novel targets for therapeutic intervention in neurodegenerative disorders.

Authors:  Vittorio Calabrese; Carolin Cornelius; Albena T Dinkova-Kostova; Edward J Calabrese; Mark P Mattson
Journal:  Antioxid Redox Signal       Date:  2010-08-28       Impact factor: 8.401

Review 7.  Folate and epigenetic mechanisms in neural tube development and defects.

Authors:  Sivan Vadakkadath Meethal; Kirk J Hogan; Chandra S Mayanil; Bermans J Iskandar
Journal:  Childs Nerv Syst       Date:  2013-09-07       Impact factor: 1.475

Review 8.  Choline: clinical nutrigenetic/nutrigenomic approaches for identification of functions and dietary requirements.

Authors:  Steven H Zeisel
Journal:  World Rev Nutr Diet       Date:  2010-04-30       Impact factor: 0.575

9.  Histone deacetylase inhibitors modulates the induction and expression of amphetamine-induced behavioral sensitization partially through an associated learning of the environment in mice.

Authors:  Anti Kalda; Lenne-Triin Heidmets; Hai-Ying Shen; Alexander Zharkovsky; Jiang-Fan Chen
Journal:  Behav Brain Res       Date:  2007-03-31       Impact factor: 3.332

10.  The site specific demethylation in the 5'-regulatory area of NMDA receptor 2B subunit gene associated with CIE-induced up-regulation of transcription.

Authors:  Mei Qiang; Ashley Denny; Jiguo Chen; Maharaj K Ticku; Bo Yan; George Henderson
Journal:  PLoS One       Date:  2010-01-20       Impact factor: 3.240

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