Literature DB >> 27358065

Epigenetic regulation in Parkinson's disease.

Catherine Labbé1, Oswaldo Lorenzo-Betancor1, Owen A Ross2.   

Abstract

Recent efforts have shed new light on the epigenetic mechanisms driving gene expression alterations associated with Parkinson's disease (PD) pathogenesis. Changes in gene expression are a well-established cause of PD, and epigenetic mechanisms likely play a pivotal role in regulation. Studies in families with PD harboring duplications and triplications of the SNCA gene have demonstrated that gene dosage is associated with increased expression of both SNCA mRNA and protein, and correlates with a fulminant disease course. Furthermore, it is postulated that even subtle changes in SNCA expression caused by common variation is associated with disease risk. Of note, genome-wide association studies have identified over 30 loci associated with PD with most signals located in non-coding regions of the genome, thus likely influencing transcript expression levels. In health, epigenetic mechanisms tightly regulate gene expression, turning genes on and off to balance homeostasis and this, in part, explains why two cells with the same DNA sequence will have different RNA expression profiles. Understanding this phenomenon will be crucial to our interpretation of the selective vulnerability observed in neurodegeneration and specifically dopaminergic neurons in the PD brain. In this review, we discuss epigenetic mechanisms, such as DNA methylation and histone modifications, involved in regulating the expression of genes relevant to PD, RNA-based mechanisms, as well as the effect of toxins and potential epigenetic-based treatments for PD.

Entities:  

Keywords:  Acetylation; Epigenetics; Histones; Methylation; Parkinson’s disease; RNA-based epigenetic mechanisms

Mesh:

Year:  2016        PMID: 27358065      PMCID: PMC5026906          DOI: 10.1007/s00401-016-1590-9

Source DB:  PubMed          Journal:  Acta Neuropathol        ISSN: 0001-6322            Impact factor:   17.088


  125 in total

1.  Nuclear localization of alpha-synuclein and its interaction with histones.

Authors:  John Goers; Amy B Manning-Bog; Alison L McCormack; Ian S Millett; Sebastian Doniach; Donato A Di Monte; Vladimir N Uversky; Anthony L Fink
Journal:  Biochemistry       Date:  2003-07-22       Impact factor: 3.162

Review 2.  How do microRNAs regulate gene expression?

Authors:  Richard J Jackson; Nancy Standart
Journal:  Sci STKE       Date:  2007-01-02

3.  The obesity related gene, FTO, interacts with APOE, and is associated with Alzheimer's disease risk: a prospective cohort study.

Authors:  Lina Keller; Weili Xu; Hui-Xin Wang; Bengt Winblad; Laura Fratiglioni; Caroline Graff
Journal:  J Alzheimers Dis       Date:  2011       Impact factor: 4.472

4.  Differential effects of binge methamphetamine injections on the mRNA expression of histone deacetylases (HDACs) in the rat striatum.

Authors:  Oluwaseyi Omonijo; Pawaris Wongprayoon; Bruce Ladenheim; Michael T McCoy; Piyarat Govitrapong; Subramaniam Jayanthi; Jean Lud Cadet
Journal:  Neurotoxicology       Date:  2014-10-27       Impact factor: 4.294

5.  Translation initiator EIF4G1 mutations in familial Parkinson disease.

Authors:  Marie-Christine Chartier-Harlin; Justus C Dachsel; Carles Vilariño-Güell; Sarah J Lincoln; Frédéric Leprêtre; Mary M Hulihan; Jennifer Kachergus; Austen J Milnerwood; Lucia Tapia; Mee-Sook Song; Emilie Le Rhun; Eugénie Mutez; Lydie Larvor; Aurélie Duflot; Christel Vanbesien-Mailliot; Alexandre Kreisler; Owen A Ross; Kenya Nishioka; Alexandra I Soto-Ortolaza; Stephanie A Cobb; Heather L Melrose; Bahareh Behrouz; Brett H Keeling; Justin A Bacon; Emna Hentati; Lindsey Williams; Akiko Yanagiya; Nahum Sonenberg; Paul J Lockhart; Abba C Zubair; Ryan J Uitti; Jan O Aasly; Anna Krygowska-Wajs; Grzegorz Opala; Zbigniew K Wszolek; Roberta Frigerio; Demetrius M Maraganore; David Gosal; Tim Lynch; Michael Hutchinson; Anna Rita Bentivoglio; Enza Maria Valente; William C Nichols; Nathan Pankratz; Tatiana Foroud; Rachel A Gibson; Faycal Hentati; Dennis W Dickson; Alain Destée; Matthew J Farrer
Journal:  Am J Hum Genet       Date:  2011-09-09       Impact factor: 11.025

6.  Environmental neurotoxic pesticide increases histone acetylation to promote apoptosis in dopaminergic neuronal cells: relevance to epigenetic mechanisms of neurodegeneration.

Authors:  C Song; A Kanthasamy; V Anantharam; F Sun; A G Kanthasamy
Journal:  Mol Pharmacol       Date:  2010-01-22       Impact factor: 4.436

7.  The fat mass and obesity associated gene (Fto) regulates activity of the dopaminergic midbrain circuitry.

Authors:  Martin E Hess; Simon Hess; Kate D Meyer; Linda A W Verhagen; Linda Koch; Hella S Brönneke; Marcelo O Dietrich; Sabine D Jordan; Yogesh Saletore; Olivier Elemento; Bengt F Belgardt; Thomas Franz; Tamas L Horvath; Ulrich Rüther; Samie R Jaffrey; Peter Kloppenburg; Jens C Brüning
Journal:  Nat Neurosci       Date:  2013-06-30       Impact factor: 24.884

8.  B-vitamin deprivation induces hyperhomocysteinemia and brain S-adenosylhomocysteine, depletes brain S-adenosylmethionine, and enhances PS1 and BACE expression and amyloid-beta deposition in mice.

Authors:  Andrea Fuso; Vincenzina Nicolia; Rosaria A Cavallaro; Laura Ricceri; Fabrizio D'Anselmi; Pierpaolo Coluccia; Gemma Calamandrei; Sigfrido Scarpa
Journal:  Mol Cell Neurosci       Date:  2008-01-03       Impact factor: 4.314

9.  Epigenome-wide association study for Parkinson's disease.

Authors:  Kerry Moore; Amy Jayne McKnight; David Craig; Francis O'Neill
Journal:  Neuromolecular Med       Date:  2014-10-11       Impact factor: 3.843

10.  A genome-wide screen in human embryonic stem cells reveals novel sites of allele-specific histone modification associated with known disease loci.

Authors:  James G D Prendergast; Pin Tong; David C Hay; Susan M Farrington; Colin A M Semple
Journal:  Epigenetics Chromatin       Date:  2012-05-19       Impact factor: 4.954

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  29 in total

1.  DNA Methyltransferase 1 Is Dysregulated in Parkinson's Disease via Mediation of miR-17.

Authors:  Hong-Qiu Zhang; Jian-Yong Wang; Zhao-Feng Li; Lei Cui; Shi-Shi Huang; Lan-Bing Zhu; Yue Sun; Rui Yang; Hui-Hui Fan; Xiong Zhang; Jian-Hong Zhu
Journal:  Mol Neurobiol       Date:  2021-01-22       Impact factor: 5.590

2.  Regional analysis and genetic association of nigrostriatal degeneration in Lewy body disease.

Authors:  Koji Kasanuki; Michael G Heckman; Nancy N Diehl; Melissa E Murray; Shunsuke Koga; Alexandra Soto; Owen A Ross; Dennis W Dickson
Journal:  Mov Disord       Date:  2017-09-26       Impact factor: 10.338

3.  Developmental Dieldrin Exposure Alters DNA Methylation at Genes Related to Dopaminergic Neuron Development and Parkinson's Disease in Mouse Midbrain.

Authors:  Joseph Kochmanski; Sarah E VanOeveren; Joseph R Patterson; Alison I Bernstein
Journal:  Toxicol Sci       Date:  2019-06-01       Impact factor: 4.849

Review 4.  Epigenetic Modulation in Parkinson's Disease and Potential Treatment Therapies.

Authors:  Aaina Singh Rathore; Hareram Birla; Saumitra Sen Singh; Walia Zahra; Hagera Dilnashin; Richa Singh; Priyanka Kumari Keshri; Surya Pratap Singh
Journal:  Neurochem Res       Date:  2021-04-26       Impact factor: 3.996

Review 5.  The Prospective Application of Melatonin in Treating Epigenetic Dysfunctional Diseases.

Authors:  Seth Mikaye Monayo; Xin Liu
Journal:  Front Pharmacol       Date:  2022-05-20       Impact factor: 5.988

Review 6.  Histone Methylation Regulation in Neurodegenerative Disorders.

Authors:  Balapal S Basavarajappa; Shivakumar Subbanna
Journal:  Int J Mol Sci       Date:  2021-04-28       Impact factor: 5.923

Review 7.  Phytochemicals as Regulators of Genes Involved in Synucleinopathies.

Authors:  Andrei Surguchov; Libby Bernal; Alexei A Surguchev
Journal:  Biomolecules       Date:  2021-04-22

8.  Epigenomic analysis of Parkinson's disease neurons identifies Tet2 loss as neuroprotective.

Authors:  Lee L Marshall; Bryan A Killinger; Elizabeth Ensink; Peipei Li; Katie X Li; Wei Cui; Noah Lubben; Matthew Weiland; Xinhe Wang; Juozas Gordevicius; Gerhard A Coetzee; Jiyan Ma; Stefan Jovinge; Viviane Labrie
Journal:  Nat Neurosci       Date:  2020-08-17       Impact factor: 24.884

9.  Mitochondrial D-Loop Region Methylation and Copy Number in Peripheral Blood DNA of Parkinson's Disease Patients.

Authors:  Andrea Stoccoro; Adam R Smith; Filippo Baldacci; Claudia Del Gamba; Annalisa Lo Gerfo; Roberto Ceravolo; Katie Lunnon; Lucia Migliore; Fabio Coppedè
Journal:  Genes (Basel)       Date:  2021-05-12       Impact factor: 4.096

10.  Perturbed DNA methylation by Gadd45b induces chromatin disorganization, DNA strand breaks and dopaminergic neuron death.

Authors:  Camille Ravel-Godreuil; Olivia Massiani-Beaudoin; Philippe Mailly; Alain Prochiantz; Rajiv L Joshi; Julia Fuchs
Journal:  iScience       Date:  2021-06-19
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