Implications of DNA Methylation in Parkinson's Disease.

Abstract:

:It has been 200 years since Parkinson's disease (PD) was first described, yet many aspects of its etiopathogenesis remain unclear. PD is a progressive and complex neurodegenerative disorder caused by genetic and environmental factors including aging, nutrition, pesticides and exposure to heavy metals. DNA methylation may be altered in response to some of these factors; therefore, it is proposed that epigenetic mechanisms, particularly DNA methylation, can have a fundamental role in gene-environment interactions that are related with PD. Epigenetic changes in PD-associated genes are now widely studied in different populations, to discover the mechanisms that contribute to disease development and identify novel biomarkers for early diagnosis and future pharmacological treatment. While initial studies sought to find associations between promoter DNA methylation and the regulation of associated genes in PD brain tissue, more recent studies have described concordant DNA methylation patterns between blood and brain tissue DNA. These data justify the use of peripheral blood samples instead of brain tissue for epigenetic studies. Here, we summarize the current data about DNA methylation changes in PD and discuss the potential of DNA methylation as a potential biomarker for PD. Additionally, we discuss environmental and nutritional factors that have been implicated in DNA methylation. Although the search for significant DNA methylation changes and gene expression analyses of PD-associated genes have yielded inconsistent and contradictory results, epigenetic modifications remain under investigation for their potential to reveal the link between environmental risk factors and the development of PD.

journal_name

Front Mol Neurosci

authors

Miranda-Morales E,Meier K,Sandoval-Carrillo A,Salas-Pacheco J,Vázquez-Cárdenas P,Arias-Carrión O

doi

10.3389/fnmol.2017.00225

subject

Has Abstract

pub_date

2017-07-18 00:00:00

pages

225

issn

1662-5099

journal_volume

10

pub_type

杂志文章,评审
  • The Prohormone Proinsulin as a Neuroprotective Factor: Past History and Future Prospects.

    abstract::Proinsulin was first identified as the primary translation product of the insulin gene in Donald Steiner's laboratory in 1967, and was the first prohormone to be isolated and sequenced. While its role as an insulin precursor has been extensively studied in the field of endocrinology, the bioactivity of the proinsulin ...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2018.00426

    authors: de Pablo F,Hernández-Sánchez C,de la Rosa EJ

    更新日期:2018-11-26 00:00:00

  • Ion Channel Contributions to Morphological Development: Insights From the Role of Kir2.1 in Bone Development.

    abstract::The role of ion channels in neurons and muscles has been well characterized. However, recent work has demonstrated both the presence and necessity of ion channels in diverse cell types for morphological development. For example, mutations that disrupt ion channels give rise to abnormal structural development in specie...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2020.00099

    authors: Ozekin YH,Isner T,Bates EA

    更新日期:2020-06-09 00:00:00

  • Puzzling Out Synaptic Vesicle 2 Family Members Functions.

    abstract::Synaptic vesicle proteins 2 (SV2) were discovered in the early 80s, but the clear demonstration that SV2A is the target of efficacious anti-epileptic drugs from the racetam family stimulated efforts to improve understanding of its role in the brain. Many functions have been suggested for SV2 proteins including ions or...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2017.00148

    authors: Bartholome O,Van den Ackerveken P,Sánchez Gil J,de la Brassinne Bonardeaux O,Leprince P,Franzen R,Rogister B

    更新日期:2017-05-22 00:00:00

  • Microglial Lectins in Health and Neurological Diseases.

    abstract::Microglia are the innate sentinels of the central nervous system (CNS) and are responsible for the homeostasis and immune defense of the CNS. Under the influence of the local environment and cell-cell interaction, microglia exhibit a multidimensional and context-dependent phenotypes that can be cytotoxic and neuroprot...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2018.00158

    authors: Siew JJ,Chern Y

    更新日期:2018-05-14 00:00:00

  • Emerging roles of glycogen synthase kinase 3 in the treatment of brain tumors.

    abstract::The constitutively active protein glycogen synthase kinase 3 (GSK3), a serine/threonine kinase, acts paradoxically as a tumor suppressor in some cancers while potentiates growth in others. Deciphering what governs its actions is vital for understanding many pathological conditions, including brain cancer. What are see...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2011.00047

    authors: Mills CN,Nowsheen S,Bonner JA,Yang ES

    更新日期:2011-11-25 00:00:00

  • Combinational Treatment of Bioscaffolds and Extracellular Vesicles in Spinal Cord Injury.

    abstract::Spinal cord injury (SCI) can result in an irreversible disability due to loss of sensorimotor function below the lesion. Presently, clinical treatments for SCI mainly include surgery, drugs and postoperative rehabilitation. The prospective roles of bioscaffolds and exosomes in several neurological diseases have been r...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2019.00081

    authors: Wang X,Botchway BOA,Zhang Y,Yuan J,Liu X

    更新日期:2019-04-12 00:00:00

  • Therapeutic Potential of Secreted Amyloid Precursor Protein APPsα.

    abstract::Cleavage of the amyloid precursor protein (APP) by α-secretase generates an extracellularly released fragment termed secreted APP-alpha (APPsα). Not only is this process of interest due to the cleavage of APP within the amyloid-beta sequence, but APPsα itself has many physiological properties that suggest its great po...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2017.00030

    authors: Mockett BG,Richter M,Abraham WC,Müller UC

    更新日期:2017-02-07 00:00:00

  • Alpha2-Containing Glycine Receptors Promote Neonatal Spontaneous Activity of Striatal Medium Spiny Neurons and Support Maturation of Glutamatergic Inputs.

    abstract::Glycine receptors (GlyRs) containing the α2 subunit are highly expressed in the developing brain, where they regulate neuronal migration and maturation, promote spontaneous network activity and subsequent development of synaptic connections. Mutations in GLRA2 are associated with autism spectrum disorder, but the unde...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2018.00380

    authors: Comhair J,Devoght J,Morelli G,Harvey RJ,Briz V,Borrie SC,Bagni C,Rigo JM,Schiffmann SN,Gall D,Brône B,Molchanova SM

    更新日期:2018-10-15 00:00:00

  • Mouse Panx1 Is Dispensable for Hearing Acquisition and Auditory Function.

    abstract::Panx1 forms plasma membrane channels in brain and several other organs, including the inner ear. Biophysical properties, activation mechanisms and modulators of Panx1 channels have been characterized in detail, however the impact of Panx1 on auditory function is unclear due to conflicts in published results. To addres...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2017.00379

    authors: Zorzi V,Paciello F,Ziraldo G,Peres C,Mazzarda F,Nardin C,Pasquini M,Chiani F,Raspa M,Scavizzi F,Carrer A,Crispino G,Ciubotaru CD,Monyer H,Fetoni AR,M Salvatore A,Mammano F

    更新日期:2017-11-28 00:00:00

  • Regulation of AMPA Receptor Trafficking by Protein Ubiquitination.

    abstract::The molecular mechanisms underlying plastic changes in the strength and connectivity of excitatory synapses have been studied extensively for the past few decades and remain the most attractive cellular models of learning and memory. One of the major mechanisms that regulate synaptic plasticity is the dynamic adjustme...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2017.00347

    authors: Widagdo J,Guntupalli S,Jang SE,Anggono V

    更新日期:2017-10-26 00:00:00

  • Parvalbumin-Neurons of the Ventrolateral Hypothalamic Parvafox Nucleus Receive a Glycinergic Input: A Gene-Microarray Study.

    abstract::The ventrolateral hypothalamic parvafox (formerly called PV1-Foxb1) nucleus is an anatomical entity of recent discovery and unknown function. With a view to gaining an insight into its putative functional role(s), we conducted a gene-microarray analysis and, armed with the forthcoming data, controlled the results with...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2017.00008

    authors: Szabolcsi V,Albisetti GW,Celio MR

    更新日期:2017-01-23 00:00:00

  • Stable STIM1 Knockdown in Self-Renewing Human Neural Precursors Promotes Premature Neural Differentiation.

    abstract::Ca2+ signaling plays a significant role in the development of the vertebrate nervous system where it regulates neurite growth as well as synapse and neurotransmitter specification. Elucidating the role of Ca2+ signaling in mammalian neuronal development has been largely restricted to either small animal models or prim...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2018.00178

    authors: Gopurappilly R,Deb BK,Chakraborty P,Hasan G

    更新日期:2018-06-11 00:00:00

  • Early history of glycine receptor biology in Mammalian spinal cord circuits.

    abstract::In this review we provide an overview of key in vivo experiments undertaken in the cat spinal cord in the 1950s and 1960s, and point out their contributions to our present understanding of glycine receptor (GlyR) function. Importantly, some of these discoveries were made well before an inhibitory receptor, or its agon...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2010.00013

    authors: Callister RJ,Graham BA

    更新日期:2010-05-21 00:00:00

  • Neuroinflammation in Ischemic Stroke: Focus on MicroRNA-mediated Polarization of Microglia.

    abstract::Ischemic stroke is one of the most common causes of death and disability worldwide. Neuroinflammation is a major pathological event involved in the process of ischemic injury and repair. In particular, microglia play a dual role in neuroinflammation. During the acute phase of stroke onset, M2 microglia are the dominan...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2020.612439

    authors: Lian L,Zhang Y,Liu L,Yang L,Cai Y,Zhang J,Xu S

    更新日期:2021-01-07 00:00:00

  • PKC, AKT and ERK1/2-Mediated Modulations of PARP1, NF-κB and PEA15 Activities Distinctly Regulate Regional Specific Astroglial Responses Following Status Epilepticus.

    abstract::Status epilepticus (SE, a prolonged seizure activity) leads to reactive astrogliosis and astroglial apoptosis in the regional specific manners, independent of hemodynamics. Poly(ADP-ribose) polymerase-1 (PARP1) activity is relevant to these distinct astroglial responses. Since various regulatory signaling molecules be...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2019.00180

    authors: Kim JE,Kang TC

    更新日期:2019-07-24 00:00:00

  • Neurogranin Regulates Metaplasticity.

    abstract::Long-term potentiation (LTP) and long-term depression (LTD) are two major forms of synaptic plasticity that are widely accepted as cellular mechanisms involved in learning and memory. Metaplasticity is a process whereby modifications in synaptic processes shift the threshold for subsequent plasticity. While metaplasti...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2019.00322

    authors: Zhong L,Gerges NZ

    更新日期:2020-01-24 00:00:00

  • Phorbol-Ester Mediated Suppression of hASH1 Synthesis: Multiple Ways to Keep the Level Down.

    abstract::Human achaete-scute homolog-1 (hASH1), encoded by the human ASCL1 gene, belongs to the family of basic helix-loop-helix transcription factors. hASH1 and its mammalian homolog Mash1 are expressed in the central and peripheral nervous system during development, and promote early neuronal differentiation. Furthermore, hA...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2011.00001

    authors: Benko E,Winkelmann A,Meier JC,Persson PB,Scholz H,Fähling M

    更新日期:2011-02-07 00:00:00

  • Quantitative Changes in the Mitochondrial Proteome of Cerebellar Synaptosomes From Preclinical Cystatin B-Deficient Mice.

    abstract::Progressive myoclonus epilepsy of Unverricht-Lundborg type (EPM1) is a neurodegenerative disorder caused by loss-of-function mutations in the cystatin B (CSTB) gene. Progression of the clinical symptoms in EPM1 patients, including stimulus-sensitive myoclonus, tonic-clonic seizures, and ataxia, are well described. How...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2020.570640

    authors: Gorski K,Spoljaric A,Nyman TA,Kaila K,Battersby BJ,Lehesjoki AE

    更新日期:2020-11-13 00:00:00

  • Visualizing K48 Ubiquitination during Presynaptic Formation By Ubiquitination-Induced Fluorescence Complementation (UiFC).

    abstract::In recent years, signaling through ubiquitin has been shown to be of great importance for normal brain development. Indeed, fluctuations in ubiquitin levels and spontaneous mutations in (de)ubiquitination enzymes greatly perturb synapse formation and neuronal transmission. In the brain, expression of lysine (K) 48-lin...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2016.00043

    authors: Pinto MJ,Pedro JR,Costa RO,Almeida RD

    更新日期:2016-06-10 00:00:00

  • Sphingosine-1-Phosphate and the S1P3 Receptor Initiate Neuronal Retraction via RhoA/ROCK Associated with CRMP2 Phosphorylation.

    abstract::The bioactive lipid sphingosine-1-phosphate (S1P) is an important regulator in the nervous system. Here, we explored the role of S1P and its receptors in vitro and in preclinical models of peripheral nerve regeneration. Adult sensory neurons and motor neuron-like cells were exposed to S1P in an in vitro assay, and vir...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2017.00317

    authors: Quarta S,Camprubí-Robles M,Schweigreiter R,Matusica D,Haberberger RV,Proia RL,Bandtlow CE,Ferrer-Montiel A,Kress M

    更新日期:2017-10-10 00:00:00

  • Spatiotemporal and Long Lasting Modulation of 11 Key Nogo Signaling Genes in Response to Strong Neuroexcitation.

    abstract::Inhibition of nerve growth and plasticity in the CNS is to a large part mediated by Nogo-like signaling, now encompassing a plethora of ligands, receptors, co-receptors and modulators. Here we describe the distribution and levels of mRNA encoding 11 key genes involved in Nogo-like signaling (Nogo-A, Oligodendrocyte-My...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2017.00094

    authors: Karlsson TE,Wellfelt K,Olson L

    更新日期:2017-04-11 00:00:00

  • Sex Hormones Regulate SHANK Expression.

    abstract::Autism spectrum disorders (ASD) have a higher prevalence in male individuals compared to females, with a ratio of affected boys compared to girls of 4:1 for ASD and 11:1 for Asperger syndrome. Mutations in the SHANK genes (comprising SHANK1, SHANK2 and SHANK3) coding for postsynaptic scaffolding proteins have been tig...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2018.00337

    authors: Berkel S,Eltokhi A,Fröhlich H,Porras-Gonzalez D,Rafiullah R,Sprengel R,Rappold GA

    更新日期:2018-09-25 00:00:00

  • Corrigendum: Gap Junctions in A8 Amacrine Cells Are Made of Connexin36 but Are Differently Regulated Than Gap Junctions in AII Amacrine Cells.

    abstract::[This corrects the article DOI: 10.3389/fnmol.2019.00099.]. ...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,已发布勘误

    doi:10.3389/fnmol.2019.00149

    authors: Yadav SC,Tetenborg S,Dedek K

    更新日期:2019-06-12 00:00:00

  • On the Role of Store-Operated Calcium Entry in Acute and Chronic Neurodegenerative Diseases.

    abstract::In both excitable and non-excitable cells, calcium (Ca2+) signals are maintained by a highly integrated process involving store-operated Ca2+ entry (SOCE), namely the opening of plasma membrane (PM) Ca2+ channels following the release of Ca2+ from intracellular stores. Upon depletion of Ca2+ store, the stromal interac...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2018.00087

    authors: Secondo A,Bagetta G,Amantea D

    更新日期:2018-03-22 00:00:00

  • The Electrophysiological Determinants of Corticospinal Motor Neuron Vulnerability in ALS.

    abstract::The brain is complex and heterogeneous. Even though numerous independent studies indicate cortical hyperexcitability as a potential contributor to amyotrophic lateral sclerosis (ALS) pathology, the mechanisms that are responsible for upper motor neuron (UMN) vulnerability remain elusive. To reveal the electrophysiolog...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2020.00073

    authors: Jara JH,Sheets PL,Nigro MJ,Perić M,Brooks C,Heller DB,Martina M,Andjus PR,Ozdinler PH

    更新日期:2020-05-19 00:00:00

  • Ubiquitin pathways in neurodegenerative disease.

    abstract::Control of proper protein synthesis, function, and turnover is essential for the health of all cells. In neurons these demands take on the additional importance of supporting and regulating the highly dynamic connections between neurons that are necessary for cognitive function, learning, and memory. Regulating multip...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,评审

    doi:10.3389/fnmol.2014.00063

    authors: Atkin G,Paulson H

    更新日期:2014-07-08 00:00:00

  • Corrigendum: A Single Dose of 5-MeO-DMT Stimulates Cell Proliferation, Neuronal Survivability, Morphological and Functional Changes in Adult Mice Ventral Dentate Gyrus.

    abstract::[This corrects the article DOI: 10.3389/fnmol.2018.00312.]. ...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章,已发布勘误

    doi:10.3389/fnmol.2019.00079

    authors: Lima da Cruz RV,Moulin TC,Petiz LL,Leão RN

    更新日期:2019-04-04 00:00:00

  • Mapping local structural perturbations in the native state of stefin B (cystatin B) under amyloid forming conditions.

    abstract::Unlike a number of amyloid-forming proteins, stefins, and in particular stefin B (cystatin B) form amyloids under conditions where the native state predominates. In order to trigger oligomerization processes, the stability of the protein needs to be compromised, favoring structural re-arrangement however, accelerating...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2012.00094

    authors: Paramore R,Morgan GJ,Davis PJ,Sharma CA,Hounslow A,Taler-Verčič A,Zerovnik E,Waltho JP,Cliff MJ,Staniforth RA

    更新日期:2012-10-12 00:00:00

  • PAK6 Phosphorylates 14-3-3γ to Regulate Steady State Phosphorylation of LRRK2.

    abstract::Mutations in Leucine-rich repeat kinase 2 (LRRK2) are associated with Parkinson's disease (PD) and, as such, LRRK2 is considered a promising therapeutic target for age-related neurodegeneration. Although the cellular functions of LRRK2 in health and disease are incompletely understood, robust evidence indicates that P...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2017.00417

    authors: Civiero L,Cogo S,Kiekens A,Morganti C,Tessari I,Lobbestael E,Baekelandt V,Taymans JM,Chartier-Harlin MC,Franchin C,Arrigoni G,Lewis PA,Piccoli G,Bubacco L,Cookson MR,Pinton P,Greggio E

    更新日期:2017-12-14 00:00:00

  • Transcription Factor NFAT5 Promotes Glioblastoma Cell-driven Angiogenesis via SBF2-AS1/miR-338-3p-Mediated EGFL7 Expression Change.

    abstract::Glioblastoma (GBM) is the most aggressive primary intracranial tumor of adults and confers a poor prognosis due to high vascularization. Hence anti-angiogenic therapy has become a promising strategy for GBM treatment. In this study, the transcription factor nuclear factor of activated T-cells 5 (NFAT5) was significant...

    journal_title:Frontiers in molecular neuroscience

    pub_type: 杂志文章

    doi:10.3389/fnmol.2017.00301

    authors: Yu H,Zheng J,Liu X,Xue Y,Shen S,Zhao L,Li Z,Liu Y

    更新日期:2017-09-21 00:00:00