The Role of MeCP2 in Brain Development and Neurodevelopmental Disorders

被引:0
|
作者
Michael L. Gonzales
Janine M. LaSalle
机构
[1] University of California,School of Medicine, Medical Microbiology and Immunology
[2] Davis,undefined
来源
Current Psychiatry Reports | 2010年 / 12卷
关键词
Rett syndrome; Angelman’s syndrome; Autism; Epigenetic; Neurodevelopmental;
D O I
暂无
中图分类号
学科分类号
摘要
Methyl CpG binding protein-2 (MeCP2) is an essential epigenetic regulator in human brain development. Rett syndrome, the primary disorder caused by mutations in the X-linked MECP2 gene, is characterized by a period of cognitive decline and development of hand stereotypies and seizures following an apparently normal early infancy. In addition, MECP2 mutations and duplications are observed in a spectrum of neurodevelopmental disorders, including severe neonatal encephalopathy, X-linked mental retardation, and autism, implicating MeCP2 as an essential regulator of postnatal brain development. In this review, we compare the mutation types and inheritance patterns of the human disorders associated with MECP2. In addition, we summarize the current understanding of MeCP2 as a central epigenetic regulator of activity-dependent synaptic maturation. As MeCP2 occupies a central role in the pathogenesis of multiple neurodevelopmental disorders, continued investigation into MeCP2 function and regulatory pathways may show promise for developing broad-spectrum therapies.
引用
收藏
页码:127 / 134
页数:7
相关论文
共 50 条
  • [21] Brain protein changes in Mecp2 mouse mutant models: Effects on disease progression of Mecp2 brain specific gene reactivation
    Cortelazzo, Alessio
    De Feliced, Claudio
    Guy, Jacky
    Timperio, Anna Maria
    Zolla, Lello
    Guerranti, Roberto
    Leoncini, Silvia
    Signorini, Cinzia
    Durand, Thierry
    Hayek, Joussef
    JOURNAL OF PROTEOMICS, 2020, 210
  • [22] Syndromic disorders with epilepsy in patients with MECP2 mutations
    Grimmer, Anja
    Kerling, Frank
    ZEITSCHRIFT FUR EPILEPTOLOGIE, 2022, 35 (03): : 250 - 254
  • [23] Differential distribution of the Mecp2 splice variants in the postnatal mouse brain
    Dragich, Joanna M.
    Kim, Yong-Hwan
    Arnold, Arthur P.
    Schanen, N. Carolyn
    JOURNAL OF COMPARATIVE NEUROLOGY, 2007, 501 (04) : 526 - 542
  • [24] MeCP2 phosphorylation in the brain: from transcription to behavior
    Damen, Daniela
    Heumann, Rolf
    BIOLOGICAL CHEMISTRY, 2013, 394 (12) : 1595 - 1605
  • [25] Partial rescue of MeCP2 deficiency by postnatal activation of MeCP2
    Giacometti, Emanuela
    Luikenhuis, Sandra
    Beard, Caroline
    Jaenisch, Rudolf
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (06) : 1931 - 1936
  • [26] Touchscreen learning deficits in Ube3a, Ts65Dn and Mecp2 mouse models of neurodevelopmental disorders with intellectual disabilities
    Leach, P. T.
    Crawley, J. N.
    GENES BRAIN AND BEHAVIOR, 2018, 17 (06)
  • [27] Extending MeCP2 interactome: canonical nucleosomal histones interact with MeCP2
    Ortega-Alarcon, David
    Claveria-Gimeno, Rafael
    Vega, Sonia
    Kalani, Ladan
    Jorge-Torres, Olga C.
    Esteller, Manel
    Ausio, Juan
    Abian, Olga
    Velazquez-Campoy, Adrian
    NUCLEIC ACIDS RESEARCH, 2024, 52 (07) : 3636 - 3653
  • [28] Reduced MeCP2 Expression is Frequent in Autism Frontal Cortex and Correlates with Aberrant MECP2 Promoter Methylation
    Nagarajan, Raman P.
    Hogart, Amber R.
    Gwye, Ynnez
    Martin, Michelle R.
    LaSalle, Janine M.
    EPIGENETICS, 2006, 1 (04) : 172 - 182
  • [29] Hip Displacement in MECP2 Disorders: Prevalence and Risk Factors
    Kanashvili, Bidzina
    Rogers, Kenneth J.
    Shrader, Michael Wade
    Miller, Freeman
    Dabney, Kirk W.
    Howard, Jason J.
    JOURNAL OF PEDIATRIC ORTHOPAEDICS, 2021, 41 (09) : E800 - E803
  • [30] Brain Region-Specific Expression of MeCP2 Isoforms Correlates with DNA Methylation within Mecp2 Regulatory Elements
    Olson, Carl O.
    Zachariah, Robby M.
    Ezeonwuka, Chinelo D.
    Liyanage, Vichithra R. B.
    Rastegar, Mojgan
    PLOS ONE, 2014, 9 (03):