Green Tea Polyphenols Rescue of Brain Defects Induced by Overexpression of DYRK1A
Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of...
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Published in | PloS one Vol. 4; no. 2; p. e4606 |
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Main Authors | , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Public Library of Science
26.02.2009
Public Library of Science (PLoS) |
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Abstract | Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of a transgenic mice generated using a human YAC construct that contains five genes including DYRK1A reveal that DYRK1A is involved, during development, in the control of brain volume and cell density of specific brain regions. Gene dosage correction induces a rescue of the brain volume alterations. DYRK1A is also involved in the control of synaptic plasticity and memory consolidation. Increased gene dosage results in brain morphogenesis defects, low BDNF levels and mnemonic deficits in these mice. Epigallocatechin gallate (EGCG) — a member of a natural polyphenols family, found in great amount in green tea leaves — is a specific and safe DYRK1A inhibitor. We maintained control and transgenic mice overexpressing DYRK1A on two different polyphenol-based diets, from gestation to adulthood. The major features of the transgenic phenotype were rescued in these mice. |
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AbstractList | Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of a transgenic mice generated using a human YAC construct that contains five genes including DYRK1A reveal that DYRK1A is involved, during development, in the control of brain volume and cell density of specific brain regions. Gene dosage correction induces a rescue of the brain volume alterations. DYRK1A is also involved in the control of synaptic plasticity and memory consolidation. Increased gene dosage results in brain morphogenesis defects, low BDNF levels and mnemonic deficits in these mice. Epigallocatechin gallate (EGCG) - a member of a natural polyphenols family, found in great amount in green tea leaves - is a specific and safe DYRK1A inhibitor. We maintained control and transgenic mice overexpressing DYRK1A on two different polyphenol-based diets, from gestation to adulthood. The major features of the transgenic phenotype were rescued in these mice. Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of a transgenic mice generated using a human YAC construct that contains five genes including DYRK1A reveal that DYRK1A is involved, during development, in the control of brain volume and cell density of specific brain regions. Gene dosage correction induces a rescue of the brain volume alterations. DYRK1A is also involved in the control of synaptic plasticity and memory consolidation. Increased gene dosage results in brain morphogenesis defects, low BDNF levels and mnemonic deficits in these mice. Epigallocatechin gallate (EGCG) - a member of a natural polyphenols family, found in great amount in green tea leaves - is a specific and safe DYRK1A inhibitor. We maintained control and transgenic mice overexpressing DYRK1A on two different polyphenol-based diets, from gestation to adulthood. The major features of the transgenic phenotype were rescued in these mice.Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of a transgenic mice generated using a human YAC construct that contains five genes including DYRK1A reveal that DYRK1A is involved, during development, in the control of brain volume and cell density of specific brain regions. Gene dosage correction induces a rescue of the brain volume alterations. DYRK1A is also involved in the control of synaptic plasticity and memory consolidation. Increased gene dosage results in brain morphogenesis defects, low BDNF levels and mnemonic deficits in these mice. Epigallocatechin gallate (EGCG) - a member of a natural polyphenols family, found in great amount in green tea leaves - is a specific and safe DYRK1A inhibitor. We maintained control and transgenic mice overexpressing DYRK1A on two different polyphenol-based diets, from gestation to adulthood. The major features of the transgenic phenotype were rescued in these mice. Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of a transgenic mice generated using a human YAC construct that contains five genes including DYRK1A reveal that DYRK1A is involved, during development, in the control of brain volume and cell density of specific brain regions. Gene dosage correction induces a rescue of the brain volume alterations. DYRK1A is also involved in the control of synaptic plasticity and memory consolidation. Increased gene dosage results in brain morphogenesis defects, low BDNF levels and mnemonic deficits in these mice. Epigallocatechin gallate (EGCG) — a member of a natural polyphenols family, found in great amount in green tea leaves — is a specific and safe DYRK1A inhibitor. We maintained control and transgenic mice overexpressing DYRK1A on two different polyphenol-based diets, from gestation to adulthood. The major features of the transgenic phenotype were rescued in these mice. |
Audience | Academic |
Author | Delabar, Jean M Guedj, Fayçal Gillet, Brigitte Smith, Desmond Rivals, Isabelle Sébrié, Catherine Arbones, Mariona Bizot, Jean C Rubin, Edward Ledru, Aurelie Paly, Evelyne |
AuthorAffiliation | 3 Equipe de Statistique Appliquée, ESPCI, Paris, France 5 Department of Molecular and Medical Pharmacology, University of California Los Angeles School of Medicine, Los Angeles, California, United States of America 4 Key-Obs SA, Parc Technologique de La Source, Orleans, France 2 Laboratoire de RMN Biologique, ICSN-CNRS, Gif sur Yvette, France 7 Center for Genomic Regulation, Universitat Pompeu Fabra (UPF), Barcelona, Spain 1 Functional and Adaptive Biology, Université Paris Diderot-Paris7 and CNRS, Paris, France The Rockefeller University, United States of America 6 Genome Sciences Department, Lawrence Berkeley National Lab (LBNL), Berkeley, California, United States of America |
AuthorAffiliation_xml | – name: 4 Key-Obs SA, Parc Technologique de La Source, Orleans, France – name: 5 Department of Molecular and Medical Pharmacology, University of California Los Angeles School of Medicine, Los Angeles, California, United States of America – name: The Rockefeller University, United States of America – name: 1 Functional and Adaptive Biology, Université Paris Diderot-Paris7 and CNRS, Paris, France – name: 7 Center for Genomic Regulation, Universitat Pompeu Fabra (UPF), Barcelona, Spain – name: 2 Laboratoire de RMN Biologique, ICSN-CNRS, Gif sur Yvette, France – name: 3 Equipe de Statistique Appliquée, ESPCI, Paris, France – name: 6 Genome Sciences Department, Lawrence Berkeley National Lab (LBNL), Berkeley, California, United States of America |
Author_xml | – sequence: 1 fullname: Guedj, Fayçal – sequence: 2 fullname: Sébrié, Catherine – sequence: 3 fullname: Rivals, Isabelle – sequence: 4 fullname: Ledru, Aurelie – sequence: 5 fullname: Paly, Evelyne – sequence: 6 fullname: Bizot, Jean C – sequence: 7 fullname: Smith, Desmond – sequence: 8 fullname: Rubin, Edward – sequence: 9 fullname: Gillet, Brigitte – sequence: 10 fullname: Arbones, Mariona – sequence: 11 fullname: Delabar, Jean M |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/19242551$$D View this record in MEDLINE/PubMed https://www.osti.gov/servlets/purl/1627367$$D View this record in Osti.gov |
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ContentType | Journal Article |
Copyright | COPYRIGHT 2009 Public Library of Science 2009 Guedj et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. Guedj et al. 2009 |
Copyright_xml | – notice: COPYRIGHT 2009 Public Library of Science – notice: 2009 Guedj et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. – notice: Guedj et al. 2009 |
CorporateAuthor | Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States) |
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Snippet | Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain... Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain... |
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SubjectTerms | Alterations analogs & derivatives Analysis Angiogenesis Animals antagonists & inhibitors Antioxidants Antioxidants - pharmacology Apolipoproteins Artificial chromosomes Atherosclerosis BASIC BIOLOGICAL SCIENCES Biology Brain Brain - growth & development Brain-derived neurotrophic factor Catechin Catechin - analogs & derivatives Catechin - pharmacology Cell cycle Cell density Consolidation Defects Developmental Biology/Neurodevelopment diet Dosage Down syndrome Down's syndrome Dyrk Kinases DYRK1A gene Edema Epigallocatechin gallate Epigallocatechin-3-gallate Flavonoids Flavonoids - pharmacology Gene Dosage gene overexpression Genes Genetic engineering genetically modified animals genetics Genomes Gestation Green tea growth & development hippocampus Humans Intellectual disabilities Ischemia Kinases Learning Magnetic resonance imaging Memory Mice Mice, Transgenic Morphogenesis Morphology mouse models Neurological Disorders/Cognitive Neurology and Dementia Neuronal Plasticity neuroprotective effect Neuroscience/Neuronal Signaling Mechanisms pharmacology Phenols Phenols - pharmacology physiology Polyphenols protein kinases Protein Serine-Threonine Kinases Protein Serine-Threonine Kinases - antagonists & inhibitors Protein Serine-Threonine Kinases - genetics Protein Serine-Threonine Kinases - physiology Protein-Tyrosine Kinases Protein-Tyrosine Kinases - antagonists & inhibitors Protein-Tyrosine Kinases - genetics Protein-Tyrosine Kinases - physiology Proteins Rodents Synaptic plasticity Tea Transgenic animals Transgenic mice visual object recognition volume |
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Title | Green Tea Polyphenols Rescue of Brain Defects Induced by Overexpression of DYRK1A |
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