Literature DB >> 22194194

Tau's role in the developing brain: implications for intellectual disability.

Tamar Sapir1, Michael Frotscher, Talia Levy, Eva-Maria Mandelkow, Orly Reiner.   

Abstract

Microdeletions encompassing the MAPT (Tau) locus resulting in intellectual disability raised the hypothesis that Tau may regulate early functions in the developing brain. Our results indicate that neuronal migration was inhibited in mouse brains following Tau reduction. In addition, the leading edge of radially migrating neurons was aberrant in spite of normal morphology of radial glia. Furthermore, intracellular mitochondrial transport and morphology were affected. In early postnatal brains, a portion of Tau knocked down neurons reached the cortical plate. Nevertheless, they exhibited far less developed dendrites and a striking reduction in connectivity evident by the size of boutons. Our novel results strongly implicate MAPT as a dosage-sensitive gene in this locus involved in intellectual disability. Furthermore, our results are likely to impact our understanding of other diseases involving Tau.

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Year:  2011        PMID: 22194194     DOI: 10.1093/hmg/ddr603

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  35 in total

1.  Differential Mitochondrial Requirements for Radially and Non-radially Migrating Cortical Neurons: Implications for Mitochondrial Disorders.

Authors:  Erika G Lin-Hendel; Meagan J McManus; Douglas C Wallace; Stewart A Anderson; Jeffrey A Golden
Journal:  Cell Rep       Date:  2016-03-31       Impact factor: 9.423

Review 2.  Synapse assembly and neurodevelopmental disorders.

Authors:  Philip Washbourne
Journal:  Neuropsychopharmacology       Date:  2014-07-03       Impact factor: 7.853

3.  Loss of tau and Fyn reduces compensatory effects of MAP2 for tau and reveals a Fyn-independent effect of tau on calcium.

Authors:  Guanghao Liu; Ramasamy Thangavel; Jacob Rysted; Yohan Kim; Meghan B Francis; Eric Adams; Zhihong Lin; Rebecca J Taugher; John A Wemmie; Yuriy M Usachev; Gloria Lee
Journal:  J Neurosci Res       Date:  2019-08-26       Impact factor: 4.164

Review 4.  Tau: Enabler of diverse brain disorders and target of rapidly evolving therapeutic strategies.

Authors:  Che-Wei Chang; Eric Shao; Lennart Mucke
Journal:  Science       Date:  2021-02-26       Impact factor: 47.728

Review 5.  Do Sleep Disturbances have a Dual Effect on Alzheimer's Disease?

Authors:  Shirin Arjmandi-Rad; Mahshid Ebrahimnejad; Mohammad-Reza Zarrindast; Salar Vaseghi
Journal:  Cell Mol Neurobiol       Date:  2022-05-14       Impact factor: 5.046

Review 6.  Interactions Between α-Synuclein and Tau Protein: Implications to Neurodegenerative Disorders.

Authors:  Xuling Li; Simon James; Peng Lei
Journal:  J Mol Neurosci       Date:  2016-09-15       Impact factor: 3.444

7.  Molecular drivers and cortical spread of lateral entorhinal cortex dysfunction in preclinical Alzheimer's disease.

Authors:  Usman A Khan; Li Liu; Frank A Provenzano; Diego E Berman; Caterina P Profaci; Richard Sloan; Richard Mayeux; Karen E Duff; Scott A Small
Journal:  Nat Neurosci       Date:  2013-12-22       Impact factor: 24.884

8.  The Microtubule-Associated Protein Tau Mediates the Organization of Microtubules and Their Dynamic Exploration of Actin-Rich Lamellipodia and Filopodia of Cortical Growth Cones.

Authors:  Sayantanee Biswas; Katherine Kalil
Journal:  J Neurosci       Date:  2017-11-22       Impact factor: 6.167

Review 9.  Molecular underpinnings of prefrontal cortex development in rodents provide insights into the etiology of neurodevelopmental disorders.

Authors:  D Schubert; G J M Martens; S M Kolk
Journal:  Mol Psychiatry       Date:  2014-12-02       Impact factor: 15.992

Review 10.  Dendritic/Post-synaptic Tau and Early Pathology of Alzheimer's Disease.

Authors:  Xiaomin Yin; Chenhao Zhao; Yanyan Qiu; Zheng Zhou; Junze Bao; Wei Qian
Journal:  Front Mol Neurosci       Date:  2021-06-25       Impact factor: 5.639

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