Literature DB >> 28427592

Pathologic Active mTOR Mutation in Brain Malformation with Intractable Epilepsy Leads to Cell-Autonomous Migration Delay.

Sae Hanai1, Sayuri Sukigara1, Hongmei Dai2, Tomoo Owa3, Shin-Ichi Horike4, Taisuke Otsuki5, Takashi Saito6, Eiji Nakagawa6, Naoki Ikegaya5, Takanobu Kaido5, Noriko Sato7, Akio Takahashi5, Kenji Sugai6, Yuko Saito8, Masayuki Sasaki6, Mikio Hoshino9, Yu-Ichi Goto1, Schuichi Koizumi10, Masayuki Itoh11.   

Abstract

The activation of phosphatidylinositol 3-kinase-AKTs-mammalian target of rapamycin cell signaling pathway leads to cell overgrowth and abnormal migration and results in various types of cortical malformations, such as hemimegalencephaly (HME), focal cortical dysplasia, and tuberous sclerosis complex. However, the pathomechanism underlying abnormal cell migration remains unknown. With the use of fetal mouse brain, we performed causative gene analysis of the resected brain tissues from a patient with HME and investigated the pathogenesis. We obtained a novel somatic mutation of the MTOR gene, having approximately 11% and 7% mutation frequency in the resected brain tissues. Moreover, we revealed that the MTOR mutation resulted in hyperphosphorylation of its downstream molecules, S6 and 4E-binding protein 1, and delayed cell migration on the radial glial fiber and did not affect other cells. We suspect cell-autonomous migration arrest on the radial glial foot by the active MTOR mutation and offer potential explanations for why this may lead to cortical malformations such as HME.
Copyright © 2017 American Society for Investigative Pathology. Published by Elsevier Inc. All rights reserved.

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Year:  2017        PMID: 28427592     DOI: 10.1016/j.ajpath.2017.01.015

Source DB:  PubMed          Journal:  Am J Pathol        ISSN: 0002-9440            Impact factor:   4.307


  8 in total

1.  RHEB/mTOR hyperactivity causes cortical malformations and epileptic seizures through increased axonal connectivity.

Authors:  Martina Proietti Onori; Linda M C Koene; Carmen B Schäfer; Mark Nellist; Marcel de Brito van Velze; Zhenyu Gao; Ype Elgersma; Geeske M van Woerden
Journal:  PLoS Biol       Date:  2021-05-26       Impact factor: 8.029

2.  Expression of 4E-BP1 in juvenile mice alleviates mTOR-induced neuronal dysfunction and epilepsy.

Authors:  Lena H Nguyen; Youfen Xu; Travorn Mahadeo; Longbo Zhang; Tiffany V Lin; Heather A Born; Anne E Anderson; Angélique Bordey
Journal:  Brain       Date:  2022-05-24       Impact factor: 15.255

Review 3.  CfDNA Measurement as a Diagnostic Tool for the Detection of Brain Somatic Mutations in Refractory Epilepsy.

Authors:  Sonia Mayo; Irene Gómez-Manjón; Francisco Javier Fernández-Martínez; Ana Camacho; Francisco Martínez; Julián Benito-León
Journal:  Int J Mol Sci       Date:  2022-04-28       Impact factor: 6.208

4.  Neural progenitors derived from Tuberous Sclerosis Complex patients exhibit attenuated PI3K/AKT signaling and delayed neuronal differentiation.

Authors:  Avery J Zucco; Valentina Dal Pozzo; Alina Afinogenova; Ronald P Hart; Orrin Devinsky; Gabriella D'Arcangelo
Journal:  Mol Cell Neurosci       Date:  2018-08-23       Impact factor: 4.314

5.  Emergence of mTOR mutation as an acquired resistance mechanism to AKT inhibition, and subsequent response to mTORC1/2 inhibition.

Authors:  Niamh Coleman; Vivek Subbiah; Shubham Pant; Keyur Patel; Sinchita Roy-Chowdhuri; Sireesha Yedururi; Amber Johnson; Timothy A Yap; Jordi Rodon; Kenna Shaw; Funda Meric-Bernstam
Journal:  NPJ Precis Oncol       Date:  2021-12-01

Review 6.  Translating the Role of mTOR- and RAS-Associated Signalopathies in Autism Spectrum Disorder: Models, Mechanisms and Treatment.

Authors:  Verica Vasic; Mattson S O Jones; Denise Haslinger; Lisa S Knaus; Michael J Schmeisser; Gaia Novarino; Andreas G Chiocchetti
Journal:  Genes (Basel)       Date:  2021-10-30       Impact factor: 4.141

7.  Corrigendum: Convergent and Divergent Mechanisms of Epileptogenesis in mTORopathies.

Authors:  Lena H Nguyen; Angélique Bordey
Journal:  Front Neuroanat       Date:  2021-07-06       Impact factor: 3.856

8.  Variation in a range of mTOR-related genes associates with intracranial volume and intellectual disability.

Authors:  M R F Reijnders; M Kousi; G M van Woerden; M Klein; J Bralten; G M S Mancini; T van Essen; M Proietti-Onori; E E J Smeets; M van Gastel; A P A Stegmann; S J C Stevens; S H Lelieveld; C Gilissen; R Pfundt; P L Tan; T Kleefstra; B Franke; Y Elgersma; N Katsanis; H G Brunner
Journal:  Nat Commun       Date:  2017-10-20       Impact factor: 14.919

  8 in total

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