Literature DB >> 22091895

Expanding the phenotype associated with FOXG1 mutations and in vivo FoxG1 chromatin-binding dynamics.

R De Filippis1, L Pancrazi, K Bjørgo, A Rosseto, T Kleefstra, E Grillo, A Panighini, F Cardarelli, I Meloni, F Ariani, M A Mencarelli, J Hayek, A Renieri, M Costa, F Mari.   

Abstract

Mutations in the Forkhead box G1 (FOXG1) gene, a brain specific transcriptional factor, are responsible for the congenital variant of Rett syndrome. Until now FOXG1 point mutations have been reported in 12 Rett patients. Recently seven additional patients have been reported with a quite homogeneous severe phenotype designated as the FOXG1 syndrome. Here we describe two unrelated patients with a de novo FOXG1 point mutation, p.Gln46X and p.Tyr400X, respectively, having a milder phenotype and sharing a distinctive facial appearance. Although FoxG1 action depends critically on its binding to chromatin, very little is known about the dynamics of this process. Using fluorescence recovery after photobleaching, we showed that most of the GFP-FoxG1 fusion protein associates reversibly to chromatin whereas the remaining fraction is bound irreversibly. Furthermore, we showed that the two pathologic derivatives of FoxG1 described in this paper present a dramatic alteration in chromatin affinity and irreversibly bound fraction in comparison with Ser323fsX325 mutant (associated with a severe phenotype) and wild type Foxg1 protein. Our observations suggest that alterations in the kinetics of FoxG1 binding to chromatin might contribute to the pathological effects of FOXG1 mutations.
© 2011 John Wiley & Sons A/S.

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Year:  2011        PMID: 22091895     DOI: 10.1111/j.1399-0004.2011.01810.x

Source DB:  PubMed          Journal:  Clin Genet        ISSN: 0009-9163            Impact factor:   4.438


  11 in total

1.  14q12 and severe Rett-like phenotypes: new clinical insights and physical mapping of FOXG1-regulatory elements.

Authors:  Lila Allou; Laetitia Lambert; Daniel Amsallem; Eric Bieth; Patrick Edery; Anne Destrée; François Rivier; David Amor; Elizabeth Thompson; Julian Nicholl; Michael Harbord; Christophe Nemos; Aline Saunier; Aissa Moustaïne; Adeline Vigouroux; Philippe Jonveaux; Christophe Philippe
Journal:  Eur J Hum Genet       Date:  2012-06-27       Impact factor: 4.246

2.  Zika virus induces FOXG1 nuclear displacement and downregulation in human neural progenitors.

Authors:  Giulia Lottini; Matteo Baggiani; Giulia Chesi; Beatrice D'Orsi; Paola Quaranta; Michele Lai; Laura Pancrazi; Marco Onorati; Mauro Pistello; Giulia Freer; Mario Costa
Journal:  Stem Cell Reports       Date:  2022-06-16       Impact factor: 7.294

3.  Foxg1 localizes to mitochondria and coordinates cell differentiation and bioenergetics.

Authors:  Laura Pancrazi; Giulietta Di Benedetto; Laura Colombaioni; Grazia Della Sala; Giovanna Testa; Francesco Olimpico; Aurelio Reyes; Massimo Zeviani; Tullio Pozzan; Mario Costa
Journal:  Proc Natl Acad Sci U S A       Date:  2015-10-27       Impact factor: 11.205

4.  FOXG1 syndrome: genotype-phenotype association in 83 patients with FOXG1 variants.

Authors:  Diana Mitter; Milka Pringsheim; Marc Kaulisch; Kim Sarah Plümacher; Simone Schröder; Rita Warthemann; Rami Abou Jamra; Martina Baethmann; Thomas Bast; Hans-Martin Büttel; Julie S Cohen; Elizabeth Conover; Carolina Courage; Angelika Eger; Ali Fatemi; Theresa A Grebe; Natalie S Hauser; Wolfram Heinritz; Katherine L Helbig; Marion Heruth; Dagmar Huhle; Karen Höft; Stephanie Karch; Gerhard Kluger; G Christoph Korenke; Johannes R Lemke; Richard E Lutz; Steffi Patzer; Isabelle Prehl; Konstanze Hoertnagel; Keri Ramsey; Tina Rating; Angelika Rieß; Luis Rohena; Mareike Schimmel; Rachel Westman; Frank-Martin Zech; Barbara Zoll; Dörthe Malzahn; Birgit Zirn; Knut Brockmann
Journal:  Genet Med       Date:  2017-06-29       Impact factor: 8.822

Review 5.  Application of CRISPR/Cas9 to human-induced pluripotent stem cells: from gene editing to drug discovery.

Authors:  Claudia De Masi; Paola Spitalieri; Michela Murdocca; Giuseppe Novelli; Federica Sangiuolo
Journal:  Hum Genomics       Date:  2020-06-26       Impact factor: 4.639

Review 6.  Gut, Microbiome, and Brain Regulatory Axis: Relevance to Neurodegenerative and Psychiatric Disorders.

Authors:  G B Stefano; N Pilonis; R Ptacek; J Raboch; M Vnukova; R M Kream
Journal:  Cell Mol Neurobiol       Date:  2018-05-25       Impact factor: 5.046

7.  Delineating FOXG1 syndrome: From congenital microcephaly to hyperkinetic encephalopathy.

Authors:  Nancy Vegas; Mara Cavallin; Camille Maillard; Nathalie Boddaert; Joseph Toulouse; Elise Schaefer; Tally Lerman-Sagie; Dorit Lev; Barth Magalie; Sébastien Moutton; Eric Haan; Bertrand Isidor; Delphine Heron; Mathieu Milh; Stéphane Rondeau; Caroline Michot; Stephanie Valence; Sabrina Wagner; Marie Hully; Cyril Mignot; Alice Masurel; Alexandre Datta; Sylvie Odent; Mathilde Nizon; Leila Lazaro; Marie Vincent; Benjamin Cogné; Anne Marie Guerrot; Stéphanie Arpin; Jean Michel Pedespan; Isabelle Caubel; Benedicte Pontier; Baptiste Troude; Francois Rivier; Christophe Philippe; Thierry Bienvenu; Marie-Aude Spitz; Amandine Bery; Nadia Bahi-Buisson
Journal:  Neurol Genet       Date:  2018-11-07

8.  Structural brain anomalies in patients with FOXG1 syndrome and in Foxg1+/- mice.

Authors:  Milka Pringsheim; Diana Mitter; Simone Schröder; Rita Warthemann; Kim Plümacher; Gerhard Kluger; Martina Baethmann; Thomas Bast; Sarah Braun; Hans-Martin Büttel; Elizabeth Conover; Carolina Courage; Alexandre N Datta; Angelika Eger; Theresa A Grebe; Annette Hasse-Wittmer; Marion Heruth; Karen Höft; Angela M Kaindl; Stephanie Karch; Torsten Kautzky; Georg C Korenke; Bernd Kruse; Richard E Lutz; Heymut Omran; Steffi Patzer; Heike Philippi; Keri Ramsey; Tina Rating; Angelika Rieß; Mareike Schimmel; Rachel Westman; Frank-Martin Zech; Birgit Zirn; Pauline A Ulmke; Godwin Sokpor; Tran Tuoc; Andreas Leha; Martin Staudt; Knut Brockmann
Journal:  Ann Clin Transl Neurol       Date:  2019-03-03       Impact factor: 4.511

9.  The FOXG1/FOXO/SMAD network balances proliferation and differentiation of cortical progenitors and activates Kcnh3 expression in mature neurons.

Authors:  Riccardo Vezzali; Stefan Christopher Weise; Nicole Hellbach; Venissa Machado; Stefanie Heidrich; Tanja Vogel
Journal:  Oncotarget       Date:  2016-06-21

10.  FOXG1 improves mitochondrial function and promotes the progression of nasopharyngeal carcinoma.

Authors:  Huajun Xi; Zhengxiang He; Cao Lv
Journal:  Mol Med Rep       Date:  2021-07-19       Impact factor: 2.952

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