Literature DB >> 24411698

Beyond loss of frataxin: the complex molecular pathology of Friedreich ataxia.

Marguerite V Evans-Galea1, Paul J Lockhart, Charles A Galea, Anthony J Hannan, Martin B Delatycki.   

Abstract

Friedreich ataxia (FRDA) is a devastating neurodegenerative disease caused by mutations in the frataxin gene (FXN). Frataxin is an essential protein which localizes to the mitochondria and is required for the synthesis of iron-sulfur clusters and heme. Most individuals with FRDA are homozygous for trinucleotide GAA.TTC repeat expansions in intron 1 of FXN. The instability of these GAA.TTC repeats, the formation of non-B DNA GAA.TTC structures, and accompanying epigenetic changes lead to reduced FXN transcript and frataxin protein. This 'loss of frataxin' is considered the main driver of disease pathology with mitochondria-rich tissues such as the heart and the brain most affected. While our understanding of FRDA etiology has advanced in recent years, exactly how reduced frataxin leads to disease remains largely unknown. Most therapeutic strategies aim to increase frataxin, yet there are other underlying aspects of the molecular pathology that could impact disease progression and severity. These include RNA toxicity due to antisense RNAs, dysregulated splicing and microRNAs, and repeat-associated protein toxicity via RAN translation. Here we review the diverse array of molecular events that have been shown to influence clinical outcome in FRDA. We also examine additional pathogenic factors from other trinucleotide repeat diseases which could be potentially important in FRDA.

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Year:  2014        PMID: 24411698

Source DB:  PubMed          Journal:  Discov Med        ISSN: 1539-6509            Impact factor:   2.970


  7 in total

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Authors:  Agessandro Abrahão; José Luiz Pedroso; Pedro Braga-Neto; Edson Bor-Seng-Shu; Patricia de Carvalho Aguiar; Orlando Graziani Povoas Barsottini
Journal:  Neurogenetics       Date:  2015-02-08       Impact factor: 2.660

Review 2.  Tandem repeats mediating genetic plasticity in health and disease.

Authors:  Anthony J Hannan
Journal:  Nat Rev Genet       Date:  2018-02-05       Impact factor: 53.242

3.  Gene Transfer of Brain-derived Neurotrophic Factor (BDNF) Prevents Neurodegeneration Triggered by FXN Deficiency.

Authors:  Yurika Katsu-Jiménez; Frida Loría; Juan Carlos Corona; Javier Díaz-Nido
Journal:  Mol Ther       Date:  2016-02-05       Impact factor: 11.454

4.  Damaged mitochondria in Fanconi anemia - an isolated event or a general phenomenon?

Authors:  Giovanni Pagano; Pavithra Shyamsunder; Rama S Verma; Alex Lyakhovich
Journal:  Oncoscience       Date:  2014-04-21

5.  Potential biomarker identification for Friedreich's ataxia using overlapping gene expression patterns in patient cells and mouse dorsal root ganglion.

Authors:  Marissa Z McMackin; Blythe Durbin-Johnson; Marek Napierala; Jill S Napierala; Luis Ruiz; Eleonora Napoli; Susan Perlman; Cecilia Giulivi; Gino A Cortopassi
Journal:  PLoS One       Date:  2019-10-30       Impact factor: 3.240

6.  Altered Secretome and ROS Production in Olfactory Mucosa Stem Cells Derived from Friedreich's Ataxia Patients.

Authors:  Sara Pérez-Luz; Frida Loria; Yurika Katsu-Jiménez; Daniel Oberdoerfer; Oscar-Li Yang; Filip Lim; José Luis Muñoz-Blanco; Javier Díaz-Nido
Journal:  Int J Mol Sci       Date:  2020-09-11       Impact factor: 5.923

7.  Friedreich's Ataxia Frequency in a Large Cohort of Genetically Undetermined Ataxia Patients.

Authors:  Alexander F Brown; Michael H Parkinson; Hector Garcia-Moreno; Ese Mudanohwo; Robyn Labrum; Mary Sweeney; Paola Giunti
Journal:  Front Neurol       Date:  2021-12-09       Impact factor: 4.003

  7 in total

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