frataxin gene
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Molecules ◽  
2020 ◽  
Vol 25 (18) ◽  
pp. 4085
Author(s):  
Antonella Bizzoca ◽  
Martina Caracciolo ◽  
Patrizia Corsi ◽  
Thea Magrone ◽  
Emilio Jirillo ◽  
...  

In this study, the neural phenotype is explored in rodent models of the spinocerebellar disorder known as the Friedreich Ataxia (FA), which results from mutations within the gene encoding the Frataxin mitochondrial protein. For this, the M12 line, bearing a targeted mutation, which disrupts the Frataxin gene exon 4 was used, together with the M02 line, which, in addition, is hemizygous for the human Frataxin gene mutation (Pook transgene), implying the occurrence of 82–190 GAA repeats within its first intron. The mutant mice phenotype was compared to the one of wild type littermates in regions undergoing differential profiles of neurogenesis, including the cerebellar cortex and the spinal cord by using neuronal (β-tubulin) and glial (Glial Fibrillary Acidic Protein) markers as well as the Contactin 1 axonal glycoprotein, involved in neurite growth control. Morphological/morphometric analyses revealed that while in Frataxin mutant mice the neuronal phenotype was significantly counteracted, a glial upregulation occurred at the same time. Furthermore, Contactin 1 downregulation suggested that changes in the underlying gene contributed to the disorder pathogenesis. Therefore, the FA phenotype implies an alteration of the developmental profile of neuronal and glial precursors. Finally, epigallocatechin gallate polyphenol administration counteracted the disorder, indicating protective effects of antioxidant administration.


2020 ◽  
Vol 11 (1) ◽  
Author(s):  
Pietro Giuseppe Mazzara ◽  
Sharon Muggeo ◽  
Mirko Luoni ◽  
Luca Massimino ◽  
Mattia Zaghi ◽  
...  

2020 ◽  
Vol 29 (17) ◽  
pp. 2831-2844 ◽  
Author(s):  
Maria Russi ◽  
Elodie Martin ◽  
Benoit D’Autréaux ◽  
Laura Tixier ◽  
Hervé Tricoire ◽  
...  

Abstract Friedreich ataxia (FA) is caused by GAA repeat expansions in the first intron of FXN, the gene encoding frataxin, which results in decreased gene expression. Thanks to the high degree of frataxin conservation, the Drosophila melanogaster fruitfly appears as an adequate animal model to study this disease and to evaluate therapeutic interventions. Here, we generated a Drosophila model of FA with CRISPR/Cas9 insertion of approximately 200 GAA in the intron of the fly frataxin gene fh. These flies exhibit a developmental delay and lethality associated with decreased frataxin expression. We were able to bypass preadult lethality using genetic tools to overexpress frataxin only during the developmental period. These frataxin-deficient adults are short-lived and present strong locomotor defects. RNA-Seq analysis identified deregulation of genes involved in amino-acid metabolism and transcriptomic signatures of oxidative stress. In particular, we observed a progressive increase of Tspo expression, fully rescued by adult frataxin expression. Thus, Tspo expression constitutes a molecular marker of the disease progression in our fly model and might be of interest in other animal models or in patients. Finally, in a candidate drug screening, we observed that N-acetyl cysteine improved the survival, locomotor function, resistance to oxidative stress and aconitase activity of frataxin-deficient flies. Therefore, our model provides the opportunity to elucidate in vivo, the protective mechanisms of this molecule of therapeutic potential. This study also highlights the strength of the CRISPR/Cas9 technology to introduce human mutations in endogenous orthologous genes, leading to Drosophila models of human diseases with improved physiological relevance.


2020 ◽  
Vol 31 (15-16) ◽  
pp. 839-851 ◽  
Author(s):  
Jixue Li ◽  
Yanjie Li ◽  
Jun Wang ◽  
Trevor J. Gonzalez ◽  
Aravind Asokan ◽  
...  

2020 ◽  
Vol 8 (9) ◽  
pp. 2398-2403
Author(s):  
Ewa Czuba-Wojnilowicz ◽  
Serena Viventi ◽  
Sara E. Howden ◽  
Simon Maksour ◽  
Amy E. Hulme ◽  
...  

Multilayered particles in gene therapy for Friedreich's ataxia induce a 27 000-fold increase in frataxin gene expression in a patient-derived cell model.


Mitochondrion ◽  
2016 ◽  
Vol 30 ◽  
pp. 59-66 ◽  
Author(s):  
Noëlia Sanchez ◽  
Pierre Chapdelaine ◽  
Joël Rousseau ◽  
Frédéric Raymond ◽  
Jacques Corbeil ◽  
...  

2016 ◽  
Vol 2016 (1) ◽  
Author(s):  
Maria-Elena Soto* ◽  
Alejandro Molina-Garcia* ◽  
Ingrid Flandes ◽  
Ricardo Marquez ◽  
Antonio Arias-Godinez ◽  
...  

Gene Therapy ◽  
2016 ◽  
Vol 23 (12) ◽  
pp. 846-856 ◽  
Author(s):  
H Khonsari ◽  
M Schneider ◽  
S Al-Mahdawi ◽  
Y G Chianea ◽  
M Themis ◽  
...  

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