نتایج جستجو برای: frataxin fxn gene

تعداد نتایج: 1141685  

Journal: :Cell reports 2016
Jeannine Gerhardt Angela D Bhalla Jill Sergesketter Butler James W Puckett Peter B Dervan Zev Rosenwaks Marek Napierala

Friedreich's ataxia (FRDA) is caused by the expansion of GAA repeats located in the Frataxin (FXN) gene. The GAA repeats continue to expand in FRDA patients, aggravating symptoms and contributing to disease progression. The mechanism leading to repeat expansion and decreased FXN transcription remains unclear. Using single-molecule analysis of replicated DNA, we detected that expanded GAA repeat...

2017
Jill Sergesketter Napierala Yanjie Li Yue Lu Kevin Lin Lauren A Hauser David R Lynch Marek Napierala

Friedreich's ataxia (FRDA) is an autosomal recessive neurodegenerative disease usually caused by large homozygous expansions of GAA repeat sequences in intron 1 of the frataxin (FXN) gene. FRDA patients homozygous for GAA expansions have low FXN mRNA and protein levels when compared with heterozygous carriers or healthy controls. Frataxin is a mitochondrial protein involved in iron-sulfur clust...

Journal: :Journal of child neurology 2012
R Mark Payne Gregory R Wagner

Friedreich ataxia is the most common human ataxia and results from inadequate production of the frataxin protein, most often the result of a triplet expansion in the nuclear FXN gene. The gene cannot be transcribed to generate the messenger ribonucleic acid for frataxin. Frataxin is an iron-binding protein targeted to the mitochondrial matrix. In its absence, multiple iron-sulfur-dependent prot...

2015
Jill Sergesketter Butler Marek Napierala

Reduced expression of the mitochondrial protein Frataxin (FXN) is the underlying cause of Friedreich's ataxia. We propose a model of premature termination of FXN transcription induced by pathogenic expanded GAA repeats that links R-loop structures, antisense transcription, and heterochromatin formation as a novel mechanism of transcriptional repression in Friedreich's ataxia.

2010
Myriam Rai Elisabetta Soragni C. James Chou Glenn Barnes Steve Jones James R. Rusche Joel M. Gottesfeld Massimo Pandolfo

BACKGROUND Friedreich's ataxia (FRDA), the most common recessive ataxia in Caucasians, is due to severely reduced levels of frataxin, a highly conserved protein, that result from a large GAA triplet repeat expansion within the first intron of the frataxin gene (FXN). Typical marks of heterochromatin are found near the expanded GAA repeat in FRDA patient cells and mouse models. Histone deacetyla...

2018
Kai Cai Ronnie O Frederick Marco Tonelli John L Markley

Whereas iron-sulfur (Fe-S) cluster assembly on the wild-type scaffold protein ISCU, as catalyzed by the human cysteine desulfurase complex (NIA)2, exhibits a requirement for frataxin (FXN), in yeast, ISCU variant M108I has been shown to bypass the FXN requirement. Wild-type ISCU populates two interconverting conformational states: one structured and one dynamically disordered. We show here that...

2016
Angela D. Bhalla Alireza Khodadadi‐Jamayran Yanjie Li David R. Lynch Marek Napierala

OBJECTIVE Friedreich's ataxia (FRDA) is an autosomal recessive trinucleotide repeat expansion disorder caused by epigenetic silencing of the frataxin gene (FXN). Current research suggests that damage and variation of mitochondrial DNA (mtDNA) contribute to the molecular pathogenesis of FRDA. We sought to establish the extent of the mutation burden across the mitochondrial genome in FRDA cells a...

2018
Ignacio Hugo Castro Alejandro Ferrari María Georgina Herrera Martín Ezequiel Noguera Lorenzo Maso Monica Benini Alessandra Rufini Roberto Testi Paola Costantini Javier Santos

Friedreich's ataxia is a disease caused by a decrease in the levels of expression or loss of functionality of the mitochondrial protein frataxin (FXN). The development of an active and stable recombinant variant of FXN is important for protein replacement therapy. Although valuable data about the mature form FXN81-210 has been collected, not enough information is available about the conformatio...

2016
Kuchuan Chen Guang Lin Nele A Haelterman Tammy Szu-Yu Ho Tongchao Li Zhihong Li Lita Duraine Brett H Graham Manish Jaiswal Shinya Yamamoto Matthew N Rasband Hugo J Bellen

Mutations in Frataxin (FXN) cause Friedreich's ataxia (FRDA), a recessive neurodegenerative disorder. Previous studies have proposed that loss of FXN causes mitochondrial dysfunction, which triggers elevated reactive oxygen species (ROS) and leads to the demise of neurons. Here we describe a ROS independent mechanism that contributes to neurodegeneration in fly FXN mutants. We show that loss of...

2012
Alain Martelli Marek Napierala Hélène Puccio

In 1996, a link was identified between Friedreich's ataxia (FRDA), the most common inherited ataxia in men, and alterations in the gene encoding frataxin (FXN). Initial studies revealed that the disease is caused by a unique, most frequently biallelic, expansion of the GAA sequence in intron 1 of FXN. Since the identification of this link, there has been tremendous progress in understanding fra...

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