نتایج جستجو برای: gaa trinucleotide repeat

تعداد نتایج: 75075  

2011
Francesco Saccà Giorgia Puorro Antonella Antenora Angela Marsili Alessandra Denaro Raffaele Piro Pierpaolo Sorrentino Chiara Pane Alessandra Tessa Vincenzo Brescia Morra Sergio Cocozza Giuseppe De Michele Filippo M. Santorelli Alessandro Filla

BACKGROUND Friedreich's ataxia (FRDA) is the most common hereditary ataxia among caucasians. The molecular defect in FRDA is the trinucleotide GAA expansion in the first intron of the FXN gene, which encodes frataxin. No studies have yet reported frataxin protein and mRNA levels in a large cohort of FRDA patients, carriers and controls. METHODOLOGY/PRINCIPAL FINDINGS We enrolled 24 patients w...

Journal: :Arquivos de neuro-psiquiatria 1999
I V Schwartz L B Jardim A C Puga S Cocozza S Leistner L C Lima

Friedreich ataxia (FRDA), the most common autosomal recessive ataxia, is caused in 94% of cases by homozygous expansions of an unstable GAA repeat localised in intron 1 of the X25 gene. We have investigated this mutation in five Brazilian patients: four with typical FRDA findings and one patient with atypical manifestations, who was considered to have some other form of cerebellar ataxia with r...

2014
Jiaxin Hu Jing Liu K. Jayaprakash Narayanannair Jeremy G. Lackey Satya Kuchimanchi Kallanthottathil G. Rajeev Muthiah Manoharan Eric E. Swayze Walt F. Lima Thazha P. Prakash Qin Xiang Carlos Martinez David R. Corey

Dentatorubral-pallidoluysian atrophy (DRPLA) is a progressive neurodegenerative disorder that currently has no curative treatments. DRPLA is caused by an expansion of a CAG trinucleotide repeat region within the protein-encoding sequence of the atrophin-1 (ATN-1) gene. Inhibition of mutant ATN-1 protein expression is one strategy for treating DRPLA, and allele-selective gene silencing agents th...

2013
Mohammadmersad Ghorbani Simon J. E. Taylor Mark A. Pook Annette Payne

Previous studies have examined DNA methylation in different trinucleotide repeat diseases. We have combined this data and used a pattern searching algorithm to identify motifs in the DNA surrounding aberrantly methylated CpGs found in the DNA of patients with one of the three trinucleotide repeat (TNR) expansion diseases: fragile X syndrome (FRAXA), myotonic dystrophy type I (DM1), or Friedreic...

Behnam Kamalidehghan, Elham Khalili, Massoud Houshmand, Mohammad Hossein Salehi, Omid Aryani,

Background: Friedreich ataxia (FRDA) is an autosomal recessive disorder caused by guanine-adenine-adenine (GAA) triplet expansions in the FXN gene. Its product, frataxin, which severely reduces in FRDA patients, leads to oxidative damage in mitochondria. The purpose of this study was to evaluate the triple nucleotide repeated expansions in Iranian FRDA patients and to elucidate distinguishable ...

2000
SANDRA LEISTNER LUCIANE C. LIMA

Friedreich ataxia (FRDA), the most common autosomal recessive ataxia, is caused in 94% of cases by homozygous expansions of an unstable GAA repeat localised in intron 1 of the X25 gene. We have investigated this mutation in five Brazilian patients: four with typical FRDA findings and one patient with atypical manifestations, who was considered to have some other form of cerebellar ataxia with r...

Journal: :iranian biomedical journal 0
محمد حسین صالحی mohammad hossein salehi مسعود هوشمند massoud houshmand امید آریانی omid aryani بهنام کمالی دهقان behnam kamalidehghan الهام خلیلی elham khalili

background: friedreich ataxia (frda) is an autosomal recessive disorder caused by guanine-adenine-adenine (gaa) triplet expansions in the fxn gene. its product, frataxin, which severely reduces in frda patients, leads to oxidative damage in mitochondria. the purpose of this study was to evaluate the triple nucleotide repeated expansions in iranian frda patients and to elucidate distinguishable ...

2012
Gagan B. Panigrahi Meghan M. Slean Jodie P. Simard Christopher E. Pearson

Background: Slipped-DNAs are mutagenic intermediates in disease-causing trinucleotide repeat instability; their processing is not well understood. Results: MutLα is required to repair single short slip-outs, and enhances repair of clustered slipouts. Conclusion: Aberrant mismatch repair attempts on clustered slip-outs may cause repeat instability. Significance: This work has determined one of t...

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