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Small Molecules Affecting Transcription in Friedreich Ataxia

Overview
Journal Pharmacol Ther
Specialty Pharmacology
Date 2007 Sep 11
PMID 17826840
Citations 29
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Abstract

This review concerns the development of small molecule therapeutics for the inherited neurodegenerative disease Friedreich ataxia (FRDA). FRDA is caused by transcriptional repression of the nuclear FXN gene, encoding the essential mitochondrial protein frataxin and accompanying loss of frataxin protein. Frataxin insufficiency leads to mitochrondrial dysfunction and progressive neurodegeneration, along with scoliosis, diabetes and cardiomyopathy. Individuals with FRDA generally die in early adulthood from the associated heart disease, the most common cause of death in FRDA. While antioxidants and iron chelators have shown promise in ameliorating the symptoms of the disease, there is no effective therapy for FRDA that addresses the cause of the disease, the loss of frataxin protein. Gene therapy and protein replacement strategies for FRDA are promising approaches; however, current technology is not sufficiently advanced to envisage treatments for FRDA coming from these approaches in the near future. Since the FXN mutation in FRDA, expanded GAA.TTC triplets in an intron, does not alter the amino acid sequence of frataxin protein, gene reactivation would be of therapeutic benefit. Thus, a number of laboratories have focused on small molecule activators of FXN gene expression as potential therapeutics, and this review summarizes the current status of these efforts, as well as the molecular basis for gene silencing in FRDA.

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References
1.
Bidichandani S, Ashizawa T, Patel P . The GAA triplet-repeat expansion in Friedreich ataxia interferes with transcription and may be associated with an unusual DNA structure. Am J Hum Genet. 1998; 62(1):111-21. PMC: 1376805. DOI: 10.1086/301680. View

2.
Ohshima K, Montermini L, Wells R, Pandolfo M . Inhibitory effects of expanded GAA.TTC triplet repeats from intron I of the Friedreich ataxia gene on transcription and replication in vivo. J Biol Chem. 1998; 273(23):14588-95. DOI: 10.1074/jbc.273.23.14588. View

3.
Tapscott S, Klesert T, Widrow R, Stoger R, Laird C . Fragile-X syndrome and myotonic dystrophy: parallels and paradoxes. Curr Opin Genet Dev. 1998; 8(2):245-53. DOI: 10.1016/s0959-437x(98)80148-2. View

4.
Tse C, Sera T, Wolffe A, Hansen J . Disruption of higher-order folding by core histone acetylation dramatically enhances transcription of nucleosomal arrays by RNA polymerase III. Mol Cell Biol. 1998; 18(8):4629-38. PMC: 109049. DOI: 10.1128/MCB.18.8.4629. View

5.
Mariappan S, Catasti P, Silks 3rd L, Bradbury E, Gupta G . The high-resolution structure of the triplex formed by the GAA/TTC triplet repeat associated with Friedreich's ataxia. J Mol Biol. 1999; 285(5):2035-52. DOI: 10.1006/jmbi.1998.2435. View