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21. Myotonic Dystrophy Type 1: Cognition,
 
22. Myotonic Dystrophy.
 
23. Myotonic Dystrophy: Present Management,
$7.95
24. Chemical modifiers of unstable
 
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21. Myotonic Dystrophy Type 1: Cognition, Personality and Emotion
by Stefan Winblad
 Paperback: Pages (2006)

Isbn: 9162869787
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22. Myotonic Dystrophy.
by Peter S. Harper
 Hardcover: Pages (1990)

Asin: B000NHWJTU
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23. Myotonic Dystrophy: Present Management, Future Therapy
by Baziel G. M. Van Engelen, Bruno Eymard, Douglas E. Wilcox, Peter S. Harper Pepter Harper
 Paperback: Pages (2004)

Asin: B000OKZ0HY
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24. Chemical modifiers of unstable expanded simple sequence repeats: What goes up, could come down [An article from: Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis
by M. Gomes-Pereira, D.G. Monckton
Digital: 19 Pages (2006-06-25)
list price: US$7.95 -- used & new: US$7.95
(price subject to change: see help)
Asin: B000P6NUD8
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Editorial Review

Product Description
This digital document is a journal article from Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, published by Elsevier in 2006. The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.

Abstract:
A mounting number of inherited human disorders, including Huntington disease, myotonic dystrophy, fragile X syndrome, Friedreich ataxia and several spinocerebellar ataxias, have been associated with the expansion of unstable simple sequence DNA repeats. Despite a similar genetic basis, pathogenesis in these disorders is mediated by a variety of both loss and gain of function pathways. Thus, therapies targeted at downstream pathology are likely to be disease specific. Characteristically, disease-associated expanded alleles in these disorders are highly unstable in the germline and somatic cells, with a tendency towards further expansion. Whereas germline expansion accounts for the phenomenon of anticipation, tissue-specific, age-dependent somatic expansion may contribute towards the tissue-specificity and progressive nature of the symptoms. Thus, somatic expansion presents as a novel therapeutic target in these disorders. Suppression of somatic expansion should be therapeutically beneficial, whilst reductions in repeat length could be curative. It is well established that both cis- and trans-acting genetic modifiers play key roles in the control of repeat dynamics. Importantly, recent data have revealed that expanded CAG.CTG repeats are also sensitive to a variety of trans-acting chemical modifiers. These data provide an exciting proof of principle that drug induced suppression of somatic expansion might indeed be feasible. Moreover, as our understanding of the mechanism of expansion is refined more rational approaches to chemical intervention in the expansion pathway can be envisioned. For instance, the demonstration that expansion of CAG.CTG repeats is dependent on the Msh2, Msh3 and Pms2 genes, highlights components of the DNA mismatch repair pathway as therapeutic targets. In addition to potential therapeutic applications, the response of expanded simple repeats to genotoxic assault suggests such sequences could also have utility as bio-monitors of environmentally induced genetic damage in the soma. ... Read more


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