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Fluorescent multiplex PCR--fast method for autosomal dominant spinocerebellar ataxias screening
Bauer PO, Kotliarova SE, Matoska V, Musova Z, Hedvicakova P, Boday A, Tomek A, Nukina N, Goetz P.
Jazyk angličtina Země Rusko
Grantová podpora
NM7405
MZ0
CEP - Centrální evidence projektů
Digitální knihovna NLK
Plný text - Část
Zdroj
- MeSH
- expanze trinukleotidových repetic genetika MeSH
- finanční podpora výzkumu jako téma MeSH
- genetické testování metody MeSH
- lidé MeSH
- polymerázová řetězová reakce metody MeSH
- spinocerebelární ataxie genetika MeSH
- Check Tag
- lidé MeSH
Expansion of CAG trinucleotide repeats has been shown to cause a number of autosomal dominant spinocerebellar ataxias such as SCA1, SCA2, SCA3/MJD, SCA6 and SCA7. These disorders are characterized by a wide inter- and intrafamiliar variation in clinical features. The same mutation can result in different phenotypes and the very similar phenotypes can be caused by different mutations. Therefore it is necessary to investigate more SCA genes (according to prevalence) to identify the causal elongation. We developed a fast and efficient screening method based on touchdown multiplex PCR with fluorescent labelled primers for the most common types of SCAs (SCA 1, 2, 3 and 7). It has been reliable in 113 probands tested. Fragment analysis was performed by using 6% denaturing polyacrylamide gel and employing the automated DNA sequencer. This method considerably shortens the process of molecular genetic screening of SCAs and might be used as a tip for designing other SCA screening sets.
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- $a Fluorescent multiplex PCR--fast method for autosomal dominant spinocerebellar ataxias screening. / $c Bauer PO, Kotliarova SE, Matoska V, Musova Z, Hedvicakova P, Boday A, Tomek A, Nukina N, Goetz P.
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- $a Expansion of CAG trinucleotide repeats has been shown to cause a number of autosomal dominant spinocerebellar ataxias such as SCA1, SCA2, SCA3/MJD, SCA6 and SCA7. These disorders are characterized by a wide inter- and intrafamiliar variation in clinical features. The same mutation can result in different phenotypes and the very similar phenotypes can be caused by different mutations. Therefore it is necessary to investigate more SCA genes (according to prevalence) to identify the causal elongation. We developed a fast and efficient screening method based on touchdown multiplex PCR with fluorescent labelled primers for the most common types of SCAs (SCA 1, 2, 3 and 7). It has been reliable in 113 probands tested. Fragment analysis was performed by using 6% denaturing polyacrylamide gel and employing the automated DNA sequencer. This method considerably shortens the process of molecular genetic screening of SCAs and might be used as a tip for designing other SCA screening sets.
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