Once into the expanded disease-associated range, trinucleotide repeat alleles become dramatically unstable in the germline and in somatic cells. The molecular mechanism(s) that underlie this unique form of dynamic mutation are poorly understood. Numerous transgenic mouse models of unstable trinucleotide repeats, which reconstitute the dynamic nature of somatic mosaicism observed in humans, have been generated. Given their easy accessibility, tissues from these mice can be collected to establish homogenous cell culture models of trinucleotide repeat dynamics. This chapter describes how such cultures can be established and maintained. Such in vitro systems may be useful to study relevant biological questions concerning fundamental triplet rep...
The human genome contains many simple tandem repeats that are widely dispersed and highly polymorphi...
Artículo científico -- Universidad de Costa Rica, Instituto de Investigaciones en Salud. 2014Genetic...
Trinucleotide repeat expansions cause 17 heritable human neurological disorders. In some diseases, s...
Once into the expanded disease-associated range, trinucleotide repeat alleles become dramatically un...
The expansion of CAG•CTG trinucleotide repeat sequences has been identified as the genetic cause of ...
Myotonic dystrophy type 1 (DM1) is one of a growing number of inherited human diseases whose molecul...
Nucleotide repeat instability is associated with an increasing number of cancers and neurological di...
Simple tandem repeats represent more than 1% of the human genome: occasionally they exhibit intergen...
Expansions of specific DNA triplet repeats are the cause of an increasing number of hereditary neuro...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
The expansion of gene-specific trinucleotide repeats is responsible for a growing list of human diso...
International audienceGenetically unstable expanded CAG·CTG trinu- cleotide repeats are causal in a ...
Myotonic dystrophy (DM) is one of a growing number of inherited human disorders associated with the ...
International audienceMore than 30 human disorders are caused by the expansion of simple sequence DN...
Genetically unstable expanded CAG·CTG trinucleotide repeats are causal in a number of human disorder...
The human genome contains many simple tandem repeats that are widely dispersed and highly polymorphi...
Artículo científico -- Universidad de Costa Rica, Instituto de Investigaciones en Salud. 2014Genetic...
Trinucleotide repeat expansions cause 17 heritable human neurological disorders. In some diseases, s...
Once into the expanded disease-associated range, trinucleotide repeat alleles become dramatically un...
The expansion of CAG•CTG trinucleotide repeat sequences has been identified as the genetic cause of ...
Myotonic dystrophy type 1 (DM1) is one of a growing number of inherited human diseases whose molecul...
Nucleotide repeat instability is associated with an increasing number of cancers and neurological di...
Simple tandem repeats represent more than 1% of the human genome: occasionally they exhibit intergen...
Expansions of specific DNA triplet repeats are the cause of an increasing number of hereditary neuro...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
The expansion of gene-specific trinucleotide repeats is responsible for a growing list of human diso...
International audienceGenetically unstable expanded CAG·CTG trinu- cleotide repeats are causal in a ...
Myotonic dystrophy (DM) is one of a growing number of inherited human disorders associated with the ...
International audienceMore than 30 human disorders are caused by the expansion of simple sequence DN...
Genetically unstable expanded CAG·CTG trinucleotide repeats are causal in a number of human disorder...
The human genome contains many simple tandem repeats that are widely dispersed and highly polymorphi...
Artículo científico -- Universidad de Costa Rica, Instituto de Investigaciones en Salud. 2014Genetic...
Trinucleotide repeat expansions cause 17 heritable human neurological disorders. In some diseases, s...