The discovery of expanded simple repeated sequences causing or associated with human disease has lead to a new area of research involved in the elucidation of how the expanded repeat causes disease and how the repeat becomes unstable. ^ To study the genetic basis of the (CTG)n repeat instability in the DMPK gene in myotonic dystrophy (DM1) patients, somatic cell hybrids were constructed between the lymphocytes of DM1 patients and a variety of Chinese hamster ovary (CHO) cell DNA repair gene deficient mutants. By using small pool PCR (SP-PCR), the instability of the (CTG)n can be quantitated for both the frequency and sizes of length change mutations. ^ Additional SP-PCR analysis on 2/11 subclones generated from this original hybrid show...
There are many diseases associated with the expansion of DNA repeats in humans. Myotonic dystrophy t...
Myotonic dystrophy type 1 (DM1), is one of a number of genetic diseases whose phenotype is associate...
The expansion of CAG•CTG trinucleotide repeat sequences has been identified as the genetic cause of ...
The discovery of expanded simple repeated sequences causing or associated with human disease has lea...
Myotonic dystrophy (DM), an autosomal dominant disorder mapping to human chromosome 19q13.3, is the ...
Myotonic dystrophy (DM), an autosomal dominant disorder mapping to human chromosome 19q13.3, is the ...
The mutation associated with myotonic dystrophy (DM) is the expansion of an unstable trinucleotide...
The expansion of gene-specific trinucleotide repeats is responsible for a growing list of human diso...
The expansion of gene-specific trinucleotide repeats is responsible for a growing list of human diso...
Deciphering the contribution of genetic instability in somatic cells is critical to our understandin...
Gene-specific trinucleotide repeat expansions are the cause of an ever-growing number of disorders, ...
Deciphering the contribution of genetic instability in somatic cells is critical to our understandin...
Background & Aims: Nearly 30 hereditary disorders in humans result from an increase in the number of...
Gene-specific trinucleotide repeat expansions are the cause of an ever-growing number of disorders, ...
Myotonic dystrophy (DM) is an autosomal dominant genetic disease which affects approximately 1 in 80...
There are many diseases associated with the expansion of DNA repeats in humans. Myotonic dystrophy t...
Myotonic dystrophy type 1 (DM1), is one of a number of genetic diseases whose phenotype is associate...
The expansion of CAG•CTG trinucleotide repeat sequences has been identified as the genetic cause of ...
The discovery of expanded simple repeated sequences causing or associated with human disease has lea...
Myotonic dystrophy (DM), an autosomal dominant disorder mapping to human chromosome 19q13.3, is the ...
Myotonic dystrophy (DM), an autosomal dominant disorder mapping to human chromosome 19q13.3, is the ...
The mutation associated with myotonic dystrophy (DM) is the expansion of an unstable trinucleotide...
The expansion of gene-specific trinucleotide repeats is responsible for a growing list of human diso...
The expansion of gene-specific trinucleotide repeats is responsible for a growing list of human diso...
Deciphering the contribution of genetic instability in somatic cells is critical to our understandin...
Gene-specific trinucleotide repeat expansions are the cause of an ever-growing number of disorders, ...
Deciphering the contribution of genetic instability in somatic cells is critical to our understandin...
Background & Aims: Nearly 30 hereditary disorders in humans result from an increase in the number of...
Gene-specific trinucleotide repeat expansions are the cause of an ever-growing number of disorders, ...
Myotonic dystrophy (DM) is an autosomal dominant genetic disease which affects approximately 1 in 80...
There are many diseases associated with the expansion of DNA repeats in humans. Myotonic dystrophy t...
Myotonic dystrophy type 1 (DM1), is one of a number of genetic diseases whose phenotype is associate...
The expansion of CAG•CTG trinucleotide repeat sequences has been identified as the genetic cause of ...