Expansion of CAG•CTG tracts located in specific genes is responsible for 13 human neurodegenerative disorders, the pathogenic mechanisms of which are not yet well defined. These disease genes are ubiquitously expressed in human tissues, and transcription has been identified as one of the major pathways destabilizing the repeats. Transcription-induced repeat instability depends on transcription-coupled nucleotide excision repair (TC-NER), the mismatch repair (MMR) recognition component MSH2/MSH3, and RNA/DNA hybrids (R-loops). Recently, we reported that simultaneous sense and antisense transcription-convergent transcription-through a CAG repeat not only promotes repeat instability, but also induces a cell stress response, which arrests the c...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
DNA replication is a vulnerable time for genome stability maintenance. Endogenous add oncogenic stre...
Expansion of CAGNCTG tracts located in specific genes is responsible for 13 human neurodegenerative ...
Expansions of CAG repeat tracts in the germ line underlie several neurological diseases. In human pa...
Transcriptional arrest caused by DNA damage is detrimental for cells and organisms as it impinges on...
R-loops, consisting of an RNA-DNA hybrid and displaced single-stranded DNA, are physiological struct...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
R-loops, transcriptionally-induced RNA:DNA hy-brids, occurring at repeat tracts (CTG)n, (CAG)n, (CGG...
textabstractTranscriptional arrest caused by DNA damage is detrimental for cells and organisms as it...
Transcriptional arrest caused by DNA damage is detrimental for cells and organisms as it impinges on...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
DNA replication is a vulnerable time for genome stability maintenance. Endogenous add oncogenic stre...
Expansion of CAGNCTG tracts located in specific genes is responsible for 13 human neurodegenerative ...
Expansions of CAG repeat tracts in the germ line underlie several neurological diseases. In human pa...
Transcriptional arrest caused by DNA damage is detrimental for cells and organisms as it impinges on...
R-loops, consisting of an RNA-DNA hybrid and displaced single-stranded DNA, are physiological struct...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
Expanded trinucleotide repeats are responsible for a number of neurodegenerative diseases, such as H...
R-loops, transcriptionally-induced RNA:DNA hy-brids, occurring at repeat tracts (CTG)n, (CAG)n, (CGG...
textabstractTranscriptional arrest caused by DNA damage is detrimental for cells and organisms as it...
Transcriptional arrest caused by DNA damage is detrimental for cells and organisms as it impinges on...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
At several loci in the human genome, expansions of CAG-CTG trinucleotide repeats cause neurological ...
DNA replication is a vulnerable time for genome stability maintenance. Endogenous add oncogenic stre...